A big image opens when the thumbnail is clicked.(nies-2878.jpg)
Strain number NIES-2878  
Phylum Haptophyta  
Class Coccolithophyceae  
Scientific name Umbilicosphaera foliosa (Kamptner ex Kleijne) Geisen  
Synonym  
Former name  
Common name Coccolithophore  
Locality (Date of collection) Ani Isl., Anijima Seto Ogasawara, Tokyo, Japan (2012-03-10)  
Latitude / Longitude 27.1098 / 142.2048 
Habitat (Isolation source) Marine (Seawater)  
History < Hagino, Kyoko  
Isolator (Date of isolation) Hagino, Kyoko (2012-03-**)  
Identified by Hagino, Kyoko  
State of strain Subculture; Unialgal; Clonal; Non-axenic[2017 Mar]; Coccolith(+)[2019 Jan]  
Culture condition
(Preculture condition)
Medium:  MNK  
Temperature:  20 C
Light intensity:  11-13 µmol photons/m2/sec, L/D cycle:  10L:14D
Duration:  1 M  
Gene information  
Cell size (min - max)  
Organization Unicellular 
Characteristics  
Other strain no. Other strain no. : OG-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-2149
Euglena viridis    
NIES-2722
Fistulifera saprophila Pennate diatom   Freshwater (Stone) Test strain for AGP etc. (Ishihara, S. et al. 2006)  
NIES-2859
Ophiocytium sp.   Freshwater (Pond water) Benthic  
NIES-2535
Skeletonema japonicum Centric diatom   Marine (Seawater) Red tide ; Planktonic  
NIES-2370
Emiliania huxleyi Coccolithophore   Marine Red tide ; Planktonic  
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

Kashiyama, Y. et al. 2019 Taming chlorophylls by early eukaryotes underpinned algal interactions and the diversification of the eukaryotes on the oxygenated Earth. ISME J., 13, 1899-1910.
Strain(s): 825427428632433135338149462362499710121013101513201330133313341335137213771388139013961397140814381439144119642008214221442149230023052325243324982502256625842586258925902677287833563374377544774478 
PubMed: 30809012
DOI: 10.1038/s41396-019-0377-0

Unauthorized copying and replication of text, images, and tables in our homepage, are prohibited.

page-top