Strain number NIES-417  
Phylum Heterokontophyta  
Class Bacillariophyceae  
Scientific name Asterionellopsis glacialis (Castracane) Round  
Synonym Asterionella glacialis Castracane  
Former name  
Common name Pennate diatom  
Locality (Date of collection) Maizuru Bay, Kyoto, Japan (1985-10-12)  
Latitude / Longitude  
Habitat (Isolation source) Marine (Seawater)  
History < Riquelme, Carlos E.  
Isolator (Date of isolation) Riquelme, Carlos E. (1985-10-12)  
Identified by Riquelme, Carlos E.  
State of strain Subculture; Unialgal; Clonal; Non-axenic  
Culture condition
(Preculture condition)
Medium:  f/2  
Temperature:  15 C
Light intensity:  12-15 µmol photons/m2/sec, L/D cycle:  10L:14D
Duration:  1 M  
Gene information atun ( AB766056 ) , EF-1A mRNA ( AB766030 )  
Cell size (min - max) - 6 μm  
Organization Unicellular 
Characteristics Not growing under axenic condition  
Other strain no.  
Remarks  
Movie  
Related strain information
(Large number of orders and same genus or species)
Related strain information
(Used in same reference)
Strain number Scientific name Common name Habitat (Isolation source) Characteristics
NIES-2726
Nitzschia palea Pennate diatom   Freshwater (Stone) Test strain for AGP etc. (Ishihara, S. et al. 2006)  
NIES-1956
Scytonema javanicum Blue-green alga ; Cyanobacteria   Terrestrial Nitrogen fixation  (aerobic condition, Modified BG-110 medium, N-Free medium)  
NIES-2331
Chroomonas debatzensis   Brackish water (Sediment) Genome decoded strain (Suzuki et al. 2022)  
NIES-2377
Ovulinata parva   Marine (Seawater) Heterotrophic ; Phagotrophic ; Benthic  
NIES-597
Planktothrix spiroides Blue-green alga ; Cyanobacteria   Freshwater (Pond water) Cyanobacterial water bloom (aoko) ; Offensive odor ; Planktonic  
Reference
Kamikawa, R., Sanchez-Perez, G. F., Sako, Y., Roger, A. J., Inagaki, Y. 2009 Expanded phylogenies of canonical and non-canonical types of methionine adenosyltransferase reveal a complex history of these gene families in eukaryotes. Mol. Phylogenet. Evol., 53, 565-570.
Keywords: Methionine adenosyltransferase; Lateral gene transfer; Diaoms; Aureococcus; Haptophytes; Cryptomonads
Strain(s): 1735041753458610451349 
PubMed: 19577655
DOI: 10.1016/j.ympev.2009.06.016

Kamikawa, R., Brown, M. W., Nishimura, Y., Sako, Y., Heiss, A. A., Yubuki, N., Gawryluk, R., Simpson, A. G. B., Roger, A. J., Hashimoto, T., Inagaki, Y. 2013 Parallel re-modeling of EF-1α function: divergent EF-1α genes co-occur with EFL genes in diverse distantly related eukaryotes. BMC Evol. Biol., 13, 131 (article ID).
Keywords: Diatoms; Differential Gene Loss; EF-1α; EFL; Functional Remodeling; Goniomonas; Pythium; Spizellomyces; Thecamonas
Strain(s): 4175341349137113731374 
PubMed: 23800323
DOI: 10.1186/1471-2148-13-131

Fukuda, S., Iwamoto, K., Atsumi, M., Yokoyama, A., Nakayama, T., Ishida, K-I., Inouye, I., Shiraiwa, Y. 2014 Global searches for microalgae and aquatic plants that can eliminate radioactive cesium, iodine and strontium from the radio-polluted aquatic environment: a bioremediation strategy. J. Plant Res., 127, 79-89.
Keywords: Algal phytoremediation; Bioaccumulation; Radiopollution; Radionuclide elimination; Radioactive cesium; The Fukushima 1 Nuclear Power Plant accident
Strain(s): 24367115516020323324632933339140541744048750352953153854855358759767872780584385993199510031012101510171031104410451259132613311377138213881411143514391440144114421458172818261831183318401846186218651956213121442146214721502175217621852268232523412352237724122437285428552856285828592860 
PubMed: 24346654
DOI: 10.1007/s10265-013-0596-9

Mitani, E., Nakayama, F., Matsuwaki, I., Ichi, I., Kawabata, A., Kawachi, M., Kato, M. 2017 Fatty acid composition profiles of 235 strains of three microalgal divisions within the NIES Microbial Culture Collection. Microb. Resour. Syst., 33, 19-29.
Keywords: Cryptophyta; docosahexaenoic acid; eicosapentaenoic acid; fatty acid; Haptophyta; Heterokontophyta; microalgae
Strain(s): 189141517711152232252332342652742752762772782792802812822842933233243303333453473483503533723773883913954074084094134144174614624664875345485535565575585595605625875885895906036056226236956966976986997007017027037047057067077087107117127137147157167417657668058379971001100210031004100510061007100910111016101710441045104610471302130313241330133913401349135313701375137613791383138413851386138713911392139313951398139914001401169917001730181318151816182618271831186218631864186518741963196419651974197519762142214321442145214721482300233123322351236323642365236923702376250625332534253525362537259026332668268926902691269326942696269727072716271727182720272227232725272627292730273127322770277127722773283928402841284228432844285928722878289028993391368936903691 
DOI: 10.60369/microresys.33.1_19

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