| Strain number | NIES-3284 | |||
|---|---|---|---|---|
| Phylum | Chlorophyta | |||
| Class | Chlorophyceae | |||
| Scientific name | Chlamydomonas reinhardtii P.A.Dangeard | |||
| Synonym | Chlamydomonas morieri Dangeard 1888; Chlamydomonas pseudodebaryana Brabez 1941 | |||
| Former name | ||||
| Common name | Green alga | |||
| Locality (Date of collection) | near Amherst Massachusetts USA | |||
| Latitude / Longitude | ||||
| Habitat (Isolation source) | ||||
| History | < IAM (2007) < BIU (UTEX; 1967); | |||
| Isolator (Date of isolation) | ||||
| Identified by | ||||
| State of strain | Cryopreservation; Unialgal; Clonal; Axenic[2018 Feb] | |||
|
Culture condition (Preculture condition) |
Medium:
C (agar)
Temperature: 20 C Light intensity: 4-6 µmol photons/m2/sec, L/D cycle: 10L:14D |
|||
| Gene information | 18S rRNA ( AB753040 ) | |||
| Cell size (min - max) | ||||
| Organization | Unicellular; Flagellate | |||
| Characteristics | Phototaxis ; Mating type (−) | |||
| Other strain no. |
Other collection strain no. : IAM C-238; CCAP 11/32B; SAG 11-32a; UTEX 89; NIBB 4013; UTCC 84; CGC CC-1009
Other strain no. : 137c mt− |
|||
| Remarks | Cryopreserved; Axenic | |||
| Movie | ||||
|
Related strain information
(Whose relevance due to simultaneous purchases and other information is inferred by AI)
|
||||
|---|---|---|---|---|
| Strain number | Scientific name | Common name | Habitat (Isolation source) | Characteristics |
|
NIES-2202 |
Chlamydomonas applanata | Green alga | Terrestrial | Phototaxis ; Genome decoded strain (Hirashima et al. 2016) |
|
NIES-2499 |
Chlamydomonas eustigma | Green alga | Freshwater (Microfilm) | Acidophilic ; Phototaxis ; Arsenic tolerance (Hirooka et al. 2017) ; Genome decoded strain (Hirooka et al. 2017) |
|
NIES-2212 |
Chlamydomonas debaryana | Green alga | Phototaxis ; Starch production (Toyoshima et al. 2015) ; Genome decoded strain (Hirashima et al. 2016) | |
|
Related strain information
(Used in same reference)
|
||||
|---|---|---|---|---|
| Strain number | Scientific name | Common name | Habitat (Isolation source) | Characteristics |
|
NIES-2247 |
Chlamydomonas ulvaensis | Green alga | Terrestrial (Pasture plant) | Phototaxis |
|
NIES-2231 |
Chlamydomonas proteus | Green alga | Freshwater (Water) | Phototaxis |
|
NIES-2165 |
Auxenochlorella protothecoides | Green alga | ||
|
NIES-2577 |
Chlamydomonas moewusii | Green alga | Phototaxis | |
|
NIES-2223 |
Chlamydomonas moewusii | Green alga | Freshwater (Paddy soil) | Phototaxis ; Mating type (+) |
| Reference |
|---|
|
Ohta, S., Miyamoto, K., Miura, Y.
1987
Hydrogen evolution as a consumption mode of reducing equivalents in green algal fermentation.
Plant Physiol.,
83,
1022-1026.
Strain(s): 2169, 3284 PubMed: 16665317 DOI: 10.1104/pp.83.4.1022 Sato, N. 1988 Dual role of methionine in the biosynthesis of diacylglyceryltrimethylhomoserine in Chlamydomonas reinhardtii. Plant Physiol., 86, 931-934. Strain(s): 3284 PubMed: 16666011 DOI: 10.1104/pp.86.3.931 Sato, N. 1989 Modulation of lipid and fatty acid content by carbon dioxide in Chlamydomonas reinhardtii. Plant Sci., 61, 17-21. Keywords: carbon dioxide; Chlamydomonas; fatty acid; lipid Strain(s): 3284 DOI: 10.1016/0168-9452(89)90113-1 Tatsuzawa, H. & Takizawa, E. 1996 Fatty acid and lipid composition of the acidophilic green alga Chlamydomonas sp. J. Phycol., 32, 598-601. Keywords: acidophilic algae; Chlamydomonas sp.; Chlamydomonas reinhardtii; Chlorophyta; culture conditions; fatty acids; lipids Strain(s): 3284 DOI: 10.1111/j.0022-3646.1996.00598.x Yumoto, K., Kasai, F., Kawachi, M. 2013 Taxonomic re-examination of Chlamydomonas strains maintained in the NIES-Collection. Microbiol. Cult. Coll., 29, 1-12. Strain(s): 158, 437, 438, 440, 884, 968, 1021, 1022, 1048, 1733, 1848, 1849, 2201, 2202, 2203, 2204, 2206, 2207, 2208, 2209, 2210, 2211, 2212, 2213, 2214, 2215, 2216, 2218, 2219, 2220, 2222, 2223, 2224, 2225, 2228, 2229, 2230, 2231, 2233, 2234, 2235, 2236, 2237, 2238, 2239, 2240, 2241, 2242, 2243, 2246, 2247, 2248, 2314, 2315, 2316, 2317, 2318, 2319, 2320, 2321, 2322, 2323, 2324, 2462, 2463, 2499, 2575, 2576, 2577, 2578, 2579, 3284 DOI: 10.60369/microresys.29.1_1 Chu, C. Y., Liao, W. R., Huang, R., Lin, L. P. 2004 Haemagglutinating and antibiotic activities of freshwater microalgae. World J. Microbiol. Biotechnol., 20, 817–825. Keywords: Antibiotic activity; erythrocytes; freshwater microalgae; haemagglutination Strain(s): 226, 227, 2159, 2163, 2165, 2169, 2175, 2189, 2208, 2211, 2213, 2214, 2229, 2231, 2233, 2240, 2241, 2243, 2247, 2248, 3277, 3284 DOI: 10.1007/s11274-004-8712-6 Tawfik, A., Niaz, H., Qadeer, K., Qyyum, M. A., Liu, J. J., Lee, M. 2022 Valorization of algal cells for biomass and bioenergy production from wastewater: Sustainable strategies, challenges, and techno-economic limitations. Renew. Sust. Energ. Rev., 157, 112024 (article ID). Keywords: Xenobiotic compounds; Micro-pollutants; Enzyme activity; Biomass; Bioenergy; Algae-based wastewater treatment Strain(s): 19, 23, 44, 226, 422, 437, 2169, 2220, 3284 DOI: 10.1016/j.rser.2021.112024 Hirooka, T., Nagase, H., Hirata, K., Miyamoto, K. 2006 Degradation of 2,4-dinitrophenol by a mixed culture of photoautotrophic microorganisms. Biochem. Eng. J., 29, 157-162. Keywords: 2,4-Dinitrophenol; 2-Amino-4-nitrophenol; Anabaena variabilis; Anabaena cylindrica; Mixed culture Strain(s): 19, 23, 3284 DOI: 10.1016/j.bej.2005.03.018 |
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