Strain number | NIES-626 | |||
---|---|---|---|---|
Phylum | Chlorophyta | |||
Class | Pyramimonadophyceae | |||
Scientific name | Pterosperma cristatum Schiller | |||
Synonym | ||||
Former name | ||||
Common name | ||||
Locality (Date of collection) | Seto Inland Sea, Kagawa, Japan (1989-02-14) | |||
Latitude / Longitude | ||||
Habitat (Isolation source) | Marine (Seawater) | |||
History | < Sawaguchi, Tomohiro | |||
Isolator (Date of isolation) | Sawaguchi, Tomohiro (1989-**-**) | |||
Identified by | Inouye, Isao | |||
State of strain | Subculture; Unialgal; Clonal; Non-axenic | |||
Culture condition (Preculture condition) |
Medium:
ESM
Temperature: 15 C Light intensity: 12-15 µmol photons/m2/sec, L/D cycle: 10L:14D Duration: 1 M |
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Gene information | 16S rRNA ( AB491636 ) , atpA ( AB561007 ) , atpB ( AB561016 ) , CO1 ( AB491637 ) , petD ( AB561023 ) , psaA ( AB561031 ) , psaB ( AB561038 ) , psbA ( AB561049 ) , psbB ( AB561056 ) , psbC ( AB561064 ) , psbD ( AB561070 ) , tufA ( AB561080 ) | |||
Cell size (min - max) | 8 - 10 μm | |||
Organization | Unicellular; Flagellate | |||
Characteristics | ||||
Other strain no. | Other strain no. : 89KGW-1 | |||
Remarks | Fragile species to transportation stresses; Read and agree "How to order 4.1" | |||
Movie |
Reference |
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Charvet, S., Bock, N. A., Kim, E., Duhamel, S.
2024
Transcriptomics reveal a unique phago-mixotrophic response to low nutrient concentrations in the prasinophyte Pterosperma cristatum.
ISME Commun.,
4,
ycae083 (article ID).
Keywords: phagotrophy; mixoplankton; bacterivory; prasinophyte; geneexpression Strain(s): 626 PubMed: 38957873 DOI: 10.1093/ismeco/ycae083 Hamana, K., Furuchi, T., Hayashi, H., Uemura, T., Niitsu, M. 2023 Additional polyamine analysis of the algae belonging to the phyla Glaucophyta, Rhodophyta and Chlorophyta. ─Polyamine analysis of algae V─ Microb. Resour. Syst., 39, 33-40. Keywords: alga; Chlorophyta; Glaucophyta; polyamine; Rhodophyta Strain(s): 226, 250, 254, 550, 551, 626, 1298, 1332, 1703, 1836, 2137, 2163, 2164, 2165, 2166, 2252, 2353, 2894, 3377, 3645, 3867, 3891, 3892, 4107, 4390, 4452 Bock, N. A., Charvet, S., Burns, J., Gyaltshen, Y., Rozenberg, A., Duhamel ,S., Kim, E. 2021 Experimental identification and in silico prediction of bacterivory in green algae. ISME J., 15, 1987-2000. Strain(s): 254, 296, 626, 995 PubMed: 33649548 DOI: 10.1038/s41396-021-00899-w Shiba, K. & Inaba, K. 2017 Inverse relationship of Ca2+-dependent flagellar response between animal sperm and prasinophyte algae. J. Plant Res., 130, 465-473. Keywords: Calaxin; Cilia; Dynein; Opisthokont; Prasinophyte; Sperm flagella Strain(s): 626 PubMed: 28424932 DOI: 10.1007/s10265-017-0931-7 Matsumoto, T., Shinozaki, F., Chikuni, T., Yabuki, A., Takishita, K., Kawachi, M., Nakayama, T., Inouye, I., Hashimoto, T., Inagaki, Y. 2011 Green-colored plastids in the dinoflagellate genus Lepidodinium are of core Chlorophyte origin. Protist, 162, 268-276. Strain(s): 626, 1419, 1868, 2432 PubMed: 20829107 DOI: 10.1016/j.protis.2010.07.001 |
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