Strain number NIES-859  
Phylum Chlorophyta  
Class Chlorophyceae  
Scientific name Phacotus lenticularis (Ehrenberg) Stein  
Synonym  
Former name  
Common name Green alga  
Locality (Date of collection) Germany  
Latitude / Longitude  
Habitat (Isolation source)  
History < Nozaki, Hisayoshi < SAG  
Isolator (Date of isolation)  
Identified by  
State of strain Subculture; Unialgal; Clonal; Non-axenic[2024 Jul]  
Culture condition
(Preculture condition)
Medium:  C  
Temperature:  20 C
Light intensity:  12-15 µmol photons/m2/sec, L/D cycle:  10L:14D
Duration:  3 M  
Gene information rbcL ( AJ001884 )  
Cell size (min - max)  
Organization Unicellular; Flagellate 
Characteristics Planktonic  
Other strain no. Other collection strain no. : SAG 61-1
 
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-1012
Cafeteria roenbergensis   Marine (Seawater) Heterotrophic ; Phagotrophic  
NIES-1017
Prymnesium parvum   Marine (Seawater) Toxicity ; C-type prymnesin (+) (Binzer et al. 2019) ; Planktonic  
NIES-587
Hantzschia amphioxys Pennate diatom   Terrestrial (Concrete wall)  
NIES-417
Asterionellopsis glacialis Pennate diatom   Marine (Seawater) Not growing under axenic condition  
NIES-24
Nostoc commune Blue-green alga ; Cyanobacteria   Terrestrial (Plant (The moss Cavicularia densa)) Drought tolerance ; Epiphytic  
Reference
Hepperle, D., Nozaki, H., Hohenberger, S., Huss, V. A. R., Morita, E., Krienitz, L. 1998 Phylogenetic position of the Phacotaceae within the Chlamydophyceae as revealed by analysis of 18S rDNA and rbcL sequences. J. Mol. Evol., 47, 420-430.
Keywords: Phacotaceae; Volvocales; 18S rDNA phylogeny; lorica-bearing flagellates; green algae
Strain(s): 446858859861862 
PubMed: 9767687
DOI: 10.1007/PL00006399

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

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