Strain number NIES-706  
Phylum Cryptophyta  
Class Cryptophyceae  
Scientific name Chroomonas nordstedtii Hansgirg  
Synonym  
Former name  
Common name  
Locality (Date of collection) Sugadaira Moor, Sugadaira, Sanda Nagano, Japan (1976-09-**)  
Latitude / Longitude  
Habitat (Isolation source) Freshwater (Bog water)  
History < Erata, Mayumi  
Isolator (Date of isolation) Inouye, Isao (1976-09-**)  
Identified by Erata, Mayumi  
State of strain Subculture; Unialgal; Clonal; Non-axenic  
Culture condition
(Preculture condition)
Medium:  AF-6  
Temperature:  15 C
Light intensity:  9-10 µmol photons/m2/sec, L/D cycle:  10L:14D
Duration:  1 M  
Gene information 16S rRNA ( AB591423 ) , 28S rRNA ( HE820914 ) , GapC1 ( AB459529 )  
Cell size (min - max)  
Organization Unicellular; Flagellate 
Characteristics  
Other strain no. Other strain no. : #00165  
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-1045
Cylindrotheca closterium Pennate diatom   Marine (Seawater) Epilithic  
NIES-4109
Viridiuvalis adhaerens   Marine (the mucus covering a coral) Benthic ; Authentic strain (Shiratori et al. 2017)  
NIES-2694
Calcidiscus leptoporus Coccolithophore   Marine (Seawater) Planktonic  
NIES-1863
Aurearena cruciata   Marine (Sand) Authentic strain (Kai et al. 2008)  
NIES-286
Euglena mutabilis   Freshwater (Sediment) Bioindicator  
Reference
Erata, M. & Chihara, M. 1987 Cryptomonads from the Sugadaira-Moor, Central Japan. Bull. Sugadaira Mont. Res. Center, Univ. Tsukuba, 8, 57-69 (in Japanese with English summary).
Strain(s): 706713714715 

Erata, M. & Chihara, M. 1989 Re-examination of Pyrenomonas and Rhodomonas (Class Cryptophyceae) through ultrastructural survey of red pigmented cryptomonads. Bot. Mag. Tokyo, 102, 429-443.
Keywords: nucleomorph; periplastidal compartment; Pyrenomonas; Rhodomonas
Strain(s): 697698699700701702705706 
DOI: 10.1007/BF02488125

Erata, M. & Chihara, M. 1991 Cryptomonads of Japan (2) three species of Chroomonas. J. Jpn. Bot., 66, 7-11.
Strain(s): 706707708710712713714727 

Hamana, K. & Niitsu, M. 2006 Cellular polyamines of lower eukaryotes belonging to the phyla Glaucophyta, Rhodophyta, Cryptophyta, Haptophyta and Percolozoa. J. Gen. Appl. Microbiol., 52, 235-240.
Keywords: Cryptophyta; Glaucophyta; Haptophyta; Perclozoa; polyamine; Rhodophyta
Strain(s): 82742762772823533886997067157417637641016101710321036133214411456145714621463146714733377 
PubMed: 17116972
DOI: 10.2323/jgam.52.235

Takishita, K., Yamaguchi, H., Maruyama, T., Inagaki, Y. 2009 A hypothesis for the evolution of nuclear-encoded, plastid-targeted glyceraldehyde-3 phosphate dehydrogenase genes in "chromalveolate" members. PLoS One, 4, e4737 (article ID).
Strain(s): 15275706716 
PubMed: 19270733
DOI: 10.1371/journal.pone.0004737

Hoef-Emden, K. 2012 Pitfalls of establishing DNA barcoding systems in protists: the cryptophyceae as a test case. PLoS One, 7, e43652 (article ID).
Strain(s): 27470670871171271371410041370 
PubMed: 22970104
DOI: 10.1371/journal.pone.0043652

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

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

Yamaguchi, H., Nakayama, T., Kai, A., Inouye, I. 2011 Taxonomy and phylogeny of a new kleptoplastidal dinoflagellate, Gymnodinium myriopyrenoides sp. nov. (Gymnodiniales, Dinophyceae), and its cryptophyte symbiont. Protist, 162, 650-667.
Keywords: dinoflagellate; Gymnodinium myriopyrenoides; kleptochloroplast; phylogeny; taxonomy
Strain(s): 706712713 
PubMed: 21497133
DOI: 10.1016/j.protis.2011.01.002

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