| Keyword |
|---|
| Aphanizomenon |
| Cyanidioschyzon merolae |
| Emiliania huxleyi |
| "American" |
| "European" |
| "Super" Plant Kingdom |
| (1 → 3)-B-D-Glucan |
| (2S, 3R)-ethyl 2-methyl 3-hydroxybutanoate |
| (2S, 3S)-ethyl 2-methyl 3-hydroxybutanoate |
| (3R,3'R,6'R)-β,ε-carotene-3,19,3'-triol 19-(2-dodecanoate) |
| 1 new taxon |
| 1,3-β-D-glucan |
| 1,3-β-D-glucan phosphorylase |
| 1-Deoxy-D-xylulose |
| 1-Hydroxybenzotriazole |
| 1-O-palmitoyl-3-O-(6'-sulfo-a-d-quinovopyrano-syl)-sn-glycerol |
| 13C-NMR |
| 13C-nuclear magnetic resonance |
| 13P nuclear magnetic resonance of algae |
| 14C labeling |
| 14C-fixation |
| 150-L mass cultivation |
| 165 rRNA gene |
| 16S rDNA |
| 16S ribosomal RNA |
| 16S rRNA |
| 16S rRNA amplicon sequencing |
| 16S rRNA gene |
| 16S rRNA gene sequencing |
| 16S rRNA phylogeny |
| 16S-23S ITS |
| 16S-23S rDNA |
| 16S-23S rDNA ITS fegion |
| 16S-rDNA sequence |
| 16S–23S ITS |
| 16S–23S rRNA ITS region |
| 18S rDNA |
| 18S rDNA phylogeny |
| 18S rDNA sequence |
| 18S rDNA, naked swimming cells |
| 18S rRNA |
| 18S rRNA |
| 18S rRNA gene |
| 18SrDNA |
| 18SrRNA gene |
| 18S−ITS1−5.8S−ITS2 fragments |
| 19′-Hexanoyloxyfucoxanthin |
| 1H-NMR |
| 2,4-dichlorophenol |
| 2,4-Dinitrophenol |
| 2,4-divinylprotochlorophyllide (DVP) |
| 2-Amino-4-nitrophenol |
| 2-Cys peroxiredoxin |
| 2-cysteine peroxiredoxin |
| 2-keto-acid decarboxylase |
| 2-keto-sugar acids |
| 2-Methyl-1-butanol |
| 2-methylisoborneol |
| 2-Methylisoborneol (2-MIB) |
| 2-Methylisoborneol (MIB) |
| 2-methylisoborneol(2-MIB) |
| 2-MIB |
| 2-MIB-synthesis gene(mibC gene) |
| 2-pyrone 4,6-dicarboxylic acid |
| 28S rDNA |
| 2–methylisoborneol (2–MIB) |
| 2-MIB |
| 3,3'-diaminobenzidine |
| 3,5-DCP |
| 3,5-dichlorophenol (3,5-DCP) |
| 3,5-dinitrophenylurethane |
| 3-D fluorescence spectra |
| 3-D reconstruction |
| 3-hydroxy fatty acids |
| 3-ketoacyl ACP synthase |
| 3-methyl-1-butanol |
| 3-Methyl-1-butanol |
| 31P NMR spectroscopy |
| 31P-NMR |
| 3D-printed smartphone platform |
| 3D-TEM |
| 3′UTR |
| 4-hydroxymyxol |
| 4-ketomyxol 2'-fucoside |
| 454 high throughput environmental |
| 454 pyros equencing |
| 5-aminolevulinic acid |
| 5-bisphosphate carboxylase/oxygenase (rbcL) gene |
| 5-FOA resistance |
| 5.8S ribosomal RNA gene |
| 5.8S rRNA |
| 5a, 8a-epidioxysterol |
| 5S ribosomal RNA gene |
| 6-methyl purine |
| 7-hydroxy retinoic acid |
| 9-anthryldiazomethane |
|
|
| 137Cs |
| 137Cs-NMR |
| 13C |
| 13C-enriched sodium bicarbonate |
| 13C-glycerol |
| 13C-NMR |
| 15N tracer |
| 1H-NMR |
| 31P-NMR |
| [1-13C]glutamic acid |
| a-chitin microfibril |
| AAA+ proteins |
| Abiotic stress |
| Abiotic stresses |
| abnormal swimming behavior |
| abscisic acid |
| absolute configulation |
| absolute configuration |
| absorption |
| absorption chromatography |
| abyssal plain |
| Abyssal plain |
| ac-9 |
| Acclimation |
| acclimation |
| accumulation |
| accumulation of astaxanthin |
| Accumulation shift |
| Accurate analysis |
| acetate |
| Acetate |
| Acetyl-CoA |
| Acetyl-CoA carboxylase |
| Acetylation |
| acetylene reduction |
| acetyltransferase |
| Achnanthes longipes |
| Achnanthidium |
| Achromobactersp. |
| Acid band |
| Acid hydrolysis |
| Acid polysaccharide |
| acid rain |
| acid stress |
| Acidic cultivation |
| Acidic effluent |
| acidic environment |
| acidic hydrolysis |
| Acidification |
| acidification |
| Acidification |
| acidophilic alga |
| acidophilic algae |
| Acorus gramineus |
| Acoustic focusing |
| Acoustofluidics |
| actin |
| actin gene |
| actin localization |
| Actinomycete |
| Actinophryidae |
| Actinophrys sol |
| action spectra |
| action spectrum |
| activase |
| Activated sludge |
| active diazotrophs |
| active oxygen |
| acute toxic test |
| acute toxicity |
| Acute toxicity test |
| Acutodesmus obliquus |
| acyl chain length |
| Acylation |
| Acyltransferase |
| Adaptation |
| adaptation |
| adaption |
| Adaptive evolution |
| adaptive laboratory evolution |
| Adaptive laboratory evolution |
| adeninylcobamide |
| adenylate cyclase |
| adenylate level |
| adenylates |
| adhesion |
| adhesive tape |
| adipose tissue |
| ADP-glucose |
| Adsorbent |
| Adsorption |
| Adsorption isotherm |
| Adsorption kinetics |
| adsorption kinetics |
| adsorption mechanism |
| advance oxidation |
| advanced Marfey's method |
| Advanced Oxidation |
| Aeration |
| aeration |
| aerial algae |
| aerobic anoxygenic phototrophic bacteria |
| Aerobic decomposition |
| aerobic respiration |
| aerobic sludge |
| Aeromonas bestiarum |
| Aerosol administration |
| Aeruginosin |
| aeruginosin |
| aeruginosins |
| Affinity chromatography |
| affinity chromatography |
| African continent |
| agglutinins |
| aggregate |
| aging |
| Agitata |
| Ago Bay |
| AGP |
| AGP test |
| Ahanizomenon issatschenkoi |
| Airlift bioreactors |
| airlift bubble column |
| Airlift photobioreactor |
| airlift photobioreactor |
| Akashiwo |
| Akashiwo sanguinea |
| akinetes |
| Al hydrolysis product |
| ALA |
| ALA synthesis |
| alanine-X-alanine motif |
| Alcian blue |
| Aldehydes |
| aldonolactone oxidoreductases |
| Alexa |
| Alexandrium |
| Alexandrium catenella |
| Alexandrium catenella (Group I) |
| Alexandrium tamarense |
| alga |
| Alga |
| alga-lytic bacteria |
| Alga-paramecium symbiosis |
| Algae |
| algae |
| Algae Biofuel |
| Algae cultivation |
| Algae quantification |
| algae, plants |
| Algae-based wastewater treatment |
| algaecide |
| Algaecides |
| AlgaeEcotoxicity test |
| Algal activity |
| algal assay |
| Algal bioassay |
| Algal biofilm |
| Algal biofuels |
| Algal biomass |
| Algal biophotovoltaic device |
| Algal biotechnology |
| algal bloom |
| Algal bloom |
| Algal blooms |
| algal blooms |
| algal cell cycle |
| Algal cellular organic matter |
| algal community |
| algal culture |
| Algal culture |
| algal diversity |
| algal DOM |
| algal growth |
| Algal growth inhibition |
| algal growth inhibition |
| algal growth inhibition test |
| Algal growth inhibition test |
| algal growth potential |
| Algal growth potential |
| algal growth potential (AGP) |
| algal growth potential test |
| Algal growth-inhibition assay |
| algal health food |
| algal lytic activity |
| Algal neutral lipids |
| Algal nitrogen metabolism |
| Algal organic matter |
| algal organic matter |
| algal phylogeny |
| Algal phytoremediation |
| algal production |
| Algal quantification |
| algal septins |
| algal strain |
| Algal technology |
| Algal toxicity |
| algal toxicity test |
| algal viruses |
| Algal viruses |
| Algal-bacterial aerobic granular sludge |
| algal-bacterial association |
| Algal-bacterial system |
| algal-lysing activity |
| algal-lytic activity |
| Algicidal activity |
| algicidal bacteria |
| Algicidal bacteria |
| algicidal bacterium |
| Algicidal compound |
| algicidal compounds |
| algicidal mechanism |
| algicidal modes |
| algicidal substance |
| algicide |
| Algicide |
| alginate gel |
| Alginate gel |
| alginate lyase |
| Alginate oligosaccharides |
| alginate-like lyase |
| Aliinostoc |
| aliphatic sulfamate |
| aliphatic sulfate |
| Alkaline |
| Alkaline band |
| alkaline phosphatase |
| Alkaline phosphatase |
| Alkalinity |
| Alkaliphilic cyanobacteria |
| Alkalization |
| alkalization |
| alkaloids |
| Alkane |
| Alkane-Producing Genes |
| alkenoic acids |
| Alkenone unsaturation index |
| alkenone, alkyl alkenoate |
| Alkenone-producing haptophyte |
| Alkenones |
| alkenones |
| alkoxycarbolyl group elimination |
| alkylphenol |
| Allapsidae |
| allelochemical |
| Allelochemicals |
| allelochemicals |
| allelopathic suppression |
| Allelopathy |
| allelopathy |
| Allene oxide synthase |
| Allophycocyanin |
| allophycocyanin (assembly) |
| alloxanthin |
| allozyme divergence |
| allozyme genotype |
| allozyme study |
| AlphaFold2 |
| Alphaproteobacteria |
| alternating least squares |
| Alternative fuel |
| Alteromonas |
| Alteromonas |
| Altiplane |
| Altruistic adaptation |
| Aluminum-immobilized affinity |
| Alvikia |
| AM3 |
| AM7 |
| Amazonia |
| Ames test |
| amino acid |
| Amino acid |
| Amino acid catabolic pathway |
| Amino acid transport |
| Amino acid transporters |
| amino acids |
| aminoacyl-tRNA synthase |
| aminobutylcadaverine |
| Aminoclay |
| aminooxyacetate |
| aminopentylspermidine |
| aminopropylcanavalmine |
| amitochondriate |
| ammonia |
| Ammonia |
| ammonia effect |
| Ammonia nitrogen |
| Ammonium |
| ammonium |
| ammonium ion |
| ammonium nutrition |
| Ammonium removal pathway |
| Amoebae |
| Amoebophrya |
| Amoebophrya |
| Amoebozoa |
| amperometric biosensor |
| Amphichloris |
| Amphidinium |
| Amphidinium klebsii |
| amphidinol |
| amphidinol membrane-permeabilizaion |
| Amphitremida |
| amphotericin B |
| amplicon analysis |
| Amplicon sequencing |
| Amylase-displaying yeast |
| Amylopectin |
| Amylose |
| Anabaena |
| Anabaena |
| Anabaena bergii |
| Anabaena circinalis |
| Anabaena crassa |
| Anabaena cylindrica |
| Anabaena cylindrica |
| Anabaena flos-aquae |
| Anabaena flos-aquae f. flos-aquae |
| Anabaena oumiana |
| Anabaena sp. PCC 7120 |
| Anabaena variabilis |
| Anabaena variabilis |
| Anabaena variabilis ATCC 29413 |
| anabaenopeptin |
| anabaenopeptin B |
| anabaenopeptolins |
| Anacystis nidulans |
| Anaerobic conditions |
| Anaerobic cultivation |
| Anaerobic digestion |
| anaerobic digestion effluent |
| Anaerobic digestion effluent |
| anaerobic digestion supernatant |
| anaerobic flagellate |
| Anaerobiosis |
| anaesthetics |
| analysis |
| Analysis |
| anatoxin-a |
| Anatoxin-a |
| ancestral state |
| Ancestral state reconstruction |
| ancient DNA |
| Angiosperms |
| angiotensin converting enzyme |
| Anguilla japonica |
| anhydrobiosis |
| Anhydrobiosis |
| Animal cells |
| Animals |
| Anionic surfactant |
| anisogamous conjugation |
| anisogamy |
| anisotropy |
| Annotation |
| annulus |
| Anodonta woodiana |
| Antagonism |
| antarctic |
| Antarctic |
| Antarctic ice algae |
| Antarctica |
| Antenna |
| antenna pigment |
| antheraxanthin |
| anthraquinone dye |
| anthropogenic dark earth |
| anthropogenic eutrophication |
| Anti-algal effect |
| anti-biofilm |
| anti-HIV |
| Anti-oxidation |
| anti-Porphyridium carbonic anhydrase antibody |
| Antialgal bacterium |
| antialgal bioactive compound |
| Antialgal compound |
| Antibacterial |
| Antibacterial activity |
| antibacterial agent |
| Antibacterial substance |
| Antibiotic |
| Antibiotic activity |
| Antibiotics |
| antibiotics |
| Antibiotics contamination |
| antibodies |
| antibody |
| anticoagulant |
| Antifouling biocides |
| antifouling compound |
| Antiglycation |
| antimicrobial activity |
| Antimicrobial agent |
| antimicrobial agents |
| antioxidant |
| Antioxidant |
| Antioxidant activities |
| Antioxidant activity |
| antioxidant capacity |
| antioxidant enzyme |
| Antioxidant enzyme |
| Antioxidant responses |
| antioxidants |
| Antioxidation |
| antioxidative enzymes |
| Antisense suppression |
| antiserum |
| antiviral activity |
| antiviral compounds |
| antiviral substances |
| APCs |
| Aphanizomenon |
| Aphanizomenon flos-aquae |
| Aphanizomenon ovalisporum |
| Aphelida |
| Aphelidiomycota |
| API ZYM |
| Apical expansion |
| Apical furrow |
| Apical structure complex (ASC) |
| Apicomlexa |
| Apicomplexa |
| apicomplexa |
| Apicomplexa: Chromera velia: CCMP3155: plastid evolution: chloroplast genome |
| aplanogamy |
| aplanosporic strain |
| apochloritic |
| apochlorotic diatoms |
| Apusomonadidae |
| Apusomonas |
| aqquatic organism |
| Aquaculture |
| aquaculture effluent |
| aquaculture wastewater |
| aquatic algae |
| aquatic and terrestrial plants |
| aquatic habitat |
| aquatic humic substances |
| aquatic large scale microcosm |
| aquatic macrophytes |
| Aquatic microorganisms |
| aquatic organisms |
| aquatic plants |
| Aquatic toxicity |
| Aqueous exposure |
| Aqueous extraction |
| Aqueous phase recycling |
| Arabian Sea |
| Arabidopsis thaliana |
| arabinoxylan |
| archaea |
| Archaeplastida |
| argicyclamide |
| Arginine biosynthesis |
| Argininosuccinate lyase |
| Ariake Sea |
| Array tomography |
| Arsenate |
| Artemia |
| Arthrospira |
| Arthrospira |
| Arthrospira (Spirulina) |
| Arthrospira (Spirulina) platensis |
| Arthrospira (Spirulina) platensis NIES-39 |
| Arthrospira platensis |
| Arthrospira platensis |
| Arthrospira platensis NIES-39 |
| Arthrospira platensis NIES-46 |
| artificial circulation |
| Artificial consortium |
| artificial floating island |
| artificial media |
| Artificial medium |
| artificial seawater |
| ascorbic acid |
| Asexual cycle |
| asexual reproduction |
| asexual spheroid |
| Aspartic acid |
| assimilation |
| associated bacteria |
| Astaxant |
| astaxanthin |
| Astaxanthin |
| Astaxanthin biosynthesis |
| astaxanthin esterification |
| Astaxanthin production |
| Astaxanthin productivity |
| Astaxanthin recovery |
| Astaxanthin synthesis |
| Astaxanthin, H. pluvialis |
| astaxanthin-binding protein |
| astaxanthom |
| Asterococcus |
| Asterodinium |
| Astrephomene |
| Asulcocephalium miricentonis |
| asymmetric polymerase chain reaction |
| asymmetric reduction |
| Atacama Desert |
| ATP |
| ATP synthase complex |
| ATP synthase β-subunit (atpB) gene |
| ATP-dependent proteolytic system |
| ATPase |
| atpB |
| atpB gene |
| ATR-FTIR |
| Atrazine |
| attached algae |
| Attached algae |
| Attached cell culture |
| Attached cultivation |
| Attached culture |
| attached diatom |
| attachment factors in matrices |
| AUA codon reassignment |
| Audouinella |
| Aulosira |
| Aureochrome |
| aureochrome (AUREO) |
| Aureococcus |
| autofluorescence |
| autolysis |
| Automated rRNA intergenic spacer analysis (ARISA) |
| autosporulation |
| autotroph |
| Autotrophic |
| Autotrophic astaxanthin production |
| Autotrophic buffer system |
| autotrophic culture |
| autotrophic organisms |
| autoxidation |
| Autofluorescence |
| Autumn |
| Auxiliary |
| auxin |
| Auxin |
| auxin response |
| auxin transport |
| auxins |
| axenic |
| axenic cultures |
| axenic Microcystis viridis |
| Axopodium |
| Azide-based colorimetric assay |
| Azole fungicide |
| Azolla fern |
| B-1,3-Glucan |
| b-cyclocitral |
| b-Cyclocitral |
| B-ketoadipate pathway |
| B-vitamins |
| BAC library |
| Bacilladnavirus |
| Bacillariophyceae |
| Bacillarnavirus |
| Bacillus licheniformis |
| Bacillus sp. |
| Bacillus sp. SY-1 |
| bacteria |
| bacteria interaction |
| Bacterial community analysis |
| Bacterial community composition |
| Bacterial consortium |
| bacterial criteria |
| Bacterial growth inhibition |
| Bacterial immobilization |
| Bacterial isolation |
| bacteriophages |
| bacteriophytochromes |
| Bacterivorous protist |
| bacterivory |
| Bacteroidia |
| Balticola |
| basal apparatus |
| Base editing |
| Basichlamys sacculifera |
| Basidiolichen |
| Basta |
| batch and continuous culture |
| batch culture |
| Bathycoccaceae |
| Batrachospermum |
| Bayesian inference |
| Bayesian phylogenetics |
| bead–phenol–chloroform method |
| behavioral filtering |
| Benthic dinoflagellate |
| benthic dinoflagellate |
| benthic ecosystems |
| benthic ostracod |
| benzophenone-1 |
| Benzophenone-1 |
| benzophenone-3 |
| Benzophenone-3 |
| berbicide |
| beta-tubulin |
| Betaine lipid |
| Bi-algal culture |
| bibliometric analysis |
| BicA transport |
| Bicarbonate |
| bicarbonate fixation |
| bicarbonate uptake |
| bicarbonate utilization |
| Bicosoecida |
| bicosoecids |
| biflagellate green alga |
| bifunctional |
| Bifunctional biocontrol agent |
| Bigelowiella |
| bilateral mating papilla |
| Bilin lyase |
| binary fission |
| Binary fission |
| Bio mass |
| Bio stimulant |
| Bio-digester effluent |
| bio-film reactor |
| Bioaccumulation |
| bioactive |
| bioactive metabolites |
| bioassay |
| Bioassay |
| Bioassays |
| bioassays |
| bioavailable phosphorus |
| Bioavailable phosphorus |
| biocatalysis |
| Biochemical characteristic |
| biochemical characterization |
| Biochemical composition |
| Biochemical response |
| Biochemicals |
| biocide |
| Biocides |
| Biocontrol |
| biocontrol agent |
| Bioconversion |
| biocrust |
| biocrust development |
| biocrusts |
| biodegradability |
| Biodegradable |
| Biodegradation |
| biodegradation |
| Biodeteriogens |
| Biodiesel |
| Biodiesel productivity |
| biodiesel productivity |
| biodiversity |
| Biodiversity |
| biodiversity of eukaryotes |
| biodiversityeffects |
| Bioelectricity |
| Bioenergy |
| Bioethanol |
| biofilm |
| biofilms |
| biofouling |
| Biofuel |
| biofuel |
| Biofuel Chlorella vulgaris |
| Biofuel ethanol |
| Biofuel ethanol toxicological effect |
| Biofuel production |
| biofuel production |
| biofuels |
| Biofuels |
| Biogas slurry |
| biogenesis |
| biogenic nanorod |
| biogenic silica |
| Biogeochemistry |
| biogeography |
| Biogeography |
| Biogranulation |
| bioguided fractionation |
| biohybrid system |
| Biohydrogen |
| bioindicator |
| Bioindicators |
| bioinformatics |
| Bioinformatics |
| Biolistic bombardment |
| biological activities |
| Biological activity |
| Biological alternative treatment |
| Biological change |
| Biological concentration |
| Biological control |
| biological control |
| Biological degradation |
| biological risk |
| Biological soil crust |
| biological soil crusts |
| biological species |
| biological species recognition |
| biological test |
| biologically active glycoprotein |
| Biomarker |
| biomass |
| Biomass |
| Biomass energy sources |
| Biomass plastics |
| biomass production |
| Biomass production |
| Biomass productivity |
| biomass productivity |
| Biomass Productivity |
| Biomass recovery |
| Biomass valorization |
| Biomineralization |
| biomineralization |
| biomolecular |
| Bioplastics |
| Biopolymers |
| Bioprocess design |
| bioprocess design |
| Bioproducts |
| bioprospecting |
| bioreactor |
| Bioreactors |
| biorefinery |
| Biorefinery |
| bioremediation |
| Bioremediation |
| Bioreporter |
| biosensor chip |
| biosignatures |
| Biosolar photovoltaic cells |
| Biosolid treatment process |
| biosorption |
| Biosorption |
| biosurfactant |
| biosynthesis |
| Biosynthesis |
| biosynthesis of 5-aminolevulinic acid |
| biosynthesis of carotenoids |
| biosystematic study |
| biotechnological application |
| Biotechnology |
| biotechnology |
| biotransformation |
| biovolume |
| biphenyl |
| Bisphenol A |
| bisphenol A |
| bivalve |
| Bifidobacterium |
| BL receptor |
| Blast furnace slag |
| bleaching |
| bleaching compounds |
| blight and dark condition |
| BLM |
| Block-face imaging |
| blood coagulation cascade |
| bloom |
| Bloom |
| Bloom control |
| Bloom dynamics |
| blooms |
| blue and red light |
| blue color formation |
| Blue color formation |
| blue light |
| Blue light |
| blue light effect |
| blue light emitting diode |
| blue light emitting diode (LED) |
| blue-green alga |
| blue-green alga (Anabaena variabilis) |
| blue-green alga (cyanobacterium) |
| blue-green algae |
| Blue-green algae |
| blue-green algae (Anabaena variabilis) |
| blue-green algae, cyanobacterial bloom |
| Blue-green algal |
| blue-native PAGE |
| blue/UV-photoreceptor |
| bluegreen algae |
| BMAA |
| Bodomorphidae |
| Body plan |
| Bolidomonas |
| Bolidophyceae |
| bolidophyceae |
| Boron, H-resorcinol |
| Boron-doped diamond anode |
| Botryococcus braunii |
| Botryococcus Braunii |
| Botryococcus braunii |
| Botryococcus braunii (NIES-836) |
| Botryococcus braunii kützing |
| Brachidinium |
| Brachionus plicatilis |
| Brachionus rotundiformis |
| brackish water |
| branched fatty acid |
| Branching |
| Brassica oleracea var. capitata |
| Brassica rapa var. perviridis |
| Breeding |
| Brevetoxins |
| Breviolum minutum |
| Bridging effect |
| bromide |
| Bromoform |
| bryophytes |
| Bryophytes |
| Bryopsis sp. |
| BSA |
| bubble column |
| Bubble column photobioreactor |
| Bubble columns |
| budding |
| Bulboplastis apyrenoidosa |
| buoyancy |
| Buoyancy |
| bZIP |
| c-di-GMP |
| C. fusca |
| C. globosa |
| C. kessleri |
| C. minima |
| C. ovata |
| C. saccharophila |
| C. sorokiniana |
| C. verruculosa |
| C. vulgaris |
| C. vulgaris |
| C/N metabolism |
| C18 hydroxy unsaturated fatty acid |
| C18 unsaturated fatty acid |
| C8 volatiles |
| Ca2+ ion |
| Ca2+-contraction |
| CaCl2 |
| CAD complex |
| cadmium |
| Cadmium |
| Caenorhabditis elegans |
| Calaxin |
| Calcidiscus |
| calcification |
| Calcification |
| Calcified cells (C-Cells) |
| Calcifying haptophytes |
| calcineurin B-like protein |
| Calciodinellaceae |
| Calcium |
| calcium |
| calcium carbonate crystal |
| Calcium carbonate crystalization |
| calcium chloride |
| Calcium recovery |
| calcium signalling |
| Calcification |
| caldopentamine |
| calium ion influx |
| calorific value |
| Calothrix sp. NIES-4101 |
| cAMP |
| Canadian salt lakes |
| canavalmine |
| canna |
| Canna generalis |
| Canna generalis |
| cannibalism |
| Canonical Variate Analysis |
| canthaxanthin |
| Carassius gibelio langsdorfi |
| Carbamoyl-phosphate synthetase II |
| Carbohydrate |
| carbohydrate binding module (CBM) |
| carbohydrate-binding specificity |
| carbohydrates |
| Carbon allocation |
| carbon assimilation |
| Carbon bio-sequestration |
| carbon cycle |
| carbon dioxide |
| Carbon dioxide |
| Carbon Dioxide |
| Carbon dioxide capture |
| carbon dioxide concentration |
| carbon dioxide fixation |
| Carbon fixation |
| carbon isotope assimilation |
| Carbon mechanism |
| Carbon metabolism |
| Carbon mineralization |
| Carbon partitioning |
| Carbon recycling |
| Carbon storage compound |
| Carbon-concentrating mechanism |
| carbonic anbydrase |
| carbonic anhydrase |
| carbonic anhydrase (cellular distribution) |
| carbonic anhydrase (EC4.2.1.1) |
| carbonic anhydrase synthesis |
| carbonyl group reduction |
| carboxylic comp. |
| Carex dispalata |
| carotenogenesis |
| carotenoid |
| Carotenoid |
| Carotenoid biosynthesis |
| carotenoid biosynthesis |
| CarotenoidEuglena |
| Carotenoids |
| carotenoids |
| carotenoprotein |
| carotenoproteins |
| Carpediemonas membranifera |
| Carpediemonas-like organisms |
| CARS |
| Carteria |
| Carteria cerasiformis |
| Carteria eugametos |
| Carteria miwae |
| CAS |
| caspase homologues |
| CAT selection marker |
| catalase |
| Catalase |
| Catalytic triad |
| Cationic ions |
| Cationic surfactant |
| Caudivolvoxa |
| Cavernomonas |
| CBC approach |
| CBL-interacting protein kinase |
| CCM |
| CCMs |
| cDNA |
| cDNA cloning |
| cDNA sequence |
| CDS skew |
| Cell adhesion |
| cell and organelle division |
| Cell cluster |
| Cell components |
| Cell concentration |
| Cell contact |
| cell covering |
| cell culture |
| cell cycle |
| Cell cycle |
| cell cycle progression |
| Cell cycles |
| Cell death |
| cell destruction |
| cell differentiation |
| cell disruption |
| Cell distribution |
| cell division |
| Cell division |
| cell extraction |
| Cell factories |
| cell fusion |
| cell growth |
| Cell Growth |
| Cell growth |
| cell immobilisation |
| Cell lysis |
| cell lysis |
| Cell manipulation |
| Cell model |
| Cell morphology |
| cell morphology |
| cell mortality |
| Cell motility |
| cell movement |
| Cell plastics |
| cell plastics |
| Cell Sedimentation |
| cell shape and size |
| cell size |
| Cell size |
| cell sorting |
| Cell staining |
| cell surface |
| cell viability |
| cell wall |
| Cell wall |
| cell wall amino compounds |
| cell wall composition |
| cell wall damage |
| cell wall degradation |
| cell wall degrading activity |
| Cell wall disruption |
| cell wall polysaccharides |
| Cell wall regeneration |
| cell wall sugar composition |
| cell wall synthesis |
| cell wall thickening |
| cell wall turnover |
| cell wall-less mutant |
| cell wall-lytic enzyme |
| cell-cell recognition |
| Cell-division cycle, Cyanidioschyzon merolae |
| Cell-plastics |
| cell-plastics |
| CELLBANKER |
| cellular carbon |
| cellular pH |
| cellular response |
| Cellular uptake |
| cellulase |
| Cellulase |
| Cellulose nanofiber |
| Cellulose nanofibers (CNFs) |
| Cellulose nanofibril |
| cellurar carbon |
| CENH3 |
| central pit |
| Central spindle |
| centric diatom |
| centric diatom, cytoplasmic inheritance |
| centric diatoms |
| Centriole |
| centromere |
| ceramic carrier |
| CERAS (closed ecological recirculating aquaculture system) |
| Cercomonas |
| Cercozoa |
| Ceriodaphnia dubia |
| cesA1 |
| Cesium |
| Cesium-accumulating microalgae |
| CFD |
| Chaetoceros |
| Chaetoceros setoensis |
| Chaetoceros sp. |
| Chaetoceros tenuissimus |
| Chaetopeltidales |
| Chaetophorales |
| chain reaction |
| channel carrying river water |
| Chantransia macrospora |
| Chara |
| Chara |
| Chara braunii |
| Chara corallina |
| Chara globularis |
| Charales |
| Charophyceae |
| charophycean |
| Charophycean |
| Charophycean alga |
| Charophyta |
| charophyte |
| Charophytesas |
| charophyve |
| Chatonella verruculosa |
| Chattonella |
| Chattonella |
| Chattonella antiqua |
| Chattonella antiqua |
| Chattonella marina |
| Chattonella marina |
| Chattonella marina comb. nov. |
| Chattonella marina var. antiqua |
| Chattonella marina var. antiqua |
| Chattonella marina var. marina |
| Chattonella ovata |
| Chattonella sp. |
| Chattonella spp. |
| Chattonella subsalsa |
| chelate |
| chelating ligands |
| Chelating ligands |
| chelating resin |
| chemical characterization, lipopolysaccharide, Microcystis aeruginosa, O-chain |
| chemical composition |
| chemical compounds |
| chemical cues |
| chemical diversification |
| chemical ecology |
| chemical fiber |
| Chemical toxicity test |
| Chemiluminescence |
| chemiluminescence |
| chemoattractant |
| Chemometrics |
| chemometrics |
| chemostat cultures |
| chemotaxis |
| chemotaxonomy |
| Chemotaxonomy |
| chicken feather |
| chilling injury |
| chiral HPLC |
| chiral phase HPLC |
| Chitosan modified kaolinite |
| chitosanase |
| Chlamydomonadaceae |
| Chlamydomonadales |
| Chlamydomonas |
| Chlamydomonas |
| Chlamydomonas (Chlorophyta) |
| Chlamydomonas debaryana |
| Chlamydomonas debaryana NIES-2212 |
| Chlamydomonas gerloffii |
| Chlamydomonas media |
| Chlamydomonas meslinii |
| Chlamydomonas moewusii |
| Chlamydomonas monoica |
| Chlamydomonas neoplanoconvexa nom. nov. |
| Chlamydomonas parkeae |
| Chlamydomonas perpusilla |
| Chlamydomonas pseudomacrostigma |
| Chlamydomonas pulsatilla |
| Chlamydomonas pumilio |
| Chlamydomonas rein-hardtii |
| Chlamydomonas reinhardtii |
| Chlamydomonas reinhardtii |
| Chlamydomonas smithii |
| Chlamydomonas sp. |
| Chlamydomonas sp. ICE-L |
| Chlamydomonas subangulosa |
| Chlamydomonas subg. |
| Chlamydomons |
| chloramphenicol |
| Chloramphenicol |
| Chloramphenicol acetyltransferase |
| Chloramphenicol acetyltransferase (CAT) stable genome transformation |
| Chlorarachnion |
| Chlorarachniophyceae |
| Chlorarachniophycota |
| Chlorarachniophyta |
| chlorarachniophyte |
| chlorarachniophytes |
| Chlorella |
| Chlorella |
| chlorella |
| Chlorella cell wall |
| Chlorella ellipsoidea |
| Chlorella ellipsoidea C-27 |
| Chlorella emersonii |
| Chlorella fusca var. vacuolata |
| Chlorella kessleri |
| Chlorella kessleri |
| Chlorella protothecoides |
| Chlorella protothecoides |
| Chlorella pyrenoidosa |
| Chlorella pyrenoidosa Chick |
| Chlorella saccharophila |
| Chlorella sorokiniana |
| Chlorella sp. |
| Chlorella spp. |
| Chlorella variabilis |
| Chlorella vulgaris |
| Chlorella vulgaris |
| Chlorella vulgaris (11h cell) |
| Chlorella vulgaris 11h |
| Chlorella-like alga |
| chloride ion-activation |
| Chlorination |
| chlorination |
| Chlorinimonas sublosa gen. et sp. nov. |
| Chlorococcum |
| Chlorocystis |
| Chloroform |
| Chlorogonium |
| Chlorogonium complexum sp. nov. |
| Chlorogonium kasakii sp. nov. |
| Chloromonadinia |
| Chloromonadinia |
| Chloromonas |
| Chloromonas |
| Chloromonas brevispina |
| Chloromonas chlorococcoides comb. nov. |
| Chloromonas difformis nom. nov. |
| Chloromonas fukushimae |
| Chloromonas kasaiae |
| Chloromonas krienitzii sp. nov. |
| Chloromonas lineage |
| Chloromonas lineage |
| Chloromonas miwae comb. nov. |
| Chloromonas nivalis |
| Chloromonas tenuis |
| Chloromonas typhlos |
| Chloromonas typhlos comb. nov. |
| chlorophenol |
| Chlorophyceae |
| Chlorophyceae |
| Chlorophyceaen mitochondria |
| chlorophyll |
| Chlorophyll |
| chlorophyll a |
| Chlorophyll a |
| Chlorophyll a fluorescence |
| chlorophyll b |
| chlorophyll biosynthesis |
| chlorophyll c complex |
| chlorophyll f |
| chlorophyll f biosynthesis |
| Chlorophyll fluorescence |
| Chlorophyll fluorescence measurements |
| chlorophyll formation |
| chlorophyll pigments |
| Chlorophyll synthesis |
| Chlorophyll-a |
| chlorophyll-c |
| Chlorophyllase |
| Chlorophyta |
| chlorophyta |
| Chlorophyta (microalgae) |
| Chlorophyte algae |
| Chlorophyte M. hakoo |
| Chlorophytes |
| Chloroplast |
| chloroplast |
| chloroplast development |
| chloroplast division |
| Chloroplast division |
| chloroplast DNA |
| chloroplast DNA replication |
| chloroplast DNA variation |
| Chloroplast endoplasmic reticulum |
| Chloroplast evolution |
| chloroplast gene transmission |
| chloroplast genome |
| chloroplast nuclei |
| chloroplast nucleoid |
| chloroplast promoters |
| chloroplast rRNA |
| chloroplast rRNA genes |
| Chloroplast shape |
| chloroplast small-subunit (SSU) rRNA |
| chloroplast stromal protein |
| chloroplast transformation |
| chloroplast-nucleoid |
| chloroplast-nucleus association |
| chloroplast-nucleus connection |
| Chloroplasts |
| Chlorosarcinopsis |
| Chlorosphaeropsis |
| chlorovirus |
| Choi |
| Choricystis |
| Chromalveolata |
| chromalveolate |
| chromalveolate hypothesis |
| chromatic acclimation |
| chromatography |
| chromatography–high-resolution mass spectrometr |
| chromatophore |
| chromerid |
| chromist |
| Chromista |
| chromophyte algae |
| chromophytes |
| chromosome |
| chromosome number |
| chromosome replication |
| chromosome segregation |
| Chronic sediment toxicity test |
| chronic toxicity |
| Chroococcidiopsis sp. |
| Chroomonas |
| Chroomonas |
| Chrysochromulina |
| Chrysochromulina |
| Chrysochromulina genome |
| Chrysochromulina sp. |
| Chrysochromulinaceae |
| Chrysophyceae |
| Chyamydomonas reinhardtii |
| Chytrid |
| CID MS/MS |
| Ciguatera |
| Ciguatera fish poisoning |
| ciguatera fish poisoning |
| ciguatera poisoning |
| ciguatoxin |
| Ciguatoxins |
| Cilia |
| ciliate |
| ciliate-algae symbiosis |
| Ciliophora |
| Cinnamic Acid 4-Hydroxylase |
| circadian plasticity |
| Circadian rhythms |
| Circular bioeconomy |
| Circular Bioeconomy |
| cis-element |
| Cl- activation |
| Cl- inhibition |
| cladistic analysis |
| Cladocera |
| Cladoceran |
| Cladocopium |
| clam Corbicula leana |
| clarithromycin |
| Clarithromycin |
| classification |
| Classification |
| classification (chloroplast) |
| Clay |
| Clay ball |
| Clearance rate |
| climate change |
| clonal culture |
| Clone libraries |
| clone library |
| closed ecological recirculating aquaculture system (CERAS) |
| Closed ecological recirculating aquaculture system (CERAS) |
| Closteriu |
| Closterium |
| Closterium |
| Closterium aciculare |
| Closterium ehrenbergii |
| Closterium peracerosum-strigosum-littorale |
| Closterium peracerosum-strigosum-littorale |
| Closterium peracerosum-strigosum-littorale complex |
| Closterium peracerosum-strigosum-littorale complex |
| Closterium peracerosum–strigosum–littorale complex |
| Closterium: heterothallism |
| Clostreium |
| Clostreium complex |
| Clostridium |
| clustering analysis |
| clutch size |
| CN–PAGE |
| CO 2 |
| Co-cultivation |
| co-cultivation |
| co-culture |
| co-culture of fish and macroalgae |
| Co-culture system |
| Co-existence |
| CO2 |
| CO2 accumulation |
| CO2 bio-fixation |
| CO2 concentration |
| CO2 effect |
| CO2 feeding |
| CO2 fixation |
| CO2 stress |
| CO2 supplement |
| CO2 supplementation |
| CO2 transport |
| CO2 uptake |
| CO2-concentrating mechanism |
| CO2/O2 gas exchange system |
| CO2 |
| CO2 capture and utilization |
| CO2 enrichment |
| CO2 fixation |
| CO2 limitation |
| CO2-signal transduction |
| CO2/O2 gas exchange system |
| Coagulation |
| coagulation inhibition |
| Coagulation inhibition |
| Coarsely striated proximal fiber (CSPF) |
| Coastal area of Japan |
| Coastal ecosystems |
| coastal pollution |
| Coastal waters |
| coastal waters |
| cobalamin |
| Cobalt |
| Coccoid green algae |
| Coccolith |
| coccolith |
| Coccolith polysaccharide |
| coccolith production |
| coccolithophore |
| Coccolithophore |
| Coccolithophores |
| coccolithophorid |
| Coccolithophorid |
| Coccolithophorid algae |
| coccolithophorid assemblage |
| coccolithophorids |
| Coccoliths |
| Coccomyxa |
| Coccomyxa subellipsoidea |
| Coccomyxa subellipsoidea |
| Coccomyxa subellipsoidea C-169 |
| Cochlodinium polykrikoides |
| Cochlodinium polykrikoides |
| Coconut milk |
| Coelastrella |
| Coelastrella |
| Coelastrum sp. |
| Coelosphaerium sp.Geosmin-producing and non-producing strains |
| Coenocyte |
| coexistence |
| Coexistence |
| coherent X-ray diffraction imaging |
| COI |
| coil number |
| colchicine |
| cold adaptation |
| cold stenotherm |
| cold stress |
| cold-tolerant |
| Coleochaete |
| Collective behavior |
| Collimyces mutans |
| colonial |
| colonial Volvocales |
| coloniality |
| colonization |
| Colonization |
| colony |
| Colony evolution |
| colony formation |
| Colony formation |
| Colony morphology |
| Colony pattern formation |
| Colony PCR |
| Colony regeneration |
| Colony size |
| Colony-associated bacteria |
| colorimetric viability assay |
| colorless chrysophyte |
| columun liquid chromatography |
| Combined pollution |
| combined sewer overflows (CSOs) |
| Combined toxicity |
| comet assay |
| Comet assay |
| Commercialization |
| Common-garden experiment |
| community composition |
| community structure |
| community succession |
| comparative genomics |
| Comparative genomics |
| comparative morphology |
| comparative transcriptomics |
| compatible solute |
| compatible solute, desiccation tolerance, post-translational regulation, terrestrial cyanobacterium |
| compatible solutes |
| Compatible solutes |
| compensation irradiance |
| competition |
| Competitive adsorption |
| Competitive interaction |
| competitive PCR |
| Complementarity |
| Complex Dunaliella Chlorella |
| complex ecological impact of coexistent metal cations |
| complex effect |
| Computational Fluid Dynamics |
| computer |
| Computer science |
| computer vision |
| Con A |
| concanavalin A |
| Concanavalin A (Con A) |
| ConcanavalinA |
| concatenate model |
| Concentration addition |
| concentration-dependent synergistic growth inhibition |
| Concrete |
| concurrent action |
| condensed tannin |
| conditional knockdown |
| conjugate alga |
| Conjugation |
| conjugation |
| conjugation (Closterium) |
| conservation |
| consortium |
| contamination |
| Contamination |
| Continuous-release microsphere |
| Contractile ring |
| Contractile tubules |
| contractile tubules |
| contractile vacuole |
| contractile vacuoles |
| Contraction |
| contraction |
| convergent evolution |
| Coolia malayensis |
| Cooliatoxin |
| copepod |
| copepod dynamics |
| Copepod dynamics |
| Copper |
| copper |
| copper regulation |
| Copper response elements |
| Copper transport |
| Copper uptake |
| Copper(II) |
| COPT |
| copy number variation |
| Coral larvae |
| coral reef |
| Coral reefs |
| Coral symbionts |
| Corbicula leana |
| Corbierea |
| Core histone |
| core-shell capsule |
| coronavirus disease |
| coronavirus disease 2019 |
| corrinoid compounds |
| Corynoplastis gen. et sp. nov. |
| Coscinodiscus wailesii |
| cost |
| COX1 |
| cox1 |
| COXI |
| COXI phylogenetic tree |
| CPA family |
| cpcBA-IGS |
| crater-lake |
| Craticula citrus |
| Craticula pseudocitrus sp. nov. |
| CRISPR |
| CRISPR-Cas9 gene editing |
| CRISPR/Cas9 |
| critical velocity |
| cross-reactivity |
| crowding effect |
| CrRLK1L-1 |
| CrtR |
| crtR |
| CrtW |
| cruA |
| Crude glycerol |
| Crustacean immobilization test |
| Crustacean reproduction test |
| crustacean, fish, nitro-PAHs |
| Crustomastigaceae |
| Cryo-TEM |
| Cryo-TEM tomography |
| cryofixation |
| cryoflora |
| cryogenic X-ray diffraction experiment |
| cryoinjury |
| Cryomonadida |
| Cryopreservation |
| cryopreservation |
| Cryoprotectant |
| Cryothecomonas |
| cryptic diversity |
| cryptic species |
| Cryptic species |
| Cryptic species complexes |
| Cryptic species diversity |
| cryptomonads |
| Cryptomonads |
| Cryptomonas |
| Cryptomonas borealis: genome evolution |
| Cryptomonas tetrapyrenoidosa |
| Cryptophyceae |
| Cryptophyta |
| cryptophyte |
| cryptophytes |
| crystal structure |
| Crystal structure |
| crystalline glycoprotein lattice |
| crystallization |
| CtenDNAV |
| CtenDNAV-II |
| CtenRNAV |
| CtenRNAV-II |
| Cuatro Ciénegas Basin |
| Cultivation |
| cultivation |
| Cultivation Environment |
| cultivation system, biorefining proces |
| cultivation‐dependent |
| culture |
| Culture |
| culture age |
| culture collection |
| Culture collection |
| culture collections |
| culture condition |
| culture conditions |
| Culture experiment |
| culture status |
| culture strain |
| Culture strain |
| Culture system |
| culture tank |
| culture, Japan, morphology, planktonic |
| Cultured food |
| cultured meat |
| cultures |
| Culturing |
| Curvature |
| curvispora |
| Cuspidothrix issatschenkoi |
| Cutaneous toxicity |
| cuticle |
| CWClade |
| cyanelle |
| Cyanelle |
| Cyanelle division |
| Cyanidiales |
| cyanidiales |
| Cyanidiophyceae |
| Cyanidioschyzon |
| Cyanidioschyzon merolae |
| Cyanidioschyzon merolae |
| Cyanidioschyzon merolae |
| Cyanidium |
| Cyanidium caldarium |
| Cyanidium caldarium |
| cyanobacteria |
| Cyanobacteria |
| cyanobacteria (blue-green algae) |
| cyanobacteria bloom control |
| cyanobacteria classification |
| Cyanobacteria inoculation |
| cyanobacteria taxonomy |
| Cyanobacteriacidalbacteria |
| cyanobacterial |
| Cyanobacterial bloom |
| cyanobacterial bloom |
| Cyanobacterial Bloom |
| Cyanobacterial bloom control |
| cyanobacterial blooms |
| Cyanobacterial blooms |
| Cyanobacterial cells |
| Cyanobacterial control |
| Cyanobacterial Genome |
| cyanobacterial growth |
| Cyanobacterial metabolism |
| cyanobacterial nuclear genes |
| Cyanobacterial polysaccharides |
| Cyanobacterial protein |
| Cyanobacterial proteins |
| Cyanobacterial removal |
| Cyanobacterial symbiont |
| cyanobacterial taxonomy |
| cyanobacterial toxins |
| Cyanobactericidal bacteria |
| cyanobacteriochrome |
| Cyanobacteriochrome |
| cyanobacterium |
| Cyanobacterium |
| Cyanobium |
| Cyanobium sp. |
| CyanoHABs |
| Cyanopeptides |
| cyanopeptolin |
| Cyanophage |
| cyanophage |
| cyanophages |
| Cyanophora |
| Cyanophora |
| Cyanophora paradoxa |
| Cyanophora paradoxa |
| Cyanophora paradoxa NIES 547 |
| Cyanophyceae |
| Cyanophyta |
| cyanophytes/cyanobacteria |
| cyanotoxin |
| Cyanotoxin |
| Cyanotoxin genes |
| cyanotoxins |
| Cyanotoxins |
| cyanoviridin RR |
| cyclic AMP |
| cyclic nucleotide phosphodiesterase |
| cyclic peptide |
| cyclic β-keto esters |
| Cyclops |
| Cyclotella meneghiniana |
| cylindrical phycobilisomes |
| Cylindrospermopsin |
| Cylindrospermopsis raciborskii |
| Cylindrospermopsis raciborskii |
| CYP74 |
| Cyperus alternifolius |
| cyst |
| Cyst cluster |
| cyst formation |
| Cyst germination |
| Cysteine synthesis |
| Cytochemistry |
| Cytochrome c6 |
| cytochrome c maturation |
| cytochrome c oxidase subunit 1 (cox1) |
| cytochrome c oxidase subunit 1 (cox1) |
| cytochrome c oxidase subunit 2 (cox2) |
| cytochrome c oxidase subunit I |
| cytochrome c-553 |
| Cytochrome oxidase |
| cytochrome oxydase subunit I |
| cytochrome P450 |
| Cytochromes P450 |
| Cytokine secretion |
| Cytokinesis |
| cytokinins |
| Cytoplasmic bridge |
| cytoplasmic bridge |
| cytoplasmic crystal |
| cytoplasmic membrane |
| cytoplasmic rRNA |
| cytoplasmic structure |
| cytoskel |
| cytoskeleton |
| cytosolic MVA pathway |
| cytotoxicity |
| Cytotoxicity |
| Cytotoxicity assays |
| Cytotoxin |
| d-Amino acid |
| D-amino acids |
| d-Threonine aldolase |
| D-threonine aldolase |
| D. magna |
| D1 |
| Dairy liquid digestate |
| Dangeardinia |
| daphnia |
| Daphnia |
| Daphnia kairomone |
| Daphnia magna |
| Daphnia pulex |
| Daphnia test |
| DAPI |
| DAPI staining |
| dark acclimation |
| dark CO2 fixation |
| dark nitrogen fixation |
| dark proplastid development |
| dark survival |
| darkness tolerance |
| database |
| database system |
| DBL |
| DCMU [3'-(3,4-dichlorophenyl)-1',1'-dimethyl urea] |
| DCMU-induced fluorescence |
| dddD gene |
| dddP gene |
| de novo pyrimidine biosynthesis |
| dead-leaves |
| decay rate |
| deciduous trees |
| decolorization |
| Decomposition preocess: Phytoplankton |
| Decontamination |
| deep phylogeny |
| deep sea |
| Deep seawater |
| deep sequencing |
| deep waterbodies |
| Deep-sea mining |
| degenerative homing |
| degradation |
| degradation product |
| degree of substitution |
| dehydration |
| dehydration stress |
| Delayed fluorescence |
| delayed fluorescence |
| delayed fluorescence of chlorophyll |
| delimitation algorithms |
| Delta 5 desaturase |
| Demulsification |
| density |
| density dependence |
| Density-dependent |
| deoxy-cylindrospermopsin |
| depth gradient |
| Desaturase |
| desiccation |
| Desiccation |
| desiccation tolerance |
| desmid |
| Desmidiales |
| desmids |
| Desmids |
| Desmodesmus subspicatus |
| Desmonostoc |
| Desmotetra |
| destratification system |
| detection |
| determination of glyoxylate |
| detoxification mechanism |
| Deuteration |
| Deuterium |
| deuterium |
| deuterium oxide |
| development (Chloroplast) |
| developmental plasticity |
| deviant genetic code |
| DHA |
| Dhb-microcystin |
| Diacylglyceryl-N,N,N-trimethylhomoserine |
| diagnosis |
| diagnostic peroxins |
| diaminohexane |
| Diaoms |
| Diapause |
| diapause induction |
| diastereomer |
| Diatom |
| diatom |
| diatom effect |
| Diatom lysis |
| Diatom test |
| diatoms |
| Diatoms |
| diatom–virus interaction |
| diatoxanthin |
| diazotrophic cyanobacteria |
| Diazotrophic unicellular cyanobacteria |
| dichloromethane |
| Dictyochophyceae |
| Didymogenes |
| diel change |
| diel transcription |
| Diel vertical migration |
| diel vertical migration |
| diet |
| dietary contribution |
| Dietary exposure |
| dietary supplements |
| Dietary supplements |
| dietary utilization |
| dietborne toxicity |
| difference in species sensitivity |
| different stages of zooplankton |
| Differential Gene Loss |
| Differentially expressed genes |
| Differentiation |
| Diflufenican |
| Digestate |
| digestion |
| digestive vacuole |
| diguanylate cyclase |
| Dihydroorotate dehydrogenase |
| Dimethyl ether |
| dimethyl sulfide |
| dimethylformamide |
| dimethylsulfoniopropionate |
| Dinoflagellata |
| Dinoflagellate |
| dinoflagellate |
| DINOFLAGELLATE |
| dinoflagellate cyst |
| Dinoflagellates |
| dinoflagellates |
| Dinophyceae |
| Dinophysistoxin-1 |
| Dinophyta |
| Dinoflagellates |
| Diphyllatia |
| diplomonads |
| Diplonemea |
| diplonemids |
| diplontic |
| Diplophrys mutabilis |
| Direct air capture |
| Direct combustion |
| Direct extraction |
| direct PCR amplification |
| Direct repeats |
| directed evolution |
| directional codon reassignment |
| disappearance process |
| discharge of soil particle |
| discoid chloroplast |
| Disinfection |
| disintegration of chloroplast |
| Disodium 2-oxoglutarate |
| dispersal |
| disruped cell |
| dissociation kinetics |
| dissolved inorganic carbon concentrating mechanism |
| Dissolved inorganic phosphorus |
| dissolved organic carbon |
| dissolved organic matter |
| Dissolved organic matter |
| dissolved organic matter (DOM) |
| Dissolved organic phosphorus |
| Dissolved oxygen |
| Distal connecting fiber-associated layered structure (DFLS) |
| distribution |
| Distribution |
| distribution of carotenoids |
| disturbance |
| Ditylum |
| Diurnal behaviors |
| Diurnal variation |
| Diurnal variations |
| diurnal vertical migration |
| Diuron |
| Diuron (DCMU) |
| Divalent cation |
| divergence |
| divergence time |
| Divergent actin |
| Diversity |
| diversity |
| Divinyl chlorophyll |
| division cycle (chloroplast) |
| Dixoniellales nov. ord. |
| dmdA gene |
| DMS |
| DMSO |
| DMSP |
| DMSP lyase activity |
| DNA |
| DNA barcode |
| DNA barcoding |
| DNA content |
| DNA damage |
| DNA extraction |
| DNA G+C content |
| DNA hybridization |
| DNA methylation |
| DNA methylation modification |
| DNA methyltransferase |
| DNA microarrays |
| DNA polymerase |
| DNA polymorphism |
| DNA rearrangement |
| DNA repair |
| DNA replication |
| DNA sequence |
| DNA-DNA hybridization |
| DnaA, GC skew |
| Docking |
| docosahexaenoic acid |
| DOF transcriptional factor |
| Dokai Bay |
| Dolichomastigaceae |
| Dolichomastigales |
| Dolichospermum |
| Dolichospermum circinale |
| Dolichospermum crassum |
| Dolichospermum hangangense |
| DOM |
| DOM degradation |
| DOM molecular size distribution |
| domestic wastewater |
| Dominance prevention |
| dorsoventral zoospores |
| dosage compensation |
| Dot blot hybridizations |
| doubling time |
| DPD |
| drainage management |
| Drinking water |
| drinking water |
| Drinking water treatment |
| drought stress |
| drought-tolerance |
| drowning |
| Drowning diagnosis |
| DRP1 |
| dry conditions |
| DTA toxin |
| dual production |
| dual targeting |
| dual-cysteine |
| ductility |
| Dunaliella |
| Dunaliella |
| Dunaliella salina |
| Dunaliella sp |
| Dunaliella sp. |
| Dunaliella tertiolecta |
| Dunaliella tertiolecta |
| Dunaliellales, Hafniomonas |
| Dunaliellinia |
| Durusdinium trenchii |
| dynamic modeling |
| dynamic vision sensor |
| dynamin |
| Dynein |
| Dysmorphococcus spp. |
| E cosystem model |
| E. gracilis |
| Early warning system |
| Early-life stage toxicity test |
| Early-life-stage Toxicity test |
| Earthy-musty odor |
| earthy/muddy smell |
| EC value |
| EC50-24h |
| EC50 |
| Ecdysis |
| ecogenomics |
| ecological effect |
| Ecological impacts |
| ecological risk |
| Ecological risk |
| ecological risk assessment |
| Ecological risk assessment |
| Ecological toxicity |
| ecology |
| Ecology |
| economic efficiency |
| Economical analysis |
| ecophysiological characters |
| ecophysiology |
| ecosystem functioning |
| ecotoxic effect |
| ecotoxicity |
| Ecotoxicity |
| Ecotoxicity test |
| Ecotoxicological bioassay |
| ecotoxicological test |
| Ecotoxicology |
| ecotype |
| edible cyanobacteria |
| EDTA |
| EE/K37 |
| EE/K38 |
| EF-1α |
| Effectiveconcentration |
| effects |
| Effrenium strain |
| EFL |
| egg production |
| Egg production |
| egg quality |
| Eggs |
| eicosapentaenoic acid |
| ejectisome |
| elastase inhibitor |
| electric treatment |
| Electro-oxidation |
| Electrogermination |
| electrolysis |
| electron micrograph |
| Electron microscopy |
| electron microscopy |
| Electron transfer |
| Electron transport |
| electrophoresis |
| Electroporation |
| electroporation |
| Electrostatic adhesion |
| Electrotransformation |
| element concentration |
| elemental composition |
| eletron flow |
| Elevated CO2 content |
| Elevated CO2 |
| elimination |
| ellipsoidal species of Chlorella |
| elongation factor |
| Elution from artificial rainwater |
| EM (electron microscopy) |
| EM-tomography |
| Embryogenesis |
| emergence of order |
| Emiliania |
| Emiliania huxleyi |
| Emiliania huxleyi |
| Emiliania huxleyi (E. huxleyi) |
| Emission excitation matrix (EEM) |
| Empirical model |
| Emticicia sp. |
| enantioimer |
| encapsulation-dehydration |
| encystment |
| endemis |
| endemism |
| Endocrine disruptors |
| endocytosis |
| endonuclease sensitive site (ESS) assay |
| endoplasmic reticulum |
| Endosulfan |
| endosymbiont |
| Endosymbiont |
| endosymbiosis |
| Endosymbiosis |
| endosymbiotic gene transfer |
| Endosymbiotic gene transfer |
| Endotoxin |
| Energetic decoupling |
| Energy efficiency |
| Energy manufacturing |
| Energy recycling |
| Energy spillover |
| Energy transfer |
| energy transfer |
| Energy-efficient |
| Energy-saving process |
| energy-saving technology |
| enhance phytoremediation |
| Enhanced biomass production |
| Enterobacter sp. |
| Enteromorpha sp. |
| Entner-Doudoroff Pathway |
| Entransia |
| enumeration |
| environmental adaptation |
| environmental DNA |
| Environmental friendly |
| Environmental management |
| environmental microorganisms |
| Environmental restoration |
| environmental risk |
| environmental sample |
| environmental sequence |
| Environmental stresses |
| Environmental stressor |
| Environmental survey |
| environmental tolerance |
| environmental water |
| environmental waters |
| Enzyme activity |
| Enzyme characterization |
| enzyme induction |
| enzyme purification |
| Eocercomonas |
| Eodiaptomus japonicus |
| epibionts |
| Epigenetics |
| epigenetics |
| Epigenomics |
| epilithic |
| epiloliolide |
| Epinephelus septemfasciatus |
| epiphyte |
| epiphytic |
| Epiphytic dinoflagellate |
| Epiphytic dinoflagellates |
| Episomes |
| epitope mapping |
| epitype |
| epitypification |
| EPS |
| EPS monosaccharidic composition |
| EPS secretion |
| equation of radiative transfer |
| equivalent spherical diameter |
| Eremosphaera |
| ERIC |
| erosion |
| Erythrocyte lysis assay |
| erythrocytes |
| Erythromycin |
| Escherichia coli |
| ESR |
| Essential biochemicals |
| Essential oil |
| EST |
| EST-analysis |
| ETA |
| Ethanol |
| ethanol |
| Ethanol conversion |
| Ethanol distillery wastewater |
| Ethanol tolerance bioassay |
| ethyl 2-methyl 3-oxobutanoate |
| Ethyl orange |
| Ethylene glycol |
| etonevolution |
| Ettlia |
| Eubrownia |
| eucheuma |
| Eudorina |
| Eudorina |
| Eudorina elegans |
| Eudorina elegans |
| Eudorina minodii |
| Eudorina minodii comb. nov. |
| Eudorina peripheralis |
| Eudorina peripheralis stat. nov. |
| Eudorina unicocca |
| Eudorina unicocca |
| Euglena |
| Euglena |
| Euglena anabaena var. minor |
| Euglena gracilis |
| Euglena gracilis |
| Euglena gracilis Z |
| Euglenaceae |
| Euglenales |
| Euglenida |
| Euglenoids |
| Euglenophyta |
| Euglenozoa |
| eukaryote evolution |
| eukaryote evolvability |
| eukaryote-to-eukaryote endosymbioses |
| eukaryotes |
| Eukaryotes |
| eukaryotic autotrophic picoplankton |
| Eukaryotic peptidoglycan |
| eukaryotic phytoplankton |
| Europe |
| euryhaline species |
| Eurytemora affinis |
| Eustigmatophyceae |
| Eustigmatophycean alga |
| Eutreptiella sp. KCTC 19016P |
| eutrophic lake |
| eutrophic waters |
| eutrophication |
| Eutrophication |
| EvaGreen |
| Evaluation parameters |
| event camera |
| evolution |
| Evolution |
| evolutionary biology |
| evolutionary game theory |
| Evolutionary genomics |
| evolutionary genomics |
| evolutionary marker |
| evolutionary rescue |
| Excavata |
| Excitation emission matrix |
| Excitation energy transfer |
| Excitation transfer pathway |
| Excitation-energy transfer |
| Exocytosis |
| exocytosis |
| Exogenous H2O2 stress |
| exon/intron structure |
| exopolysaccharide |
| exopolysaccharide content |
| exopolysaccharides |
| Experimental model ecosystem |
| exposure route |
| expressed sequence tags (ESTs) |
| Expression |
| extracellular |
| extracellular lipids |
| Extracellular microcystin |
| extracellular microcystin |
| extracellular organic carbon |
| Extracellular organic matters |
| Extracellular polymeric substances |
| extracellular polymeric substances |
| Extracellular polymeric substances (EPS) |
| extracellular polysaccharide (EPS) |
| extracellular polysaccharides |
| Extracellular polysaccharides |
| Extract |
| Extraction |
| Extranuclear spindle |
| extreme light |
| extreme tolerant |
| extremophile |
| Extremophile |
| extremophiles |
| Extremophiles |
| Extremophilic red alga Cyanidioschyzon merolae |
| Extrusion |
| extrusome |
| Extrusome |
| Extrusomes |
| eyespot |
| F-actin |
| facultative endosymbiosis |
| FAME |
| family A DNA polymerase |
| far-red light |
| Far-red light photoacclimation |
| Fast high-performance liquid |
| fate |
| fatty acid |
| Fatty acid |
| fatty acid composition |
| Fatty acid content |
| fatty acid desaturase |
| fatty acid desaturation |
| Fatty Acid Pattern |
| Fatty Acid Profile |
| Fatty acid profile |
| fatty acid profile lipid |
| fatty acid synthesis |
| Fatty acid yield |
| fatty acids |
| Fatty acids |
| Fatty acids biosynthesis |
| FDA staining method |
| Fe uptake |
| Feasibility study |
| febantel |
| fecal pellet |
| Fed-batch |
| fed-batch culture |
| Fed-batch induction |
| feed enzyme |
| feed utilisation |
| feeding |
| Feeding behavior |
| feeding behavior |
| feeding behaviour |
| Feeding habit |
| feeding selectivity |
| Feedstoc |
| Female animals |
| Fermentation |
| Ferredoxin |
| ferredoxin-NADP |
| fertility |
| fertility insurance |
| fertilizer |
| Ferulic acid |
| FIAM |
| FIB-SEM |
| Fibrocapsa |
| Fibrocapsa |
| Fibrocapsa japonica |
| Fibrocapsa japonica |
| Field application |
| field desorption mass spectrometry |
| Field emission (FE)-SEM |
| Field emission scanning electron microscopy |
| field emission scanning electron microscopy (FE-SEM) |
| field-emission scanning electron microscopy |
| Filament formation |
| filamentous |
| filamentous cyanobacteria |
| Filamentous cyanobacteria |
| filamentous cyanobacterium |
| filter paper |
| filter plates |
| filter-feeder |
| filter‐screen enlargement |
| Filtraion rate |
| fine-grained soil |
| Finland |
| Fischerella: Mastigocladus: Distribution: Thermophile: Nitrogen fxation: Photosynthesis: Multicellularity: Hot springs |
| fish |
| Fish |
| Fish acute toxicity |
| Fish exposure |
| Fish farm |
| Fish kill mechanism |
| FISH method |
| fish mortality |
| fish mucus |
| Fish oil |
| fish pond |
| fish-induced defence |
| fishery |
| fishing |
| fishing bait |
| Fistulifera |
| fitness |
| Fitness |
| fixation |
| Fixation of carbon dioxide |
| flagella |
| flagellar apparatus |
| Flagellar apparatus |
| flagellar emission |
| flagellar hairs |
| flagellum |
| Flagellum |
| flashing light |
| Flashing Light |
| flavin mononucleotide (FMN)-requiring enzyme |
| Flavobacterium |
| Flavodiiron proteins |
| flavonoid, Cyanobacteria |
| Flavonoids |
| floating activity |
| floating bed |
| Floating closed culture system |
| Floc formation and breakage |
| Flocculant |
| Floridean starch |
| floridoside |
| flow control |
| flow cytometry |
| Flow cytometry |
| flow cytometry sorting |
| flow injection |
| Flow injection analysis |
| flow velocity simulation |
| Flow-through cultivation |
| flow-through technique |
| Flue gas |
| flumioxazin |
| Fluorescence |
| fluorescence |
| Fluorescence correlation spectroscopy |
| fluorescence detection |
| Fluorescence in situ hybridization |
| Fluorescence lifetime imaging microscopy |
| fluorescence oxygen sensor |
| fluorescence polarization |
| fluorescence-activated cell sorte |
| Fluorescent activated cell sorter |
| Fluorescent in situ hybridization |
| Fluorescent in situ hybridization |
| fluoride |
| fluorometry |
| FM1-43, cryopreservation, two-step freezing, plasma membrane, green algae, Parachlorella kessleri |
| folate |
| Food |
| food chain |
| Food colorant |
| food level |
| Food quality |
| Food web |
| foods with function claims |
| Foraminifera |
| form-genus |
| Forward osmosis |
| Fourier transform infrared spectroscopy |
| fractionation |
| fragmented rnl gene |
| frameshift |
| Free ammonia |
| free ammonia inhibition |
| Free astaxanthin |
| free fatty acid |
| Free fatty acids |
| free radical |
| free-living bacteria |
| freeze-drying method |
| freeze-fracture method |
| freeze-substitution |
| freezing tolerance |
| frequency of dividing cells |
| fresh microalgae |
| freshwater |
| Freshwater |
| freshwater algae |
| Freshwater algae |
| Freshwater cyanophages |
| freshwater ecotypes |
| freshwater green alga |
| Freshwater green algae |
| freshwater harmful algal blooms |
| freshwater lake |
| freshwater microalgae |
| freshwater phytoplankton |
| Freshwater sponges |
| frozen-hydrated non-crystalline specimens |
| fructose-1,6-/sedoheptulose-1,7-bisphosphatase |
| fruiting myxobacteria |
| FT-IR spectroscopy |
| FTIR |
| ftsZ |
| FtsZ |
| FtsZ phylogeny |
| FtsZ ring |
| FtsZ ring formation |
| FtsZ1 |
| FtsZ2 |
| fucosterol |
| Fuel properties |
| Fukushima 1st Nuclear Power Plant Accident |
| fultoportulae |
| Fulvic acid |
| fulvic-like fluorophore |
| function of carotenoids |
| Functional antenna size |
| Functional aquafeed |
| functional biodiversity |
| Functional enrichment |
| Functional gene |
| Functional groups |
| Functional Remodeling |
| Functional traits |
| fusaricidin |
| fuzzy neural network |
| fVIIa-sTF inhibitors |
| g-linolenic acid |
| galactolipase |
| Galactoside |
| galacturonic acid |
| Galdieria |
| Galdieria |
| Galdieria maxima |
| Galdieria partita |
| Galdieria sulphuraria |
| Galdieria sulphuraria NIES-3638 |
| Gambierdiscus |
| Gambierdiscus excentricus |
| Gambierdiscus scabrosus |
| Gambierdiscus toxicus |
| gametangial cell |
| gamete |
| gamete mating |
| gametic protoplast release |
| gametogenesis |
| gametolysin |
| Gamma ray |
| Gammaproteobacteria |
| Gas chromatography mass spectrometry |
| gas vacuoles |
| Gas vesicle |
| gas vesicles |
| GC-heterogeneous sites |
| gel electrophoresis |
| Gel encapsulation |
| gel-based cell manipulation |
| gender-based divergence |
| gene |
| gene arrangement |
| Gene cluster |
| gene cluster |
| gene conversion |
| Gene duplication |
| gene duplication |
| gene evolution |
| Gene expression |
| gene expression |
| Gene expressions |
| gene family |
| gene fragmentation |
| Gene fragmentation |
| Gene fusion |
| gene fusion |
| gene inducible system |
| gene loss |
| gene map |
| Gene migration |
| gene sequences |
| Gene stacking |
| Gene targeting |
| gene transfer |
| geneexpression |
| genetic adaptation |
| genetic analysis |
| genetic code |
| Genetic diversity |
| genetic diversity |
| genetic engineering |
| Genetic engineering |
| genetic homogeneity |
| genetic marker |
| genetic modification |
| genetic structure |
| Genetic tool |
| Genetic transformation |
| Genetic transformationElectroporation |
| genetic typing |
| genetic variation |
| Genetics of Sex |
| genome |
| Genome |
| genome architecture |
| genome editing |
| Genome editing |
| Genome evolution |
| genome evolution |
| genome expansion |
| Genome expansion |
| genome mining |
| Genome organization |
| Genome plasticity |
| Genome rearrangement |
| genome reduction |
| Genome reduction |
| genome sequence |
| genome sequencing |
| Genome sequencing |
| genome size |
| Genome size |
| Genome synteny |
| genome-scale metabolic modeling |
| Genomic |
| genomic complexity |
| genomic distance |
| genomic DNA |
| genomics |
| Genomics |
| genotoxicity |
| genotype–environment interaction |
| genotypic clusters |
| genus definition |
| geo |
| geoA Expression |
| geoA gene |
| geographical distribution |
| Geological materials |
| geometric morphometrics Micrasterias truncata |
| geosmin |
| Geosmin |
| Geosmin synthase gene |
| Gephyrocapsa |
| Gephyrocapsa huxleyi |
| Gephyrocapsa oceanica |
| Gephyrocapsa oceanica |
| germ-soma differentiation |
| germination |
| Gertia |
| Gertia stigmatica |
| GFP |
| ggpS |
| glass fiber paper chromatography |
| glass microchannel |
| glauco-phytes |
| Glaucocystis |
| Glaucocystis |
| Glaucocystophyta |
| Glaucocystophyte |
| glaucocystophyte |
| Glaucophyta |
| Glaucophyte |
| gliding motility |
| gliding movement |
| Glissomonadida |
| Global change |
| global distribution |
| Global warming |
| global warming |
| Gloeomonas |
| Gloeomonas |
| Gloeomonas rubrifilum comb. nov. |
| glucolipid |
| glucosamine |
| Glucose |
| glucose |
| glucose uptake |
| glucose-polymer |
| Glucoside |
| Glucosylglycerol |
| Glucosylglycerol (GG) |
| glucosyltransterase |
| Glufosinate |
| Glufosinate ammonium |
| Glutamate |
| glutamate |
| Glutamine |
| glutamine |
| glutamine synthetase |
| Glutathione S transferase |
| glutathione S-transferase |
| glyceroglycolipid |
| glyceroglycolipids |
| glycerol |
| Glycerol |
| glycine betamine |
| glycocalyx |
| Glycogen |
| glycogen |
| Glycogen extraction |
| glycolate |
| glycolate excretion |
| glycolate metabolism |
| glycolate oxidase |
| glycolate pathway |
| glycolate-oxidizing enzyme |
| glycolipid |
| glycolysis |
| glycoprotein |
| GlycosaminoglycansParamecium bursaria |
| glycosyl hydrolase family 9 |
| glycosyltransferase |
| glyoxylate cycle |
| GMC oxidoreductase |
| Golenkiniaceae |
| Golgi |
| Golgi apparatus |
| Golgi body |
| gone colony formation |
| Goniaceae |
| Goniochloridales |
| goniomonads |
| Goniomonas |
| Gonium |
| Gonium |
| Gonium maiaprilis sp. nov. |
| Gonium multicoccum |
| Gonium pectorale |
| Gonium pectorale |
| Gonium quadratum |
| Gonium sociale |
| Gonyostomum semen |
| Gracilariopsis lemaneiformis |
| Graesiella emersonii comb. nov. |
| GraFix |
| granule sludge |
| granule-bound starch synthase |
| GRAS solvent |
| grazer |
| Grazing |
| grazing |
| grazing rate |
| Great Yellowstone area |
| green aglae |
| Green alga |
| green alga |
| Green Alga |
| green alga: Japan |
| green algae |
| Green algae |
| Green algal evolution |
| Green algar |
| Green energy |
| Green fuels |
| green lineage |
| green microalga |
| green microalgae |
| green microalgae, morphology |
| green plants |
| green plastics |
| Green process |
| green tea |
| GreenAlgae |
| greening |
| Groundwater contamination |
| group 1 intron |
| group I intron |
| Group I intron |
| group I introns |
| group II intron |
| group II introns |
| growth |
| Growth |
| growth and development |
| growth and interaction |
| growth and reproduction |
| Growth characteristics |
| growth characteristics |
| growth control |
| growth delay |
| growth efficiency |
| growth factor |
| growth inhibition |
| Growth inhibition |
| growth inhibition test |
| growth inhibitor |
| Growth interaction |
| Growth kinetics |
| growth kinetics |
| Growth optimization |
| growth phase |
| Growth phase |
| growth phases |
| growth potential |
| Growth promotion |
| growth promotion |
| Growth rate |
| growth rate |
| growth rates |
| Growth rates |
| Growth simulation |
| growth stimulation |
| growth suppression |
| growth-inhibiting bacteria |
| Growth-promoting bacteria |
| GTAC motif |
| Gungnir gen.nov. |
| gvpA |
| gvpC |
| gvpN |
| Gymnochlora |
| Gymnodinium mikimotoi |
| Gymnodinium myriopyrenoides |
| Gymnoxanthella radiolariae gen. et sp. nov. |
| gyrB |
| gyrB |
| Gyrodinium instriatum |
| H. pluvialis |
| H2O2 scavenging activity |
| H+-ATPase |
| HAB |
| HABs |
| HaeIII family |
| haemagglutination |
| Haematococcus |
| Haematococcus lacustris |
| Haematococcus lacustris |
| Haematococcus pluvialis |
| Haematococcus pluvialis |
| Haematococcus pluvialis oxidative stress |
| Haematococcus rubicundus |
| Haematococcus spp. |
| Haemolytic activity |
| Hafniomonas |
| hair scales |
| Hairpin elements |
| Half-life |
| Halochlorococcum |
| halogenase |
| Halogenated hydrocarbons |
| Halomicronema hongdechloris |
| Halophiles |
| halophilic bacteria |
| Halospirulina |
| halotolerant |
| halotolerant species |
| Hamakko gen. nov. |
| Hansen solubility parameter |
| Hapalochloris nozakii |
| Hapalochloris nozakii gen. et sp. nov. |
| haplo-diploid |
| haplodiplontic |
| Haploid |
| Haploid species |
| Haptonema |
| Haptophyceae |
| Haptophyta |
| haptophyte |
| Haptophyte |
| Haptophytes |
| haptophytes |
| Haramonas dimorpha gen et sp. nov. |
| Haramonas pauciplastida sp. nov. |
| hard water |
| Harmane |
| Harmful alga |
| Harmful algae |
| harmful algae |
| Harmful algae bloom |
| harmful algal bloom |
| Harmful algal bloom |
| harmful algal bloom (HAB) |
| harmful algal bloom species |
| harmful algal blooms |
| Harmful algal blooms |
| Harmful algal blooms (HAB) |
| harmful algal blooms (HABs) |
| Harmful algal blooms (HABs) |
| Harmful cyanobacterial blooms |
| harmful phytoplankton |
| harvest |
| Harvesting |
| Harvesting of Microalgae |
| hatching success |
| Hatena arenicola |
| hazard quotien |
| hazardous waste |
| headspace-GC analysis |
| health supplement |
| heat sensitivity |
| Heat shock protein |
| heat shock protein |
| Heat shock protein 90 |
| heat shock response |
| heat tolerance |
| Heavy metal |
| heavy metal |
| Heavy metal contaminant |
| heavy metal removal |
| Heavy metals |
| heavy metals |
| Heavy rain |
| Heavy-ion irradiation |
| Helicosporidium |
| Heliozoa |
| heliozoa |
| heliozoan |
| helix |
| Helladosphaera |
| Hemagglutinin |
| hemaggulutinin |
| Hemiflagellochloris |
| hemoglobin synthesis |
| Hemolysin |
| hemolysis |
| Hemolytic activity |
| hemorrhage |
| hepatotoxin |
| Heptadecane |
| herbicide |
| Herbicide |
| herbicide tolerance |
| herbicides |
| Herbicides |
| Heterobothrium okamotoi |
| Heterocapsa |
| Heterocapsa circularisquama |
| Heterocapsa circularisquama |
| Heterocapsa triquetra |
| heterococcolith |
| Heterocypris incongruens |
| Heterocypris incongruens, ostracod, antioxidant genes, de novo transcriptome, toxicity, road dust |
| heterocyst |
| Heterocyst |
| heterocyst spacing pattern |
| Heterocystous cyanobacteria |
| Heterocysts |
| heterocytes |
| Heterogeneous models |
| heterokont |
| Heterokont |
| heterokont algae |
| Heterokont algae |
| Heterokonta |
| Heterokontophyta |
| heterokontophyte |
| heterokonts |
| heteroloboseans |
| Heterologous expression |
| Heteromita |
| Heterosigma |
| Heterosigma |
| Heterosigma akashiwo |
| Heterosigma akashiwo |
| Heterosigma akashiwo (Raphidophycean) |
| Heterosigma carterae |
| heterothallic |
| Heterothallic species |
| heterothallism |
| Heterothallism: Dexual reproduction |
| heterotroph |
| Heterotrophic |
| heterotrophic |
| Heterotrophic bacteria |
| Heterotrophic cultivation |
| heterotrophic cultivation |
| heterotrophic flagellate |
| Heterotrophic growth |
| Heterotrophic Growth |
| Heterotrophic microorganisms |
| Heterotrophy |
| heterotrophy |
| hexa-amine |
| hexadeca-4,7,10,13-tetraenoic acid |
| HGT |
| High ammonium |
| High cesium-accumulating microalgae |
| High light |
| High light intensity |
| High resolution mass spectrometry |
| high salt lake |
| High temperature water |
| High throughput |
| high-ammonia wastewater |
| high-ammonia-containing wastewater |
| High-CO2-acclimation |
| High-CO2-requiring mutants |
| high-mannose N-glycans |
| high-performance liquid chromatography |
| High-performance liquid chromatography |
| High-pressure freezing and freeze-substitution fixation |
| high-pressure homogenization |
| high-resolution electron microscopy |
| High-resolution MS |
| high-speed camera |
| high-speed imaging flow cytometry |
| High-throughput screening |
| high-throughput screening |
| high-throughput sequencing |
| HILIC |
| HIP1 fingerprinting |
| Hirugamonas |
| histogenetic meristem |
| histone deacetylase |
| holding time |
| holococcolith |
| holocytochrome c synthase |
| Hologamete |
| homeobox |
| homocaldopentamine |
| Homoginizer |
| homologous recombination |
| Homologous recombination |
| homology modeling |
| Homoserine lactone |
| homospermidine |
| Homotallism |
| Homothallic |
| homothallic |
| Homothallic species |
| homothallism |
| Homothallism |
| horizontal and endosymbiotic gene transfer |
| horizontal DNA transfers |
| Horizontal gene transfer |
| horizontal gene transfer |
| horizontal gene transfer (HGT) |
| horizontal gene trasnfer |
| horizontal transfer |
| Hormesis |
| Hormidiella |
| hormogonia |
| horseradish peroxidaseconjugated probe |
| host-parasite relationship |
| Host-virus interactions |
| host-virus specificity |
| host–microbe interactions |
| hot spring algae |
| HPLC |
| HPLC-DAD |
| HPLC-PAD |
| hrysotila |
| HSI color space |
| Hsp70 |
| human health |
| Human monocytic cells |
| human tissues |
| humic acid |
| Humic substance |
| humic substances |
| hybrid breakdown |
| Hydra |
| Hydration |
| Hydraulic retention time |
| hydraulic retention time |
| Hydrocarbon |
| hydrocarbon |
| Hydrocarbons |
| Hydrodeoxygenation |
| Hydrodictyaceae |
| Hydrodynamic property |
| hydrogen |
| Hydrogen peroxide |
| hydrogen peroxide |
| hydrogen production |
| hydrogenase |
| hydrogenosomes |
| hydropathy |
| Hydroperoxide lyase |
| hydrophobicity |
| Hydrophobicity of RBCS helices |
| Hydrostatic pressure |
| Hydrothermal |
| Hydrothermal liquefaction |
| hydroxyacetone |
| Hydroxyl radicals |
| Hygromycin B resistance |
| Hyper-production |
| Hypophthalmichthys molitrix |
| Hypoxia |
| IC transport |
| IC transport photosynthesis |
| Iceland |
| ichthyotoxicity |
| Ichthyotoxicity |
| icosahedral viruses |
| ICP-MS |
| identification |
| Identification |
| Ignatius |
| IGS |
| Illumina |
| Illumination |
| image analysis |
| Image analysis |
| imaging flow cytometry |
| Immobilisation |
| immobilization |
| Immobilized cultivation |
| Immune response |
| immunoassays |
| immunoblotting |
| immunocytochemical detection |
| Immunocytochemical detection |
| immunocytochemistry |
| Immunoelectron microscopy |
| immunoelectron microscopy |
| immunofluorescence |
| immunogold electron microscopy |
| immunogold localization |
| Impedance cytometry |
| Improved factors |
| in situ hybridization |
| in situ hybridization chain reaction |
| In situ isotope labeling experiment |
| in vitro association (phycobilisome) |
| In vitro synthesis |
| In vivo chlorophyll fluorescence |
| in vivo fluorescence |
| in vivo labelling |
| In-fusion cloning |
| In-situ assessment |
| In-vivo fluorescence |
| inbreeding |
| incorporation |
| incubation experiment |
| Independent action |
| independent component analysis |
| Indigenous bacteria/cyanobacteria |
| individual growth rates |
| Individual variability |
| indole-3-acetic acid |
| Indole-3-acetic acid |
| indoor mesocosm |
| induced defense |
| inducer (of protoplast-release-inducing protein) |
| inducible promoter |
| inducing protein |
| induction by glucose |
| Induction experiment |
| Industrial |
| industrial effluent |
| Industrial pollution |
| inflammation |
| info-chemicals |
| infochemicals |
| Infochemicals |
| ingestion |
| ingestion rate |
| Inhibitation |
| inhibition |
| Inhibition |
| Inhibition activity |
| inhibition of adhesion |
| inhibitor |
| Inhibitory efects |
| Initial concentration |
| initial risk assessment |
| Inorganic carbon |
| inorganic carbon |
| inorganic carbon accumulation |
| inorganic carbon utilization |
| inorganic nutrients |
| inorganic polyphosphate |
| insects |
| insertion sequence |
| insertion sequences |
| integrative taxonomy |
| Integrity monitoring |
| inter-species |
| interaction |
| Interaction potential |
| intercalation |
| Interfilum |
| intergenic spacer region |
| Interior components loss |
| intermediate fibres |
| Internal recycle |
| Internal transcribed spacer |
| Internal Transcribed Spacer |
| internal transcribed spacer |
| internal transcribed spacer (ITS) |
| internal transcribed spacer 2 |
| internal transcribed spacer region |
| interspecies metabolic interactions |
| Interspecific variation |
| interstrain variation |
| intertidal zone |
| Intestinal microflora |
| intra-species |
| Intra-species variation |
| Intracellular analysis |
| intracellular bacteria |
| Intracellular contents |
| intracellular distribution |
| Intracellular H2O2. |
| intracellular inorganic carbon accumulation |
| intracellular localization |
| intracellular metals |
| intracellular microcystin |
| intracellular phosphate |
| intracellular processing |
| Intraperitoneal administration |
| intraspecific phylogeny |
| Intraspecific Plasticity |
| Intraspecific variation |
| intraspecific variation |
| intrinsic disorder |
| intrinsic facto |
| introduced species |
| Intron |
| intron |
| intron diversification |
| intron encoded protein |
| intron homing |
| intron phylogeny |
| intron sliding |
| intron transposition |
| introns |
| Inversion |
| inversion |
| inverted repeat |
| inverted repeats |
| Infiltration facility |
| Iodinated hydrocarbons |
| iodine |
| iodine accumulation |
| ionic liquid |
| ionizing radiation |
| ionophore antibiotics |
| ipi |
| Ipomoea aquatica |
| Irgarol |
| Irgarol 1051 |
| Iris pseudacorus |
| Iron |
| iron |
| Iron depositing hot spring |
| iron limitation |
| Iron tolerance |
| Iron uptake |
| Iron(Fe2+) supplementation method |
| iron-complexing ligand |
| iron-deficient conditions |
| Iron-limited |
| Iron-rich |
| iron-superoxide dismutase (immunogold labeling) |
| irradiance |
| Irradiation |
| Irrigation water |
| Isahaya-Bay |
| Isahaya-Shin-ike-Pond |
| ISO 14371 |
| iso-floridoside |
| Iso-seq |
| Isobologram |
| isobutyl-cyanoacrylate |
| Isochrysis |
| Isochrysis |
| isogamete |
| isogamous conjugation |
| isolated chloroplast |
| isolation |
| Isolation |
| isolation by distance |
| isolation characteristics |
| Isopentenyl diphosphate |
| Isoprenoid biosynthesis |
| isopropyl disulfide |
| isopropyl mercaptan |
| isopropyl sulfonyl chloride |
| isotope effect |
| isotope tracer |
| isotopic labelling |
| iTRAQ |
| iTRAQ analysis |
| ITS |
| ITS rDNA |
| ITS rDNA secondary structure |
| ITS-2 |
| ITS-2 secondary structure |
| ITS-sequencing |
| ITS2 |
| Ixipapillifera |
| jakobids |
| Japan |
| Japan: Quantitative PCR assay |
| Japanese cedar |
| Japanese freshwaters |
| Japanese Gambierdiscus |
| Japanese lakes |
| Japanese taxa |
| johkasou |
| Joint Genome Institute |
| joint toxicity |
| JPCC DA0580 |
| juveniles |
| kairomonda |
| kairomone |
| Karenia |
| Karenia brevis |
| Karenia mikimotoi |
| Kareniaceae |
| Karlodinium |
| Karlodinium veneficum |
| karyogamy |
| karyotype |
| Katablepharidophyta/Kathablepharida |
| Katablepharis/Kathablepharis japonica |
| kathablepharids |
| Kazakhstan |
| ketocarotenoids |
| Ketoconazole |
| Keywords |
| KEYWORDS: trichloroacetic acid precursor |
| KHVD |
| killer bacteria |
| Killer microorganisms |
| Kinesin |
| Kinetic |
| kinetic analysis |
| Kinetic model |
| Kinetocyst |
| Kinetoplastea |
| Kinetoplastid |
| Kinetoplastida |
| Kirchneriella |
| Klebsormidium |
| Klebsormidium flaccidum |
| Klebsormidium nitens |
| kleptochloroplast |
| kleptochloroplastidy |
| kleptoplastidy |
| kleptoplasty |
| knock-in |
| Knockdown |
| koi herpesvirus |
| Kumla, D., Sousa, M. E., Vasconcelos, V., Kijjoa, A. |
| L-asparaginase |
| L-lysine |
| L. amylovorus |
| L. panduriformis |
| L. ruminis |
| L/W ratio |
| laboratory culture tank |
| Laboratory selection |
| labyrinthulomycete |
| laccase |
| Laccase |
| Lactate |
| lactate |
| lactic acid |
| Lactic acidbacteria |
| Lactobacillus |
| Lactobacillus agilis |
| lake alkalinity |
| Lake Biwa |
| Lake environment |
| Lake Erie |
| Lake Kasumigaura |
| Lake Kasumigaure |
| Lake Ludoš |
| Lake Magadi |
| lake mitigation |
| lake Nakuru |
| Lake Shinji |
| Lake Suigetsu |
| lake water |
| Lakes |
| Lambert–Beer law |
| Laminaribiose phosphorylasea |
| laminarin |
| laminarioligosaccharides |
| LAMP |
| LAMP method |
| land plant evolution |
| land plants |
| Land plants |
| land restoration |
| landfill leachate |
| landplants |
| large scale microcosm |
| large subunit of ribulose-1 |
| large subunit of ribulose-1,5-bisphosphate carboxylase / oxygenase (rbcL) gene |
| large subunit of Rubisco (rbcL) gene |
| large subunit ribosomal DNA |
| large subunit rRNA |
| Large-scale microalgae production |
| larvae |
| larval quality |
| LAS |
| lasalocid |
| last eukaryotic common ancestor |
| later homonym |
| lateral gene transfer |
| Lateral gene transfer |
| lateral intron transfer |
| lateral transfer |
| lattice imaging |
| LC-HRMS/MS (Q-Tof 6550) |
| LC-LRMS/MS (API4000 QTrap) |
| LC-MS |
| LC-MS/MS |
| LC–ESI-MS |
| leachate |
| leaching test |
| Lead |
| lead |
| leaf disk |
| leaf extract |
| Lectin |
| lectin |
| lectotype |
| LED |
| LED wavelength |
| Legionella |
| Leiocephalium pseudosanguineum |
| Lemna japonica Landolg |
| lesser flamingo |
| lethal effect on rotifers |
| Lethality |
| Leucocrypta |
| Leucocryptos marina |
| levofloxacin |
| Lewiniosphaera |
| LHC |
| LHCP II |
| Lhcr |
| lichen |
| Lichenized fungi |
| life cycle |
| Life cycle |
| life cycle of cell |
| Life history |
| Life history traits |
| life-cycle stages |
| life-history evolution |
| Lifespan |
| Ligh |
| light |
| Light adaptation |
| light attenuation |
| Light attenuation model |
| Light conditions |
| Light Conversion Efficiency |
| Light dependence |
| Light effects |
| light emitting diode |
| Light harvesting |
| light harvesting complex |
| Light harvesting complex I |
| Light intensity |
| light intensity |
| Light Intensity Effect |
| light microscopy |
| Light quality shift |
| light regulation |
| light stress |
| Light use |
| light wavelengths |
| light-dark cycles |
| Light-dependent |
| light-driven enzyme |
| light-emitting diode |
| light-emitting diodes (LEDS) |
| Light-feeding strategy |
| light-harvesting antenna |
| light-harvesting complex |
| Light-harvesting complex |
| light-harvesting complex proteins |
| light-harvesting complexes |
| Light-independent |
| light-induced absorbancechange |
| Light-shielding |
| light-stress |
| Lightgrowth response |
| Lighting/CO2 balance |
| Lightintensity |
| Lignin |
| lignin |
| Ligninolytic enzymes |
| Lignosulfonates |
| Likelihood analysis |
| Limitation |
| limitation |
| Limiting factor |
| limiting nutrient |
| Limnothrix |
| Limnothrix |
| Limnothrix sp., Phycocyanin |
| linC |
| lindane |
| Linear alkylbenzene sulfonate |
| linear mitochondrial DNA |
| Linker protein |
| Linoleic acid |
| linoleic acid |
| linolenic acid |
| Lipase |
| Lipid |
| lipid |
| Lipid accumulation |
| lipid biomarker |
| lipid biosynthesis |
| Lipid biosynthesis |
| lipid body |
| Lipid body |
| Lipid droplet topology |
| Lipid droplets |
| lipid droplets |
| lipid LED |
| lipid metabolism |
| Lipid metabolism |
| Lipid peroxidation |
| Lipid production |
| lipid production |
| Lipid productivity |
| Lipid Productivity |
| lipid-linked desaturation |
| lipid-producing algae |
| Lipidomics |
| lipids |
| Lipids |
| Lipopolysaccharide (LPS) |
| Liquefaction |
| Liquid |
| Liquid chromatography tandem mass spectrometry |
| Liquid chromatography-mass spectrometry |
| liquid chromatographymass spectrometry |
| liquid circulation |
| Liquid digestate |
| Live feed |
| Live food |
| Live microalgal diets |
| liverwort |
| LM |
| localization |
| Localization |
| Localization of the microbial rhodopsin in eukaryotes |
| loess |
| log Pow, susceptibility |
| Logistic equation |
| long branch attraction |
| Long chain alkene |
| Long reads |
| long-branch attraction artifacts |
| Long-chain alkyl ketones |
| Long-chain fatty acids |
| Long-read sequencing |
| Long-term algicidal effect |
| Loosely bound |
| lorica-bearing flagellates |
| loroxanthin |
| loroxanthin dodecenoate |
| loss rates |
| Lotharella |
| Lotharella |
| Lotka–Volterra competition equation |
| Lotka–Volterra model |
| Lotus-FITC |
| LOV |
| low molecular weight allelochemicals |
| low MW carbohydrates |
| Low temperature |
| Low-light photoacclimation |
| low-pressure (LP) UV lamp |
| Low-pressure ultraviolet lamp |
| low-temperature adapted group |
| low-vacuum scanning electron microscope (LV SEM) |
| LSU |
| LSU rDNA |
| LSU rRNA |
| luciferase gene |
| luciferin analogue |
| Lugol's iodine solution |
| luminescence |
| Lutein |
| lutein |
| Luteolin |
| luxury phosphate uptake |
| Lycopene cyclase |
| Lycopene epsilon cyclase |
| lycopene βcyclase |
| Lycopersicon esculentum lectin |
| Lyngbya majuscula |
| lysis |
| Lysis |
| lysogeny |
| lysophosphatidic acid acyltransferase (LPAT) |
| LysoTracker |
| Lythrum salicaria |
| lytic activity |
| Lytic bacteria |
| Lytic characteristics |
| lytic enzyme |
| M icroalgal community |
| M. aeruginosa |
| M. wesenbergii |
| M1 |
| Ma-LMM01 |
| MAAs |
| Machine learning |
| machine learning |
| macroalgae |
| macrolide |
| macrophyte |
| macrophytes |
| Macrophytes |
| magnecium |
| magnetic micro stirrer bar |
| maitotoxin |
| maitotoxin-4 |
| Maitotoxins |
| maize |
| major transitions |
| malarian circle |
| malate dehydrogenase |
| Malaysia |
| MALD-TOF |
| MALDI Biotyper |
| MALDI-TOFMS |
| male gamete |
| male–female sexual dimorphism |
| malic enzyme |
| Mamiella |
| Mamiellales |
| mammalian cell culture |
| manganese |
| Manganese peroxidase |
| mangrove |
| mannan-binding lectin |
| mannitol |
| Mannitol |
| Mannose-1,6-bisphosphate |
| Mantoniella |
| Marchantia polymorpha |
| Marimonadida |
| marina |
| Marine |
| marine alga |
| Marine algae |
| Marine and freshwater environments |
| marine bacteria |
| marine coccoids |
| Marine cyanobacteria |
| marine cyanobacteria |
| marine diatom |
| Marine diatoms |
| marine diatoms |
| marine ecotoxicity |
| marine environment |
| Marine medaka |
| marine microalga |
| marine microalgae |
| marine organisms |
| marine phytoplankton |
| marine picoeukaryotes |
| Marine pollution |
| Marine sulphur cycle |
| marineparticles |
| marker |
| Marker-free engineering |
| Marnaviridae |
| Mars exploration |
| Marsupiomonadales |
| Marsupiomonas |
| Martian regolith simulant (MRS) |
| Marvania |
| Marvania geminata |
| mass balance |
| Mass culture |
| mass spectrometry |
| Mass spectrometry |
| mass spectrometry (MS) |
| mass spectrometry detection |
| mass spectroscopy |
| Mastigocladus |
| MAT3/RB, mating type locus |
| material cycle |
| Mathematical modelling |
| mating |
| Mating group |
| mating group |
| mating locus |
| mating papilla |
| mating population |
| mating structure |
| mating system |
| mating systems |
| mating type |
| mating type interaction |
| mating type-determining gene |
| mating-type |
| Matrix |
| matrix metalloprotease genes |
| maturation |
| mature cyst |
| maximum algal yield |
| maximum bounds |
| maximum quantum yield of photosystem II |
| maximum quantum yieldMicrocystis aeruginosa |
| maximum-likelihood method |
| Mayamaea permitis |
| Mayamaea pseudoterrestris |
| Mayamaea pseudoterrestris sp., nov. |
| Mayamaea terrestris |
| Mayorella viridis |
| MCS |
| mcy genes |
| mcy operon |
| McyB |
| mcyB |
| Mechanical stimulation |
| Mechanism of action |
| Mechanisms |
| Medakamo hakoo |
| Media |
| Mediterranean Sea |
| Medium chain fatty acid |
| medium recycle |
| medium-pressure (MP) UV lamp |
| Medium-pressure ultraviolet lamp |
| meheionine synthase |
| Meiosis |
| Melanoidin |
| Melatonin |
| Membrane |
| Membrane complexes |
| Membrane fouling |
| membrane fractionation |
| membrane lipid |
| Membrane photobioreactor |
| membrane photobioreactor |
| membrane photobioreactor (MPBR) |
| membrane potential |
| Membrane protein complex |
| Mercury |
| Merismopedia tenuissima |
| MES |
| mesocosm |
| Mesostigma |
| Mesostigma |
| Mesostigma viride |
| Mesostigma viride |
| Mesozooplankton |
| Meta-analysis |
| metabar-coding |
| metabarcoding |
| Metabolic diversity |
| Metabolic engineering |
| metabolic flow |
| Metabolic flux analysis |
| metabolic genes |
| Metabolic network |
| Metabolic profiling |
| metabolic rates |
| Metabolic stress |
| metabolic turnover |
| Metabolism |
| metabolism |
| Metabolite |
| Metabolite analysis |
| Metabolites |
| metabolites |
| Metabolomic analysis |
| Metabolomics |
| metabolomics |
| Metagenome assembly |
| Metagenomic analysis |
| metagenomics |
| Metagenomics |
| Metal recovery |
| metal selectivity |
| Metal speciation |
| metal toxicity |
| Metal toxicity |
| metatranscriptome |
| Methane fermentation |
| Methane seep |
| Methanogenic archaea |
| methanol extracts |
| methanotroph-photoautotroph coculture |
| Methionine adenosyltransferase |
| methionine deficiency |
| methionine sulfoximine |
| methionine synthase |
| method |
| methyl esters |
| Methyl viologen |
| methylated polyamine |
| methylation |
| Methyltransferase |
| Methyltransferase gene |
| metZ mutant |
| Mevalonate |
| Mg availability |
| MgO NPs |
| MIB-Synthesis (mic) gene |
| mibC |
| mic |
| Micractinium |
| Micractinium inermum |
| Micractinium reisseri |
| Micractinium sp. |
| Micractinium tetrahymenae |
| Micrasterias |
| Micrasterias pinnatifida |
| Micro-algae |
| Micro-algae oil |
| Micro-pollutants |
| micro-swimmer |
| microaerophilic |
| Microalga |
| microalga |
| Microalgae |
| microalgae |
| Microalgae adaptation |
| Microalgae and activated sludge |
| microalgae antiviral activity |
| Microalgae biogranulation |
| Microalgae cultivation |
| Microalgae growth-promoting bacteria |
| Microalgae production |
| Microalgae-bacteria |
| Microalgae-fungi |
| Microalgae-yeast |
| Microalgae–nitrifying bacteria consortia |
| microalgal |
| microalgal biomass |
| Microalgal biomass |
| Microalgal diversity |
| Microalgal production |
| microalgal-bacterial consortia |
| microarray |
| Microbial community analysis |
| Microbial contamination |
| microbial eukaryote |
| Microbial eukaryotes |
| microbial herbivory |
| Microbial lipid production |
| microbial loop |
| microbial mat |
| Microbial microcosm |
| Microbiology |
| Microbiome |
| microbiome |
| microbiome transfer |
| microbody |
| microcavity array |
| microchannel deformation effects |
| microchip |
| Microchloropsis |
| Microcosm |
| microcosm |
| microcyclamide |
| Microcystin |
| microcystin |
| Microcystin degradation |
| Microcystin immunoassay |
| microcystin production |
| microcystin RR, toxins |
| microcystin synthetase |
| Microcystin synthetase |
| microcystin-producing |
| Microcystins |
| microcystins |
| microcystins and nodularins |
| Microcystis |
| Microcystis |
| microcystis |
| Microcystis aeruginosa |
| Microcystis aeruginosa |
| microcystis aeruginosa |
| Microcystis aeruginosa f. aeruginosa |
| Microcystis aeruginosa Kützing |
| microcystis blooms |
| Microcystis colony |
| Microcystis cyanobacteria |
| Microcystis sp. |
| Microcystis viridis |
| Microcystis-blooming |
| Microcystis-dominated cyanobacterial bloom |
| Microfabricated structure |
| microfiltration |
| microflagellate |
| microfluidic |
| Microfluidic Devices |
| microfluidic system |
| microfluidics |
| Microfluidics |
| Microglena |
| Micromonas |
| Microorganism |
| Microplastic |
| Microplate |
| Microplate technique |
| microRNA |
| microrobot |
| Microsatellite |
| microsatellite |
| microsatellite marker |
| microsatellites |
| microscopy |
| Microseira wollei |
| microspectroscopy |
| microtiter plates |
| microtubular roots |
| microtubule |
| Microtubule |
| microtubule pattern |
| microtubules |
| microviridin |
| microviridin G |
| microviridin H |
| Microwave oven |
| MID |
| minD |
| mineral |
| minicircles |
| Minimal inhibitory concentration (MIC) |
| minimum cell quota |
| MinION-Oxford Nanopore sequencer |
| minus dominance gene (MID) |
| mircoplate |
| miRNA |
| Mitigation |
| mitigation |
| mitochondria |
| mitochondria, plastids |
| mitochondria-plastid division genes |
| mitochondrial COXI gene |
| Mitochondrial division |
| mitochondrial division |
| mitochondrial division protein |
| mitochondrial DNA |
| mitochondrial DNA conformation |
| Mitochondrial genes |
| Mitochondrial genome |
| mitochondrial genome |
| mitochondrial genome evolution |
| mitochondrial genome expansion |
| mitochondrial nucleoid protein |
| Mitochondrial presequence |
| Mitochondrial protein import |
| mitochondrial respiration |
| mitochondrion |
| mitosis |
| Mitosis |
| mitosomes |
| Mixed culture |
| Mixing |
| mixis |
| mixoplankton |
| mixotroph |
| Mixotrophic |
| Mixotrophic cultivation |
| Mixotrophic metabolism |
| mixotrophy |
| Mixotrophy |
| Mixture toxicity |
| Mixture toxicology |
| MLST |
| Mobilome |
| Mode of action |
| model calculation |
| model misspecification |
| Model plants |
| model simulation |
| Modeling |
| Moderate light |
| Modified seawater medium |
| Moewusinia |
| molecuar phylogeny |
| molecular |
| molecular analysis |
| molecular assembly |
| molecular docking |
| molecular evolution |
| Molecular evolution |
| Molecular identification |
| molecular identification |
| molecular identification |
| molecular marker |
| molecular markers |
| Molecular monitoring |
| molecular monitoring |
| molecular phylogenetic analysis |
| molecular phylogeny |
| Molecular phylogeny |
| molecular phylogeny, phycology |
| molecular probes |
| Molecular response |
| Molecular size distribution |
| Molecular systematics |
| molecular taxonomy |
| Molecular weight |
| molecular weight |
| molt |
| molybdenum |
| Molybdenum blue reaction |
| monensin |
| monitoring |
| Monitoring |
| monoclonal antibody |
| Monoecious species |
| monogalactopyranosyl acylglycerol |
| monogalactosyl diacylglycerol |
| monogalactosyldiacylglycerol |
| monoglucosyl diacylglycerol |
| monoicous species |
| Monomastigaceae |
| Monomastigales |
| Monomitochondrial eukaryote |
| monophyletic species |
| monophyly |
| Monoraphidium |
| Monoraphidium sp. |
| Monosaccharide composition |
| Monosaccharides |
| Monosodium glutamate |
| Monoxenic Culture |
| Moringa Oliefera |
| morphological change |
| morphological characteristics |
| morphological data |
| morphological evolution |
| Morphological novelty |
| morphological variability |
| morphological variation, rbcL gene |
| morphology |
| Morphology |
| morpholohy |
| morphometric analyses |
| morphotype |
| Morphotypes cells |
| Mortality |
| moss |
| Most probable number |
| Mother cell wall |
| Motile cells |
| motility |
| motion analysis |
| motion control |
| motive force |
| mRNA accumulation |
| mRNA expression |
| mucilage |
| Mucus |
| mud |
| mud gels |
| multi-element analysis |
| Multi-pulse electroporation |
| multicellularity |
| Multicellularity |
| multigene analysis |
| Multigene phylogenetics |
| Multigene phylogeny |
| multigene phylogeny |
| multiomics |
| Multiple cells |
| Multiple drivers |
| Multiple fission |
| Multiple Strain |
| multiple stressors |
| multiple transformation |
| multiple-choice mating |
| Multiplex HRM qPCR |
| Multiplex PCR |
| Multiplexed organelle imaging |
| multiply capability |
| Multivariate analy |
| Multivariate analysis |
| Municipal wastewater |
| Muroplasts |
| musty odor |
| Musty odor |
| Mutagenesis |
| mutagenesis |
| mutagenicity |
| mutagenicity test |
| mutant |
| Mutation |
| mutation |
| Mutation identification |
| mutation rate |
| mutational hazard hypothesis |
| mutations |
| MWI fly ash |
| MYB-type transcription factor |
| Mychonastes |
| Mychonastes ariiae sp. nov. |
| Mychonastes gigas sp. nov. |
| Mychonastes kasaiae sp. nov. |
| Mychonastes takamurae sp. nov. |
| mycobiont |
| mycosporine amino acids |
| mycosporine-glycine |
| mycosporine-like amino acid (MAA) |
| Mycosporine-like amino acids |
| mycosubtilin |
| myocardial infarcted mouse |
| Myosin XI |
| Myriophyllum spicatum |
| mys genes |
| Myxococcus xanthus |
| myxol |
| N metabolism |
| N turnover |
| N uptake |
| n-3/n-6 |
| N-acetyl-glucosamine |
| n-alkylamine |
| N-terminal region |
| N-terminal sequence |
| N2 fixation |
| Na+ transport |
| Na+, K+-ATPase |
| Na+-APTase [EC 3.6.1.3] |
| Na+-ATPase |
| Na+/H+ antiporters |
| NaCl |
| NaCl effect |
| nad evolution |
| NADH-nitrate reductase |
| NADPH |
| NaHCO3 |
| Naked amoebae |
| Naked cells (N-Cells) |
| naked flagellate |
| Nannochloris |
| Nannochloris bacillaris |
| Nannochloropsis |
| Nannochloropsis oceanica |
| Nannochloropsis oculata |
| nanobubble water |
| Nanocellulose |
| nanoeukaryotes |
| nanofiltration membrane |
| Nanoflagellate |
| NanoLC/MS |
| Nanomaterial |
| Nanoparticle |
| nanoparticles |
| Nanoparticles |
| Nanoplastic |
| nanoplastics |
| nanoplate |
| Nanoplates |
| Nanosecond pulsed electric field (nsPEF) |
| NaOH |
| NaOH extraction |
| Native glycogen |
| Native-PAGE |
| natural bloom |
| Natural organic matter (NOM) |
| Natural pigment |
| natural product |
| natural products |
| natural systematics |
| Nauplii |
| Navicula citrus |
| Navicula pelliculosa |
| NC64A |
| neck teeth formation |
| Negative emissions |
| Negative phototropism |
| neighbor-joining method |
| nematodes |
| Neochloris |
| Neochlorosarcina |
| Neocystis mucosa sp. nov.. |
| neodymium magnet |
| neonate size |
| neotype strain |
| Neowestiellopsis persica, cpcA |
| neoxanthin |
| Nephrochlamys |
| Nephroselmidales ord nov. |
| Nephroselmidophyceae |
| Nephroselmiis |
| Nephroselmis |
| Nephroselmis |
| Nephroselmis anterostigmatica sp. nov. |
| Nephroselmis clavistella sp. nov. |
| Nephroselmis olivacea |
| Nephroselmis spinosa |
| Nephroselmis viridis |
| Netrium |
| Network-forming amoebae |
| neuro-2a (N2a) assay |
| Neuro-2a assay |
| neurotoxin |
| Neurotoxin |
| neutron activation analysis |
| Neutrophile |
| new findings |
| new quinolone |
| new record |
| new species |
| New species |
| new taxon |
| New Zealand |
| next-generation sequencing |
| NGS |
| NGS library |
| NH4+ starvation |
| NH4+ uptake |
| Niche partitioning |
| Nickel |
| NIES culture tank |
| NIES-2137 |
| NIES-3351 |
| NIES-551 |
| NIES-Collection |
| Nif genes |
| nif genes |
| nif |
| Night biomass loss |
| Nile Red |
| nirate concentration |
| Nitella |
| Nitella comptonii |
| Nitellopsis |
| nitrate |
| nitrate and phosphate uptakes |
| Nitrate assimilation |
| nitrate concentration astaxanthin |
| Nitrate nitrogen |
| nitrate reductase |
| nitrate uptake |
| nitrate utilization |
| nitrate/nitrite transporter |
| nitric oxide |
| nitrification |
| nitrifying bacteria |
| nitrite |
| Nitrite reductase |
| nitrite reductase |
| nitrite uptake |
| nitrogen |
| Nitrogen |
| nitrogen and phosphorus deprivation |
| nitrogen assimilation |
| Nitrogen deficiency |
| nitrogen deficiency |
| Nitrogen depletion |
| Nitrogen fixation |
| nitrogen fixation |
| Nitrogen Fixation |
| nitrogen limitation |
| Nitrogen loss |
| Nitrogen manipulation |
| nitrogen metabolism |
| nitrogen oxides |
| Nitrogen regulation |
| nitrogen removal |
| Nitrogen removal |
| Nitrogen starvation |
| Nitrogen supplementation |
| Nitrogen utilization |
| nitrogen-15-amino acid |
| nitrogen-fixation |
| Nitrogen-fixation |
| nitrogen-fixing algae |
| Nitrogen-to-phosphorus ratio |
| nitrogenase |
| Nitrogenase |
| nitrogenase activity |
| nitrogenase evolution |
| nitrogenous fertilizer reduction |
| nitrophenol |
| nitrous oxide |
| Nitzschia |
| Nitzschia |
| Nitzschia palea |
| NMR |
| NO sensor |
| no-choice mating |
| No-observed-effect concentration |
| NO3- |
| Noctiluca scintillans |
| Nodularins |
| Noelaerhabdaceae |
| nomenclatoric validation |
| nomenclature |
| non-axenic culture |
| non-bleaching A (NblA) protein |
| non-bleaching gene (nblA) |
| non-genetic heritability |
| Non-green algae |
| Non-model species |
| Non-nutrient metal |
| Non-photosynthetic plastid |
| non-polar fatty acids |
| Non-reducing sugars |
| non-volatile organic acids |
| Nonacosadiene |
| noncoding |
| nonconventional intron |
| Nonphospholipid |
| nonphotochemical quenching |
| Nonphotochemical quenching |
| nonphotosynthetic plastid genome |
| nonphotosynthetic plastids |
| nonribosomal polypeptide synthesis |
| norflurazon |
| normalization |
| normalized library |
| Norrisiella |
| norspermidine |
| northwest North Pacific sediment |
| Nostoc |
| Nostoc commune |
| Nostoc minutum |
| Nostoc punctiforme |
| Nostoc sp. |
| Nostoc sp. HK-01 |
| Nostoc sp.HK-01 |
| Nostoc-like morphology |
| Nostocaceae |
| Novel cyanobacterium |
| novel markers |
| Novel ovatoxin isomers |
| novel species |
| NRPS |
| NtcA regulation |
| nuclear DNA |
| Nuclear envelope |
| nuclear genes |
| nuclear genome |
| nuclear magnetic resonance (NMR) |
| Nuclear migration |
| nuclear migration |
| nuclear rDNA |
| nuclear SSU rDNA |
| nuclear-encoded plastid RNA polymerase |
| nucleic acids |
| nucleoid |
| Nucleolus |
| nucleomorph |
| Nucleomorph |
| Nucleotide substitution |
| nucleus-associated organelles |
| Numerical analysis |
| Numerical methods |
| Nutrient |
| nutrient |
| nutrient consumption |
| Nutrient cycling |
| Nutrient dilution |
| nutrient enrichment |
| Nutrient limitation |
| Nutrient metal |
| Nutrient recovery |
| Nutrient regulation |
| nutrient removal |
| Nutrient removal |
| nutrient removal rate |
| Nutrient stratification |
| nutrient supply |
| nutrient-depletion |
| nutrient-depletion effect |
| nutrients |
| Nutrients |
| Nutrients designing |
| Nutrients removal |
| nutrition |
| Nutrition |
| O-acetylserine (thiol) lyase |
| O-α-D-glucopyranosyl-(1→2)-glycerole |
| O2 effect |
| O2 evolution |
| O2 inhibition |
| O2 uptake |
| Obesity |
| ocean |
| ocean acidification |
| Ocean acidification |
| Ocean acidification |
| Ochromonas |
| Ochromonas |
| Ochromonas danica |
| ochrophyte |
| octadeca-6,9,12,15-tetraenoic acid |
| octadecapentaenoic acid |
| Odontella aurita |
| odorous compounds |
| off-flavor compound |
| Off-flavour compounds |
| Ofloxacin |
| Oil |
| oil accumulation |
| Oil-based astaxanthin extraction method |
| oil-spill |
| Okadaic acid |
| Oleaginous filamentous microalgae |
| oleaginous microalga |
| oleaginous strain, polyunsaturated |
| Oleaginous yeast |
| Oleamide |
| oligonucleotide probes |
| oligopeptide |
| oligotrophic ocean |
| Olisthodiscus luteus |
| Oltmannsiellopsis |
| Oltmannsiellopsis unicellularis |
| Omega-3 fatty acids |
| On-chip cell Manipulation |
| on-chip Sort |
| On-chip sort |
| On-chip Sort |
| One-pot method |
| One-pot reaction |
| Oogamochlamydinia |
| Oogamochlamys |
| oogamy |
| oospores |
| Open raceway pond |
| Opisthokont |
| Opisthokonta |
| optical computing |
| optical filters |
| optical oxygen meter |
| Optimal and suboptimal hosts |
| Optimal cultivation |
| Optimization |
| Optoelectorwetting |
| optofluidics |
| Optogenetics |
| orbital motion |
| Oreochromis niloticus |
| organellar DNA |
| organelle |
| Organelle division |
| organelle division genes |
| organelle genome |
| Organelle genome |
| organelle genomics |
| Organellokinesis |
| organic acid |
| organic carbon |
| Organic carbon |
| organic complexation |
| organic compounds |
| Organic matter |
| organic nitrogen compounds |
| Organic nutrient |
| organic phosphorus |
| Organic phosphorus |
| organic phosphorus,phosphatase |
| organic pollution |
| organic solvents |
| organic waste |
| orthocaspases, PCD morphotypes |
| orthophosphate |
| Oscillatoria |
| Oscillatoria acuminata PCC 6304 |
| Oscillatoria agardhii |
| Oscillatoriales |
| Oscillatorin |
| oscillatorioid |
| OSMAC |
| osmolarity |
| Osmolyte |
| osmoregulation |
| Osmoregulation |
| osmotic strength |
| osmotolerance |
| Ostracod |
| Ostreococcus |
| Ostreococcus tauri |
| Ostreopsis |
| Ostreopsis cf. ovata |
| osynthetic pigments |
| Outdoor |
| outdoor cultivation |
| Outdoor cultivation |
| Outdoor raceway ponds |
| Outdoor semi-continuous culture |
| Outdoor sulture |
| outgroup |
| Ovatoxin-a |
| Overexpression |
| oxidant stress |
| Oxidation |
| oxidative pentose phosphate pathway |
| oxidative stress |
| Oxidative stress |
| Oxidative stress: TiO2 photocatalysis |
| oxidoreductase |
| oxygen consumption rates |
| oxygen evolution |
| oxygen evolution center |
| Oxygenic phototrophs |
| oxyphotobacteriav |
| Oyashio Current |
| Oyashio region |
| P457 |
| P700 chlorophyll a-apoprotein A2 (psaB) gene |
| P700 oxidation |
| Pacific oyster |
| Paclitaxel |
| Paddy field |
| paddy soil |
| Paenibacillus polymyxa |
| Paleontology |
| Paleoproterozoic |
| Paleothermometer |
| Palmelloid colony |
| Palmellopsidaceae |
| palmitoleic acid biosynthesis |
| Palse amplitude modulation (PAM) |
| Paludistella |
| palythene |
| palythine |
| Palytoxin |
| Palytoxin analogues |
| Palytoxin congeners |
| PAM fluorometry |
| PAML |
| Pandorina |
| Pandorina minodii |
| Pangenome |
| PAR absorbance |
| Paracercomonas |
| Parachlorella |
| Parachlorella kessleri |
| Parachlorella, Parachlorella kimitsuensis sp. nov. |
| Parachlorococcum |
| parallel basa bodies |
| paralytic shellfish poisoning (PSP) |
| Paralytic shellfish toxins |
| paralytic shellfish poisoning (PSP) |
| Paramecium bursaria |
| Paramecium bursaria symbiotic algae |
| paramylon |
| Paramylon |
| Paramylon doughnuts |
| paramylon production promotion |
| Paraphysoderma sedebokerensis |
| Paraquat |
| Parasite |
| parasite |
| Parasitism |
| parasitoid |
| parent |
| Parmales |
| parmales |
| Parmeliaceae |
| Parmotrema tinctorum |
| parsley |
| Partenskyella |
| Parthenospore |
| particle size distribution |
| particle size structure |
| particle-associated bacteria |
| particle-induced X-ray emmision |
| Particulate organic matter |
| particulate phosphorus |
| Particulate phosphorus |
| PatS |
| pattern center |
| Paulinella chromatophora |
| Paulinella micropora |
| PBCV-1 |
| PBsomes |
| PCB contamination |
| PCC type strains |
| PCR |
| PCR assays |
| PDMPO |
| PDMS |
| peatland |
| pectin |
| Pediastrum |
| Pediastrum boryanum |
| Pediastrum duplex |
| Pedinellophyceae |
| Pedinomonas |
| Pedinophyceae |
| pedinophyte |
| PEG |
| pelagic environment, phytoplankton |
| Pelagodinium béii |
| Pelagophyceae |
| penetration resistance |
| Penium |
| Penium margaritaceum |
| penta-amine |
| peptide |
| peptide synthetase |
| Peptide synthetase |
| peptides |
| peptidoglycan |
| Peptidoglycan |
| Perclozoa |
| perialgal vacuole |
| peridinin |
| Perinereis nuntia |
| Peripheral morphology |
| periphyton |
| periplasm |
| periplastidal compartment |
| Permeabilization |
| peroxisomal targeting signal (PTS) |
| peroxisome |
| Pervaporation |
| pesticide |
| Pesticide |
| pesticide analysis |
| pesticides |
| Pesticides |
| Pfiesteria piscicida |
| PFOS |
| pH |
| pH acclimation |
| pH change |
| pH control |
| pH effect |
| pH response |
| pH shock |
| pH-controlled process |
| Phacaceae |
| Phacotaceae |
| Phaeocystis |
| Phaeodactylum tricornutum |
| Phaeomonas parva gen. et sp. nov. |
| phaeophorbide |
| Phaeophyceae |
| Phaeothamniophyceae |
| Phaffia rhodozyma |
| phage display |
| Phage display |
| Phage resistance |
| phagocytosis |
| phagotrophy |
| Phalloidin |
| phalloidin |
| Pharmaceutical |
| pharmaceuticals |
| Phase transition |
| Phenol removal |
| Phenol-sulfuric acid method |
| Phenol-uptake capacity |
| Phenolic acids |
| phenolic comp. |
| Phenolic compounds |
| Phenolic elicitors |
| phenotypic plasticity |
| Phenotypic plasticity |
| phenoxazinone antibiotics |
| phenoxyethanol |
| Pheophorbide a |
| Pheophytin |
| Pheromone |
| pheromone |
| Phormidium |
| Phormidium parchydematicum |
| Phormidium tenue |
| Phormidium tenue |
| Phormidium tenue phylogenetic tree |
| Phormidiumtenue |
| phosphatase |
| phosphate |
| phosphate accumulation |
| phosphate deprivation |
| phosphate diester |
| phosphate esters |
| phosphate starvation |
| Phosphate uptake |
| phosphate-enriched culture |
| Phosphatidylcholine |
| phosphatidylcholine biosynthesis |
| Phosphatidylcholine biosynthesis |
| phosphatidylethanolamine methyltransferase |
| phosphatidylglycerol |
| Phosphite utilization |
| phosphodiester |
| phosphodiesterase |
| Phosphoenolpyruvate carboxylase |
| phosphoenolpyruvate carboxylase |
| phosphoethanolamine methyltransferase |
| Phosphoethanolamine-N-methyltransferase |
| Phosphoethanolamine-N-methyltransferase |
| phosphofructokinase |
| Phospholipid-N-methyltransferase |
| phospholyrase |
| Phosphomannomutase |
| Phosphoproteomics |
| Phosphorus |
| phosphorus |
| Phosphorus removal |
| phosphorus starvation |
| Phosphorus uptake |
| Phosphorus-deficiency |
| phosphorylase |
| Photo-bioreactor |
| photo-clarifier |
| Photo-flocculation |
| Photo-inducible mutant |
| photo-oxidative stress |
| photo-oxygenation |
| Photo-oxygenation |
| Photo-sensitivity |
| photoacclimation |
| photoaccumulation |
| photoalteration |
| photoautotrophic |
| photoautotrophic conditions |
| Photoautotrophic culture |
| photoautotrophic growth |
| Photoautotrophic microalgae |
| photoautotrophs |
| Photoautotrophy |
| photobiont |
| Photobioreactor |
| photobioreactor |
| Photocatalyst |
| photocatalytic inactivation |
| Photochemical quenching |
| photochromism |
| photodegradation |
| Photodynamic therapy |
| photoelectrochemical deposition |
| Photoinduction |
| Photoinhibition |
| photoirradiation |
| Photoisomerization |
| photon flux density |
| photooxidative stress |
| photoperiod |
| Photoperiod |
| photoperiodic condition |
| photophobic responses |
| Photophysiology |
| Photoprotection |
| photoprotection |
| photoreactivation |
| photoreceptor |
| Photorespiration |
| photorespiration |
| photorespiratory nitrogen cycle |
| Photosensitizer |
| Photosensor |
| Photosymbiosis |
| photosyntheis |
| photosynthesis |
| Photosynthesis |
| photosynthesis (CO2-concentrating mechanism) |
| Photosynthesis and respiration |
| Photosynthesis inhibition |
| photosynthetic |
| Photosynthetic activity |
| photosynthetic antenna system |
| Photosynthetic bacteria |
| photosynthetic carbon fixation |
| photosynthetic cell factories |
| photosynthetic CO2 fixation |
| photosynthetic CO2-fixation |
| photosynthetic efficiency |
| Photosynthetic efficiency |
| photosynthetic eukaryotes |
| Photosynthetic eukaryotes |
| photosynthetic loss |
| photosynthetic metabolism of carbon |
| photosynthetic mutants |
| Photosynthetic oxygen |
| Photosynthetic picoeukaryotes |
| Photosynthetic pigment |
| Photosynthetic pigments |
| photosynthetic pigments |
| photosynthetically usable radiation |
| photosystem |
| Photosystem |
| photosystem I |
| Photosystem I |
| photosystem II |
| Photosystem II |
| Photosystem II Quantum Yield |
| Photosystems |
| phototaxis |
| phototoxicity of chlorophylls |
| phototransformation |
| Phragmites australis |
| phycobilin |
| phycobiliprotein |
| Phycobiliproteins |
| phycobilisome |
| Phycobilisome |
| phycobilisome core |
| Phycobilisome, skeleton-like model |
| phycobilisomes |
| Phycobilisomes |
| phycobilisomes. |
| phycocyanin |
| Phycocyanin |
| Phycocyanin |
| Phycocyanine |
| Phycocyanobilin |
| Phycodnaviridae |
| phycoerythrin |
| phycology |
| Phycopeltis |
| Phycosphere |
| phycotoxins |
| phyllosphere |
| phylogenetic analyses |
| phylogenetic analysis |
| Phylogenetic analysis |
| Phylogenetic relationship |
| Phylogenetic signals |
| phylogenetic tree |
| Phylogenetic tree |
| phylogenetic trees |
| phylogenetics |
| phylogenetictree |
| phylogenomic analyses |
| phylogenomics |
| Phylogenomics |
| phylogeny |
| Phylogeny |
| phylogeny, Japan |
| phylogeography |
| Phylotranscriptomics |
| Physcomitrium patens |
| Physical fixation |
| Physical parameters |
| physico-chemical factors |
| physiological response |
| Physiological responses |
| Physiological state of algae |
| physiological status |
| Physiology |
| physiology |
| Phytas |
| Phytic acid |
| phytic acid |
| phytochromes |
| phytocomplexes |
| Phytoene synthase |
| phytohormone |
| phytohormones |
| phytoplankton |
| Phytoplankton |
| Phytoplankton behaviour |
| phytoplankton bloom |
| Phytoplankton composition |
| phytoplankton growth |
| Phytoremediation |
| phytosterol |
| phytoflagellates |
| Pichia pastoris |
| Picocyanobacteria |
| Picocystis |
| Picocystis salinarum |
| picoeukaryote |
| picoeukaryotes |
| picoeukaryotic plankton |
| Picophytoplankton |
| picoplankton |
| Picoplankton |
| Picoplanktonic algae |
| piezoelectric sensors |
| Pig farm |
| pigment |
| Pigment analysis |
| pigment composition |
| pigment mutant |
| pigment-protein complex |
| Pigmentation |
| pigments |
| Pigments |
| Pilot-scale |
| Pinguiophyceae |
| pink pigment |
| Placididea |
| placoderm |
| planktic |
| Planktic foraminifers |
| plankton |
| Plankton |
| planktonic |
| planktonic communities |
| planktonic cyanobacteria |
| Planktothrix |
| Planktothrix agardhii |
| Planktothrix Anagnostidis & Komárek 1988ICN emend. gen. nov. ICNP |
| Planktothrix rubescens |
| Planktothrix rubescens |
| planozygote |
| plant and protist organellar DNA polymerase |
| Plant evolution |
| plant evolution |
| Plant Evolution |
| plant extractions |
| plant extracts |
| plant hormone |
| Plant hormone |
| plant terrestrialization |
| plantae |
| Plantae |
| plants |
| plant–microbe interactions |
| Plasma membrane |
| plasma membrane |
| plasma membrane sugar transporter |
| Plasmodium |
| plasticity |
| Plasticization |
| plastid |
| Plastid |
| plastid 16S rRNA |
| Plastid 16S rRNA |
| plastid dividing-ring |
| Plastid division |
| plastid division |
| plastid DNA |
| plastid endosymbiosis |
| plastid envelope |
| plastid evolution |
| Plastid genome |
| plastid genome |
| plastid genomics, genome |
| plastid MEP pathway |
| Plastid peptidoglycan |
| Plastid replacement |
| Plastid terminal oxidase |
| plastid-associated genes |
| plastid-encoded plastid RNA polymerase |
| plastidial 16S rRNA gene |
| Plastidophila |
| plastids |
| plastocyanin |
| Plastocyanin |
| Plastoquinol |
| platelet aggregation |
| Platinum |
| Platydorina |
| Pleodorina |
| Pleodorina |
| Pleodorina sphaerica |
| Pleodorina starrii |
| Pleodorina starrii sp. nov. |
| Pleodorina thompsonii sp. nov. |
| Pleurocapsales |
| ploidy |
| plotoplast-release-inducing protein (PR-IP) |
| Polarotropism |
| Pollutant |
| pollutant release and transfer register (PRTR) information |
| Pollutant removal |
| pollution |
| Poly (isobutylcyanoacrylate) nanoparticles |
| poly(isobutyl-cyanoacrylate) nanoparticles |
| Poly-phosphate kinase gene |
| polyaluminum chloride |
| Polyaluminum chloride |
| Polyaluminum chloride (PACl) |
| polyamine |
| polyamines |
| Polybutylene Succinate (PBS) |
| Polycistronic gene |
| polyester backbone |
| Polyethylene glycol |
| Polyethyleneimine |
| polyextremophiles |
| Polyglucan |
| Polyhydroxy methacrylate |
| Polyhydroxybutyrate |
| polyion complex |
| polyketides |
| Polymeric thin-film photobioreactor |
| polymorphism |
| polynuclear hydroxyl-Aluminium ion |
| Polyols |
| polyphasic approach |
| Polyphasic approach |
| Polyphasic taxonomy |
| polyphasic taxonomy |
| polyphenol |
| Polyphenol |
| Polyphosphate |
| polyphosphate |
| polyphosphates |
| polyploidy |
| Polysaccharide |
| polysaccharide |
| Polysaccharide layer |
| Polysaccharide−protein complex |
| polystyrene microplastics |
| Polytoma |
| Polytomella |
| Polyunsaturated fatty acids |
| pond |
| Population |
| population |
| population biology |
| Population density |
| population density threshold |
| population dynamics |
| Population dynamics |
| population genetics |
| Population growth |
| Porphyra |
| porphyra-334 |
| Porphyridiales |
| Porphyridium |
| Porphyridium cruentum |
| Porphyridium purpureum |
| Position effect |
| Positive phototropism |
| Positive selection |
| positive selection, molecular convergence |
| post anaerobic digestion treatment |
| post-embryonic development |
| post-zygotic isolating mechanism |
| posttranscriptional regulation |
| Potamogeton pusillus |
| potassium |
| Potassium |
| Potassium iodide |
| Potential |
| poultry |
| Powdered activated carbon |
| Powdered nylon 6 |
| Power plant flue gas |
| PPCPs |
| PPEs |
| ppGpp |
| Pplyspermy |
| PR-IP |
| Prasinococcales |
| Prasinoderma |
| Prasinophyceae |
| Prasinophyte |
| prasinophyte |
| prasinophyte green algae |
| Prasinophytes |
| prasinophytes |
| Precious metal |
| precipitate |
| Predator and prey |
| predicted no effect concentration |
| predicted no effect concentrations |
| Predicted no-effect concentration |
| Preleptocephalus |
| Prenyltransferase |
| Pressurization |
| pretilachlor |
| Pretreatment |
| prevention |
| Prevention |
| Prey adhesion |
| prey selectivity |
| primary cultured rat hepatocytes |
| primary endosymbiosis |
| primary photosynthetic eukaryotes |
| primary producers |
| Primary producers |
| Primary risk analysis |
| primer design |
| primitive |
| Primitive red alga |
| principal component |
| Printzina |
| Proales similis |
| probe |
| Probiotic bacteria |
| Prochlorococcus |
| prochlorococcus |
| Prodigiosin |
| Production-scale |
| Productivity |
| productivity |
| Productivity improvement |
| profiling |
| progeny |
| programmed cell death |
| prokaryotes |
| prokaryotic viruses |
| Prokinetoplastina |
| Proline |
| Prolonged darkness |
| properties |
| Propylene glycol |
| propyrenoid |
| Prorocentrum caipirignum |
| Prorocentrum donghaiense |
| Prorocentrum lima complex |
| Prorocentrum minimum |
| Protaspis |
| protease inhibitor |
| Protein |
| protein |
| protein assembly |
| protein degradation |
| protein evolution |
| Protein extraction |
| protein insertions |
| Protein phosphatase |
| protein phosphatase 2A inhibition assay |
| Protein phosphatase-1 inhibition |
| protein phosphorylation |
| Protein production |
| Protein secondary structure |
| protein structure |
| protein-coding genes |
| protein-like fluorophore |
| Protein-protein interaction network |
| protein–protein docking |
| proteomic analysis |
| Proteomic mechanism |
| Proteomic resp |
| Proteomics |
| proteomics |
| Protist |
| protist |
| protists |
| Protists |
| Protochlorophyllide |
| protochlorophyllide |
| protochlorophyllide reductase |
| Proton-pumping rhodopsin |
| protoplast |
| protoplast release |
| protoplast release in conjugation |
| Protoplast release-inducing protein |
| protoplast-release |
| protoplast-release inducing protein |
| protoplast-release- inducing protein (PR-IP) |
| protoplast-release-inducing protein |
| protoplast-release-inducing protein (PR-IP) |
| Protosiphon botryoides |
| Prototheca |
| Protozoa |
| protozoa |
| Prymnesiales |
| Prymnesin |
| Prymnesiophyta |
| prymnesiophytes |
| Prymnesium |
| Prymnesium parvum |
| psaB |
| psaB gene |
| PsaD |
| PsaL |
| psbA |
| psbA |
| psbC |
| psbO |
| PsbO |
| psbO genes |
| PsbQ’ |
| PSD |
| Pseudanabaena |
| Pseudanabaena |
| Pseudanabaena foetida |
| Pseudanabaena foetida var. intermedia |
| Pseudanabaena foetida var. subfoetida |
| Pseudanabaena galeata |
| Pseudanabaena galeata Böcher |
| Pseudanabaena sp. |
| Pseudanabaena subfoetida |
| Pseudanabaenaceae |
| Pseudocalanus newmani |
| Pseudochattonella |
| Pseudochattonella verruculosa |
| Pseudochattonella verruculosa |
| Pseudohaptolina arctica |
| Pseudokirchneriella |
| Pseudokirchneriella subcapitata |
| Pseudokirchneriella subcapitata |
| Pseudokirchneriella subcapitata> |
| Pseudomona |
| Pseudomonas |
| Pseudomonas aeruginosa |
| Pseudomonas fluorescens |
| Pseudomonas KA6 |
| Pseudomonas putida |
| Pseudomonas sp. |
| Pseudomonas sp. JS-9 |
| Pseudomonas syringe |
| Pseudoscourfieldia |
| Pseudoscourfieldia marina |
| pseudovitamin B12 |
| pseudovitamine B12 |
| PSI |
| PSI-LHCI |
| PSII |
| PSII extrinsic protein deletion |
| PSII mutants |
| PSII-LHCII |
| Psychrophile |
| psychrophile |
| psychrophilic green algae |
| PTB |
| ptDNA |
| Pterosperma |
| PTG |
| PTOX |
| PUFA |
| PUFAs (polyunsaturated fatty acids) |
| pumpkin isocitrate lyase |
| Purification |
| purification |
| Pyramimonas |
| Pyramimonas |
| Pyramimonas parkeae |
| Pyramimonas parkeae |
| Pyramimonas vacuolata sp. nov. |
| Pyremimonas parkeae |
| Pyrenoid |
| pyrenoid |
| pyrenoid development |
| Pyrenoid loss |
| pyrenoid starch |
| pyrenoid-lacking Chlorella-like algae: Watanabea gen. et sp. nov. |
| pyrenoids |
| Pyrenomonas |
| Pyridoxal 5’-phosphate |
| pyrimidine biosynthetic cluster |
| Pyrobotrys |
| Pyrobotrys elongata |
| Pyruvate carboxylase |
| Pythium |
| Qantitative analysis |
| qRT-PCR |
| quadriflagellate chlamydomonadaleans |
| quantification |
| quantitative estimation |
| quantitative genetics |
| Quantitative methods |
| Quantitative PCR |
| quantitative PCR |
| quantitative phase microscopy |
| quantitative proteomics |
| Quantitative real-time PCR |
| quantitative RT-PCR |
| Quantitative ultrastructure |
| quantum computing-based mutation modeling |
| Quaternary ammonium chloride |
| Queen Charlotte Sound |
| questiomycins |
| RABBIT PLATELETS |
| Rabbitfish |
| rac-GR24 |
| RACE-PCR |
| Raceway pond |
| Radiation |
| radical |
| Radicalscavenging activity |
| Radioactive cesium |
| Radioactive cesium-accumulating mechanism |
| Radiocesium phycoremediation |
| Radiocystis fernandoi |
| radioisotopic precursor |
| radiolarians |
| Radionuclide |
| Radionuclide elimination |
| Radiopollution |
| rainbow trout gill cell line |
| Raman scattering microscopy |
| Raman spectroscopy |
| random amplified polymorphic DNA |
| Rapaza viridis |
| RAPD analysis |
| Raphidiophyrys |
| Raphidiopsis |
| Raphidiopsis raciborskii |
| Raphidocelis |
| Raphidocelis subcapitata |
| Raphidocelis subcapitata |
| Raphidophyceae |
| Raphidophycean flagellate |
| Raphidophyt |
| Raphidophyte |
| raphidophyte |
| raphidophyte SSU |
| raphidophytes |
| raphydophytes |
| rapid bioassay |
| rapid cooling |
| rapid evolution |
| rapid leaching test |
| Rapid mixing time |
| Rapid sand filter |
| RAR agonistic activity |
| Rare earth elements |
| rate homo- and heterogeneous models |
| ratio of cellular carbon to chlorophyll a |
| Rats |
| rbcL |
| rbcL |
| rbcL (large subunit of Rubisco, ribulose-1,5-bisphosphate carboxylase/oxygenase) |
| rbcL gene |
| rbcL gene marker |
| rbcLX |
| rbcS |
| rbcS |
| rbcX |
| RCC375, RCC376 |
| rDNA |
| RdRp |
| Reaction mechanism |
| Reactive oxygen species |
| reactive oxygen species |
| reactive oxygen species (ROS) |
| Reactive oxygen species (ROS) |
| reactor |
| Real time qPCR |
| real-time PCR |
| Real-time PCR |
| Real-time polymerase |
| Real-time quantitative PCR |
| real-time RT-PCR |
| Real-timePCR |
| rearrangements |
| reassesment |
| receptive papilla |
| receptor |
| Receptor-like kinase |
| reciprocal allelopathic responses |
| reclaimed water |
| recombinant lectin |
| Recombinant protein |
| recombination |
| reconstruction |
| record of light shield |
| recoverability |
| Recovery test |
| recreational water reuse |
| Recycled material |
| red alga |
| Red alga |
| red algae |
| Red algae |
| red chlorophyll |
| Red chlorophylls |
| Red cyst cell (aplanospore) inoculation method |
| Red microalga |
| Red Sea |
| red tide |
| Red tide |
| red tide flagellate |
| red tide microalgae |
| red tide organisms |
| red tide phytoplankter |
| red tide phytoplankton |
| Red tide phytoplankton |
| Red tide plankton |
| red tide plankton |
| red tide planlton |
| red tides |
| RedCAP |
| rediscovery |
| Redox |
| redox regulation |
| reduced flagellar clade |
| reductive evolution |
| reed |
| Reference gene |
| Reference toxicants |
| regA |
| regenerative life support system |
| regularized term |
| Reinhardtinia |
| RelA-SpoT homolog |
| release factor |
| Remediation |
| Removal |
| Renewable electricity |
| renewable energy |
| Renewable feedstock |
| REP |
| Repeated batch culture |
| Repeated exposure |
| repeated sequences |
| repeats |
| repetitive sequence |
| reproduction |
| Reproduction |
| reproductive investments |
| reproductive isolation |
| Reproductive isolation |
| Residual chlorine |
| Residual phenol |
| resource acquisition |
| resource recovery from wastewater |
| Resource recycling of waste concrete |
| resource removal |
| Resource-use efficiency |
| Resource-use-efficiency |
| respiration |
| Respiration |
| Response |
| response surface methodology |
| Response surface methodology |
| response surface model |
| Respriration |
| Restingstage cells |
| restriction enzyme |
| Resultomonas |
| Resultor |
| reticulate |
| retortamonads |
| Reunion Island |
| reverse osmosis membrane |
| reverse phase HPLC |
| reverse splicing |
| reverse transcriptase |
| reversed-phase HPLC |
| reversion |
| revision |
| RFLP |
| Rheinheimera spp |
| Rhizaria |
| Rhizophydiales |
| Rhodella |
| Rhodellales |
| Rhodellophyceae |
| Rhodobacter capsulatus |
| Rhodococcus |
| Rhodomonas |
| Rhodomonas |
| Rhodophyceae |
| Rhodophyta |
| Rhodothermia |
| Rhombocystis |
| Rhysamphichloris |
| ribonucleoproteins |
| ribosomal cistrons |
| ribosomal DNA |
| Ribosomal protein |
| Ribosomal RNA |
| ribosomal RNA |
| ribosome profiling |
| riboswitch |
| ribulose 1,5-bisphosphate carboxylase |
| ribulose 1,5-bisphosphate carboxylase/oxygenase |
| ribulose-1, 5-bisphosphate carboxyase/oxygenase (Rubisco) |
| ribulose-1,5-bisphosphate carboxylase / oxygenase (RuBisCO) taxonomy |
| ribulose-1,5-bisphosphate carboxylase/oxygenase |
| ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO) |
| Rice hull extract |
| rickettsia |
| Rickettsia |
| Rickettsiaceae |
| Rickettsiaceae |
| Rickettsiales |
| rigid wall |
| risk |
| Risk assessment |
| River sediment |
| river water quality |
| Rivularia |
| RNA editing |
| RNA extraction |
| RNA processing |
| RNA secondary structure |
| RNA spacer acquisition |
| RNA synthesis |
| RNA-seq |
| RNA-Seq |
| Road dust |
| road dust |
| road runoff |
| road sediment |
| Rod-shaped particle |
| room-temperature extraction |
| ROS |
| Rotifer |
| rotifer |
| rpoA |
| rpoB |
| rpoC1 |
| rpoC1 |
| rpoD1 |
| rRNA gene family |
| rRNA genes |
| rRNA operon |
| rRNA structure |
| RT gill-W1 |
| RT-qPCR |
| RuBisCO |
| rubisco |
| RuBisCO activity |
| Rubisco small subunit (RBCS) |
| RubisCO spacer |
| Ruditapes philippinarum |
| Runoff |
| runoff process |
| Rusalka gen.nov. |
| ruthenium red |
| ruthenium red staining |
| Ruthenium Red staining |
| RWP-RK |
| Ryukyu Archipelago |
| Ryukyu Islands |
| Saccharomyces cerevisiae |
| Saccharyomyces cerevisiae |
| Saline lake |
| saline lakes |
| saline-alkaline lake |
| salinity |
| Salinity |
| salinity and nutrient stratifications |
| Salinity stress |
| salmon kill |
| salt stres |
| Salt stress |
| salt stress |
| salt tolerance |
| saltwater alga |
| sample focusing |
| Sample prepararion |
| Sandonidae |
| Sanriku Coast |
| Sarcinochlamys |
| Sargassum horneri |
| SARS-CoV-2 |
| saturating irradiance |
| saxitoxin |
| Saxitoxin |
| SBF-SEM |
| scale |
| scale composition |
| scale morphology |
| Scale-less |
| Scale-up |
| scale-up |
| scanning electron microscope |
| scanning electron microscope (SEM) |
| scanning electron microscopy |
| scattering efficiency |
| Scenedesmaceae |
| Scenedesmus |
| Scenedesmus |
| Scenedesmus obliquus |
| Scenedesmus obliquus |
| scenedesmus obliquus |
| Scenedesmus quadricauda |
| Scherffelia |
| Scirpus tabernaemontani |
| scleractinia |
| scope for growth (SFG) |
| screening |
| Screening method |
| scytonemin |
| SDP1 |
| SDS |
| seafloor massive sulfide |
| Seagrass |
| Seasonal dominance replacement |
| seasonal dynamics and silicification |
| seasonal fluctuation |
| Seasonal succession |
| Seasonal variation |
| Seasonality |
| Seawater |
| Seawater-based biofuel |
| Seaweed beds |
| seaweed gametophytes |
| Seaweeds |
| secondary endosymbiosis |
| Secondary endosymbiosis |
| secondary metabolites |
| secondary peptide metabolite |
| secondary plastids |
| secondary structure |
| Secondary structure |
| secondary structure of nuclear rDNA ITS-2 |
| secretory granule |
| Secretory protein |
| Sediment |
| sediment exposure |
| Sediment toxicity test |
| sedimentary biosignatures |
| Sedimentation |
| Sedimentation efficiency |
| sedimentation particles |
| Sedimentation rate |
| Seed Extract |
| selection |
| Selective control |
| Selective detection |
| selective feeding mechanism |
| selectivety |
| Selectivity |
| Selenastrum |
| Selenastrum |
| Selenastrum capricornutum |
| selenite uptake |
| selenium accumulation |
| selenium-depletion |
| selenium-requirement |
| self-fertilization |
| selfing conjugation |
| SEM |
| Semi-amylopection |
| semi-amylopection |
| Semi-continuous process |
| Semiamylopectin |
| Semiconductor wastewater |
| sensitivity |
| separate model |
| Separation science |
| septin phylogeny |
| sequence repeat |
| sequences |
| sequencing |
| Sequencing batch biofilm reactor |
| Sequential batch culture |
| Sequential phosphorus extraction |
| Serbia |
| Serial secondary endosymbiosis |
| Series-gradient-fed strategy |
| Serine acetyltransferase |
| serine protease inhibitory activity |
| Seto Inland Sea Japan |
| Settleability |
| settling velocity |
| sewage effluent |
| Sewage treatment plant |
| sex |
| sex allocation |
| sex determination |
| Sex determination |
| Sex pheromone |
| sex pheromone |
| sex pheromone, sexual reproduction |
| Sexual cell division |
| sexual cell division |
| sexual cycle |
| sexual differentiation |
| sexual dimorphism |
| sexual interactions |
| sexual isolation |
| sexual pheromone |
| Sexual reproduction |
| sexual reproduction |
| sexual reproduction, |
| sexual spheroid |
| Sexuality |
| shallow waterbodies |
| Sheep feces |
| shell construction |
| shellfish |
| shellfish toxicity |
| shielding sunlight |
| shinorine |
| Shinorine |
| shlfonamide |
| short branch |
| Short-cut nitrogen removal |
| short-term bioassay |
| short-term chronic toxicity |
| Short-term chronic toxicity test |
| Short-term toxicity test |
| Shrimp aquacluture |
| sidenophore |
| siderophore |
| Siganus oramin |
| sightseeing-related facilities |
| sigma factor |
| silent substitution rate |
| Silica |
| silica |
| Silica biomineralization |
| silica deposition vesicle |
| Silica deposition vesicle |
| silica mineralization |
| Silicate |
| siliceous |
| siliceous scale production |
| silicic scale |
| silicon |
| silver-contained ceramics |
| SIM |
| Simazine (CAT) |
| Simetryn |
| simetryn |
| similarity search |
| Simocephalus vetulus |
| simple sequence repeats |
| Simulation model |
| simultaneous analysis of anatoxin-a and microcystin |
| simultaneous bacterial process |
| Sinanodonta woodiana |
| Single cell analysis |
| single cell ICP-MS |
| single cell sorting |
| Single primary endosymbiotic event |
| Single tube |
| Single filaments |
| single-cell |
| single-cell analysis |
| Single-cell analysis |
| Single-cell gel electrophoresis |
| single-cell isolation |
| Single-cell preparation |
| Single-nucleotide polymorphism |
| single-particle ICP-MS |
| single-stranded oligodeoxynucleotides |
| singlet oxygen (1O2) quenching |
| Sinking rate |
| siphonaxanthin |
| siphonaxanthin decenoate |
| siphonaxanthin dodecenoate |
| siphonaxanthin ester |
| siphonaxanthin octenoate |
| siphonaxanthin series |
| SIT, Lsi2 |
| site-directed |
| Site-directed mutagenesis |
| Sivoneniella |
| size advantage model |
| Size-exclusion chromatography |
| size-exclusion chromatography (LH-20) |
| Skeletonema |
| Skeletonema |
| Skeletonema costatum |
| Skeletonema costatum |
| Skeletonema marinoi-dohrnii complex |
| Skeletonema species |
| slide preparation |
| slime gun model |
| small RNA |
| small subunit rDNA |
| Small subunit rRNA |
| small-scale method |
| SMRT |
| snap-freezing |
| Snow algae |
| snow algae |
| Soda lakes |
| sodium |
| Sodium acetate |
| sodium hydroxide |
| sodium ion |
| soil alga |
| soil algae |
| Soil amendment |
| Soil extracts |
| Soil infiltration column test |
| soil nitrogen, soil |
| soil restoration |
| Soil washing |
| soils dry |
| Solid fuel |
| solid phase |
| Solid-state 13C NMR |
| solid/liquid ratio |
| solids-liquid separation |
| Solubility diagram |
| soluble reactive phosphorus |
| soluble sugar |
| Somatic cell |
| somatic growth |
| Songkhla Lake Basin |
| sonication |
| Sorption |
| SOT medium |
| Southeast Asia |
| soybean processing wastewater |
| space |
| Space Agriculture |
| Space agriculture |
| spatial pattern |
| Spatial point pattern |
| spawn |
| Speciation |
| speciation |
| species |
| Species |
| species complex |
| Species composition |
| species concept |
| species concepts |
| species delimitation |
| species diversity |
| species identification |
| species interaction |
| Species interaction |
| Species interactions |
| species richness |
| Species richness |
| Species sensitivity distribution |
| species taxonomy |
| species-specific effect |
| species-specific identification |
| specific growth rate |
| Specific primer |
| Spectroscopic microscopy |
| spem competition |
| Spent Wash |
| Sperm flagella |
| sperm packet |
| spermidine |
| spermine |
| Sphaerellopsis |
| Sphaerospermum oumianum (M. Watanabe) Tuji et Niiyama comb. nov. |
| Sphagnum |
| Sphingomonas |
| spilit sex ratio |
| spillover |
| Spinach |
| spinach |
| spiral formation |
| spironaphthoxazine |
| Spirulina |
| spirulina |
| Spirulina |
| Spirulina |
| Spirulina (Arthrospira) platensis |
| Spirulina food supplement |
| Spirulina platensis |
| Spirulina platensis |
| Spirulina subsalsa var. salina var. nov. |
| spirulina tablet |
| Spirulona platensis |
| Spizellomyces |
| spliceosome |
| split decomposition |
| Split-field illumination method |
| SPME |
| Spondylomoraceae |
| Spongiococcum |
| sporulation |
| Spray drying |
| Squalene synthase-like gene |
| Square electric pulse |
| ssDNA |
| ssDNA virus |
| ssDNA viruses |
| ssRNA |
| ssRNA virus |
| ssRNA viruses |
| SSU |
| SSU nrRNA |
| SSU rDNA |
| SSU rRNA |
| SSU rRNA gene phylogeny |
| SSU/ITS phylogeny |
| Stable chloroplast transformation |
| Stable genome transformation |
| stable isotope |
| Stable isotope |
| Stable red algae nuclear transformation |
| Stacking structure |
| stalk |
| stalks |
| standards |
| Starch |
| starch |
| Starch (carbohydrate) production |
| starch accumulation |
| starch degradation |
| starch metabolism |
| Starch synthase |
| starch synthesis |
| State transition |
| statistical analysis |
| steady state modeling |
| stearic acid |
| Steelmaking slag |
| Steelmaking wastewater treatment |
| Stephanodiscus hantzschii |
| steppes semideserts |
| Stepwise feeding |
| Stepwise salinity acclimation |
| sternum |
| Sterol desaturase |
| sterols |
| Stichococcus |
| Stichococcus ampulliformis sp. nov. |
| Stigma |
| Stigonemataceae |
| Stigonematales |
| stimulation |
| stonewort |
| strain |
| Strain |
| strain identification |
| Strain improvement |
| strain-specific |
| strains |
| Strains |
| stramenochromes |
| Stramenopile |
| stramenopile |
| stramenopiles |
| Stramenopiles |
| stratigraphy |
| stratospheric ozone depletion |
| streamlining |
| Streptomyces |
| Streptomyces amritsarensis |
| Streptomyces neyagawaensis |
| streptophyta |
| Streptophyta |
| Streptophyte |
| streptophyte algae |
| streptophytes |
| Streptosarcina |
| Stress |
| stress |
| Stress relief |
| stress response |
| Stress response |
| stress responses |
| stress tolerance |
| strigolactone |
| stroma |
| stromatolites |
| strong light |
| Strong light |
| STRR sequences |
| structural characterization |
| structural diversity |
| structural inheritance |
| structural modeling |
| Structure/function |
| structures of cells and cellular organelles |
| strutted processes |
| Study |
| Subcellular distribution |
| Subcritical water |
| Sublethal effects |
| Submerged macrophyte |
| substance |
| substitution rates |
| Substrate specifcity |
| succession |
| succinate |
| sucrose |
| Sucrose |
| sucrose formation |
| Suessiaceae |
| Sugar alchols |
| sugar-phosphate |
| Sugi bark |
| Sulcochrysis |
| sulfate |
| sulfite |
| Sulfite reductase |
| sulfonylurea herbicide |
| sulfoquinovosyl diacylglycerol (SQDG) |
| Sulfoquinovosyl monoacylglycerols |
| Sulfur assimilation |
| Sulfur deficiency |
| Sulfur starvation |
| Sulfitobacter sp. |
| Summer outdoor conditions |
| Sunscreen |
| super LED lights |
| supercomplex |
| supercontinuum |
| Supercritical carbon dioxide |
| Supergroup |
| superoxide |
| Superoxide |
| Superoxide anion |
| superoxide dismutase |
| superoxide dismutase (SOD) |
| Suppression subtractive hybridization |
| supra-littoral rockpool |
| supracellular structure |
| Surface Methodology |
| surface plasmon resonance |
| Surface potential |
| Surface-retained organic matter (SOM) |
| Surfactant |
| Surrogate |
| Surrogate of biomass |
| Survival |
| Susceptibility |
| Sustainability |
| sustainability |
| syanobacteria |
| SYBR Green |
| SYBR Green I |
| SYBR Green real-time qPCR |
| Symbiochlorum |
| Symbiodiniaceae |
| Symbiodiniaceae genome |
| Symbiodinium |
| Symbiodinium minutum |
| symbiont |
| Symbiont actin gene |
| symbionts |
| Symbiosis |
| symbiosis |
| Symbiotic algae |
| Symbiotic bacteria |
| Symbiotic gene reorganization |
| symbiotic relationship |
| synapomorphy |
| synchronization |
| synchronous culture |
| Synchronous culture |
| Synchrotron X-ray powder diffraction |
| Synechococcus |
| Synechococcus |
| Synechococcus leopoliensis |
| Synechocystis |
| Synechocystis |
| Synergism |
| synergistic growth inhibition |
| Synergistic stimulation |
| Synergistical |
| synonymous codon usage |
| synonymy |
| synthesis |
| Synthetic biology |
| synthetic communities |
| Synthetic ecosystem |
| synthetic intron |
| Synthetic microbiome |
| Synura |
| Synurophyceae |
| System |
| systematics |
| SYTOX Green |
| T-cycle |
| Tabris gen. nov. |
| tadpole |
| TAG |
| tail moment |
| Takayama |
| Tama River |
| Tamagawa neutralization plan |
| tandem repeat |
| tannic acid |
| tannins |
| Taq-Man probes |
| Taqman |
| TaqMan-based real-time PCR |
| target of rapamycin |
| Taste & odor |
| taste and odor |
| Taste and odour |
| Tasteandodor |
| Taxon diagnosis |
| taxon sampling |
| taxonomic species |
| taxonomy |
| Taxonomy |
| taxonomy of Olisthodiscus |
| taxsonomy |
| TBR, tree bisection reconnection |
| tea |
| teaching material |
| tebuconazole |
| tellurium |
| Tellurium nanorod |
| telomere |
| TEM |
| temperate monsoon climate zone |
| temperature |
| Temperature |
| temperature (starch degradation) |
| temperature acclimatization |
| temperature compensation |
| Temperature Effect |
| Temperature effects |
| temperature shift |
| Temperature-induction |
| temperature–food effects |
| terpenes |
| terpenoid |
| terpenoids |
| terrestrial cyanobacteria |
| terrestrial microalgae |
| Tertiary endosymbiosis |
| Test repeatability |
| testate amoebae |
| Testing volumina |
| Tetrabaena |
| Tetrabaena |
| Tetrabaena socialis |
| Tetrabaena socialis |
| Tetrabaena socialis comb. nov. |
| Tetrabaenaceae |
| Tetrabaenaceae fam. nov. |
| Tetracycline antibiotics |
| Tetracystis |
| Tetrahymena |
| Tetramethylammonium hydroxide |
| Tetranephris |
| tetrapeptide |
| tetraploid |
| Tetraselmis |
| Tetraselmis striata NIES-1019 |
| Tetraselmis tetrathele |
| Tetrasporales |
| Thailand |
| Thalassiosira pseudonana |
| the codon-capture theory |
| The Fukushima 1 Nuclear Power Plant accident |
| The holistic analyses |
| Theca |
| Thecamonas |
| thermal analysis |
| Thermal degradation |
| Thermal dissipation |
| Thermal expansion |
| Thermoacidophilic |
| Thermophile |
| thermophilic |
| Thermoplastic |
| thermospermine |
| Thermostability |
| Thermosynechococcus |
| Thermosynechococcus elongatus BP-1 |
| thermotolerance |
| thiamine |
| thiazole-containing (TZL-) amino acid |
| Thiobencarb |
| Thiocyanate |
| three-dimensional chloroplast model |
| three-dimensional distribution |
| Three-dimensional reconstruction |
| Three-phase process |
| Thylakoid |
| thylakoid |
| thylakoid lamellae |
| thylakoid membrane |
| Thylakoid membrane |
| thylakoid membranes |
| Thylakoid membranes |
| thylakoid-targeting domain |
| tidal area |
| Tieffallenia |
| tiger puffer |
| Tightly bound EPS |
| tightly cell-bound extracellular polysaccharides |
| time-lapse photomicrography |
| time-lapse video microscopy |
| Time-resolved fluorescence |
| Time-resolved fuorescence |
| Time-resolved fuorescence spectroscopy |
| time-resolved spectroscopy |
| timescale |
| TiO2 photocatalyst |
| TiO2 photocatalyst |
| Tisochrysis |
| Tisochrysis lutea |
| Tissue histopathology |
| Titanium dioxide |
| tobacco plant |
| tolerance |
| toxic |
| Toxic and non-toxic |
| Toxic blooms |
| toxic blooms, cyanotoxins |
| toxic cyanobacteria |
| Toxic cyanobacteria |
| toxic dinoflagellate |
| toxic Microcystis |
| toxic substance |
| toxic substance cyanoviridin |
| toxic waterbloom |
| toxicity |
| Toxicity |
| Toxicity assay |
| toxicity characterization |
| Toxicity identification evaluation |
| toxicity identification evaluation (TIE) |
| Toxicity screening |
| toxicity test |
| Toxicity test |
| Toxicological endpoints |
| Toxicology |
| toxin |
| Toxin |
| Toxin production |
| toxins |
| Toxoplasma gondii |
| Trade winds |
| Trade-off |
| trans-Carbon-carbon double bond |
| trans-spliced group II intron |
| trans-splicing |
| Transcribed spacer |
| Transcript abundance |
| transcription |
| Transcription analysis |
| transcription factor |
| transcription/translation factor |
| Transcriptional regulation |
| transcriptome |
| Transcriptome |
| Transcriptome analysis |
| transcriptome profiling |
| Transcriptome sequence data |
| Transcriptomic analysis |
| transcriptomics |
| Transcriptomics |
| transcripts |
| transfer RNA-lysine |
| Transformant screening |
| Transformation |
| transformation |
| Transgene |
| transgene free |
| Transgene silencing |
| transgenic |
| Transgenic diatom |
| transgressive segregation |
| Transient expression system |
| Transient RNA interference knockdown |
| transit peptide |
| transition point |
| Translational frameshift |
| transmembrane transporter sequences |
| transmission electron microscope |
| Transmission electron microscopy |
| transmission electron microscopy |
| transmitted light |
| transport |
| transport of CO2 |
| transporter |
| transposase |
| transposases |
| Transposition |
| Trapa natans |
| treatment |
| treatment of exhaust gas |
| Trebonskia zoosporica |
| Trebouxia |
| Trebouxia corticola |
| Trebouxia corticola |
| Trebouxiophyceae |
| Tree of life |
| trehalose |
| Trehalose |
| Trentepohlia |
| Trentepohlia bosseae var. brevicellulis |
| Treubarinia, Jenufa genus |
| Tri-generation system |
| Triacylglycero |
| Triacylglycerol |
| triacylglycerol |
| triacylglycerol (TAG) |
| Triacylglycerols |
| triazine herbicides |
| Tribonema |
| tributyltin |
| tricarboxylic acid cycle |
| Triceratium dubium |
| trichloroethlene |
| trichocyst |
| Trichodesmium |
| Trichodesmium spp. |
| trichome |
| trichome morphology |
| Tricleocarpa jejuensis |
| triclocarban |
| triclosan |
| Triclosan |
| trihalomethane precursors |
| Triparma laevis |
| triple immunofluorescence |
| trnGUCC intron |
| trophic mode |
| trophic relationship |
| Trophic status |
| tropical copepod |
| Tropical reservoir |
| Tropical reservoirs |
| Tropical water |
| Trypanosoma cruzi Bodonid |
| Trypanosomatida |
| trypsin treatment |
| tryptophan |
| TSA |
| Tu |
| tubular invagination |
| tubular mating structure |
| Turbid material |
| turbidity |
| Turbidity |
| Turbidity removal |
| Twin-arginine translocator |
| Twin-Layer |
| twin-layer porous substrate photobioreactor (TL-PSBR) systems |
| two phase culture |
| two step cooling |
| Two-dimensional gel electrophoresis |
| Two-dimensional polymer |
| two-stage |
| Tychonema bourrellyi |
| type locality |
| Typha angustifolia |
| Typha domingensis |
| typical excavates |
| Tyramide signal amplification |
| u.v.-B |
| UK37 |
| UK37 |
| Uantitative real-time PCR |
| ubiquitin |
| ubiquity hypothesis |
| UCYN-A |
| UDP-glucose |
| UDP-N-acetylmuramyl-pentapeptide |
| UGA codon |
| Uk'37 |
| Ultra-small alga |
| Ultrasaound |
| Ultrasmall genome size |
| ultrasonic extraction |
| Ultrasonic extraction |
| Ultrasonic Treatment |
| Ultrasonication |
| ultrastractural changes |
| ultrastructural preservation |
| Ultrastructure |
| ultrastructure |
| ultrastructure of Olisthodiscus |
| Ultraviolet irradiation |
| ultraviolet light |
| Ultraviolet photolysis |
| Ultraviolet radiation |
| ultraviolet radiation |
| Ultraviolet-B radiation |
| Ulva fasciata |
| Ulva fasciata |
| Ulva pertusa |
| umbrella plant |
| Umezakia natans |
| umu test |
| Unbound phycocyanin |
| Uncoupled chlorophylls |
| unequal flagella |
| unequal lengths |
| unfixed cells |
| unicellular |
| unicellular alga |
| Unicellular alga |
| Unicellular cyanobacteria |
| unicellular green alga |
| unicellular green algae |
| Unicellular microalgae |
| unicellular organism |
| unicellular red alga |
| Unicellular red alga |
| unification |
| Unilateral illumination method |
| Universal Plastid Amplicon |
| Unknown function |
| unrecorded |
| Unsaturated fatty acid |
| unsaturation index |
| Untargeted analysis |
| unwinding |
| Upflow air velocity |
| Uptake |
| uptake kinetics |
| uptake rate |
| upwelling |
| Urban road dust |
| Urban runoff |
| urea |
| Uroglena americana |
| useful material production |
| Usnea hakonensis |
| UTC |
| UTEX 664 |
| UTEX culture collection |
| utilization for research and biotechnology |
| Utricularia |
| UV effects |
| UV irradiation |
| UV light |
| UV protectant |
| UV stability |
| UV treatment |
| UV-C/KMnO4 |
| UVA radiation |
| Vacuolar |
| vacuole |
| Vacuoliviride crystalliferum |
| Vacuoliviride crystalliferum (eustigmatophyceae) |
| Vacuoliviride crystalliferum gen. et so. nov. |
| Vanillic acid |
| variant genetic code |
| variants |
| variation partitioning |
| variations |
| Variosea |
| VARL domain |
| Vaucheria |
| Vegetable oil |
| vegetative cells |
| vegetative reproduction |
| Vegetative reproduction |
| vegetative reproduction. |
| vegetative stages |
| Velocity gradient |
| Vernier wall |
| Vertical distribution |
| vertical migration |
| viability |
| Viability assay |
| viability assay |
| Viable algae |
| Vibration-induced flow |
| Vibrio anguillarum |
| Viral ecology |
| viral genome |
| viral infection |
| Viridiplantae |
| Viridiuvalis adhaerens |
| Virus |
| virus |
| virus ecology |
| virus evolution |
| virus infection |
| Virus-host interactions |
| viruses |
| Vitamin |
| vitamin B1 |
| vitamin B12 |
| Vitamin B12 |
| Vitrella brassicaformis |
| Vitreochlamys |
| Vitreochlamys |
| Vitreochlamys aulata |
| Vitreochlamys pinguis |
| VOCs |
| Volatile compound |
| volatile organic compounds |
| Volatile organic compounds |
| Volatile organic compounds (VOCs) |
| Volatile substances |
| Volvocaceae |
| Volvocale |
| Volvocales |
| Volvocales |
| volvocine algae |
| Volvocine algae |
| Volvocine green algae |
| volvocine green algae |
| volvocine series |
| Volvocines |
| Volvox |
| Volvox |
| Volvox capensis |
| Volvox carteri |
| Volvox ferrisii |
| Volvox ferrisii sp. nov. |
| Volvox kirkiorum sp. nov. |
| Volvox ovalis sp. nov. |
| Volvox powersii |
| Volvox sect |
| Volvox sect. Merrillosphaera |
| Volvox sect. Volvox |
| Volvoxgigas |
| Volvulina |
| Volvulina compacta |
| Volvulina pringsheimii |
| Volvulina steinii |
| vortex |
| w-3 fatty acids |
| wall lysing enzyme |
| Warburg effect |
| Waste activated sludge |
| waste water |
| wastewater |
| Wastewater |
| Wastewater effluent |
| Wastewater efuent |
| Wastewater management |
| wastewater reclamation plant |
| wastewater treatmen |
| wastewater treatment |
| Wastewater treatment |
| Wastewater treatment plant (WWTP) |
| water bloom |
| Water bloom |
| water bloom, β-cyclocitral, density stress, quorum sensing |
| water blooms |
| water cycle |
| water deprivation |
| water exposure |
| Water hyacinth |
| water phase |
| Water pollution |
| Water purification |
| water purification |
| water quality |
| Water quality |
| Water quality criteria |
| water quality evaluation |
| Water quality management |
| Water reclamation |
| Water remediation |
| Water reuse |
| Water salinity |
| water stress protein |
| water stress protein (WspA) |
| water supply |
| Water temperature |
| Water temperature control |
| Water treatment |
| water treatment |
| Water-soluble micropollutants |
| waterblooms |
| Watertemperature |
| wavelength |
| wavelength cut filter |
| wax |
| Wax ester |
| wax synthase |
| Western North Pacific |
| Wet ball mill extraction |
| Wetland |
| WGCNA |
| WGS |
| Wheat bran leachate |
| whey |
| whey retentate |
| White rot fungi |
| white-rot fungi |
| whole effluent toxicity |
| whole effluent toxicity (WET) |
| Whole effluent toxicity test |
| whole effluent toxixity |
| whole genome amplificatio |
| whole genome sequencing |
| Whole genome sequencing |
| Whole toxicity |
| whole-cell immunolocalization |
| Whole-cell PCR |
| Whole-cell qPCR |
| whole-genome amplification |
| Whole-genome sequence |
| Wild strains |
| wild-extinct species |
| wildfire |
| wind speed |
| wood preservative |
| woody plants |
| Woody waste |
| Woody wastes |
| X-ray analyses |
| X-ray diffraction |
| X-ray free-electron laser |
| X-ray microanalysis |
| XAFS |
| xanthogenate |
| xanthogenate–SDS–phenol method |
| Xanthophyceae |
| xanthophyll |
| xanthophyll cycle |
| xanthophylls |
| XAS |
| Xenobiotic compounds |
| Xenophyophore |
| Xylitol |
| Yalu River Estuary |
| Yamagishiella |
| Yamagishiella |
| Yarrowia lipolytica |
| Yatsushiro Sea |
| Yeast |
| Yeast industrial wastewater |
| Z-ISO |
| Zeaxanthin |
| Zeta potential |
| zinc |
| Zinc |
| Zinc toxicity |
| zinc-binding |
| zooplankton |
| Zooplankton |
| zooplankton culture media filtrate |
| Zoosporangium |
| zoospore ultrastructure |
| zoospores |
| Zooxanthella nutricula |
| zooxanthellae |
| Zostera marina |
| Zygnematales |
| Zygnematophyceae |
| Zygnemophyceae |
| Zygospore |
| zygospore |
| Zygote (large cell) |
| Zygote formation |
| zygote formation |
| zygote germination |
| zygote maturation |
| zygote wall |
| zygote-specific gene |
| · Skeletonema costatum |
| ß-Ionone |
| α-Chitin |
| α-ketoglutarate decarboxylase |
| α-L-arabinofuranosidase |
| α-linolenic acid |
| α-Polyglucan |
| α-Quartz |
| α-tubulin |
| β-1,3-glucan |
| β-carotene |
| β-Carotene hydroxylase |
| β-Chitin |
| β-Cyclocitral |
| β-glucan |
| β-tubulin |
| γ-Aminobutyric acid |
| γ-glutamyl cycle |
| γ-irradiation |
| γ-proteobacterium |
| Δ5-unsaturated bis-methylene-interrupted fatty acids |
| ζ-carotene isomerase |
| — Alexandrium |
| — Cyanidioschyzon merolae |
| “cave Cyanidium” |
| “Oscillatoriales” cyanobacteria |
| シキミ酸代謝経路 |
| フェノール |
| 増殖抑制 |
| 多価フェノール |
| 自動酸化 |
| 藍藻類 |
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