Strain number NIES-2716  
Phylum Cryptophyta  
Class Cryptophyceae  
Scientific name Hemiselmis andersenii Lane & Archibald  
Synonym  
Former name  
Common name  
Locality (Date of collection) Satsuma Iwo-jima Isl., Kagoshima, Japan (2008-04-11)  
Latitude / Longitude 30.7811 / 130.2775 
Habitat (Isolation source) Marine (Seawater)  
History < Yamaguchi, Haruyo  
Isolator (Date of isolation) Yamaguchi, Haruyo (2008-05-**)  
Identified by Yamaguchi, Haruyo  
State of strain Subculture; Unialgal; Clonal; Non-axenic  
Culture condition
(Preculture condition)
Medium:  ESMMNKIMK  
Temperature:  20 C
Light intensity:  12-15 µmol photons/m2/sec, L/D cycle:  10L:14D
Duration:  1 M  
Gene information Plastid genome ( LC648964 ) , 18S rRNA ( LC647572 )  
Cell size (min - max) 3 - 5 μm  
Organization Unicellular; Flagellate 
Characteristics Genome decoded strain (Suzuki et al. 2022)  
Other strain no.  
Remarks  
Movie  
Related strain information
(Used in same reference)
Strain number Scientific name Common name Habitat (Isolation source) Characteristics
NIES-2890
Chrysamoeba radians   Freshwater (Pond water) Planktonic ; Attached  
NIES-1379
Olisthodiscus luteus   Marine (Seawater)  
NIES-3689
Pelagomonas calceolata   Marine (Seawater)  
NIES-233
Synura petersenii   Freshwater (Lake water)  
NIES-1826
Epipyxis glabra   Freshwater (Pond water) Mixotrophic ; Phagotrophic  
Reference
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

Suzuki, S., Matsuzaki, R., Yamaguchi, H., Kawachi, M. 2022 What happend before losses of photosynthesis in Cryptophyte algae? Mol. Biol. Evol., 39, msac001 (article ID).
Keywords: cryptophyte; Cryptomonas borealis: genome evolution; mixotrophy; photosynthetic loss
Strain(s): 27628134534869870371510051006137517302331233227163952 
PubMed: 35079797
DOI: 10.1093/molbev/msac001

Hamana, K., Furuchi, T., Hayashi, H., Niitsu, M. 2022 Additional polyamine analysis of algal chlorarachniophytes, euglenophytes, haptophytes, cryptophytes, dinoflagellates, chromerids and heterokontophytes. —Polyamine analysis of algae IV— Microb. Resour. Syst., 38, 51-62.
Keywords: alga; chlorarachniophyte; chromerid; dinoflagellate; polyamine
Strain(s): 124748253274276277282286304331381387463623624699706715741144321452146214923512433253525842588263526772716272828603576374540604109428043914392 
DOI: 10.60369/microresys.38.2_51

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