| Strain number | NIES-3757 | |||
|---|---|---|---|---|
| Phylum | Cyanophyta | |||
| Class | Cyanophyceae | |||
| Scientific name | Stanieria sp. | |||
| Synonym | ||||
| Former name | ||||
| Common name | Blue-green alga ; Cyanobacteria | |||
| Locality (Date of collection) | Mimomi Hongo Park, Narashino, Chiba, Japan (2013-11-01) | |||
| Latitude / Longitude | 35.684195 / 140.064770 | |||
| Habitat (Isolation source) | Terrestrial (Water) | |||
| History | < Hirose, Yuu < Katayama, Mitsunori | |||
| Isolator (Date of isolation) | Katayama, Mitsunori (2013-11-01) | |||
| Identified by | Hirose, Yuu | |||
| State of strain | Cryopreservation; Unialgal; Clonal; Axenic | |||
|
Culture condition (Preculture condition) |
Medium:
BG-11
Temperature: 20 C Light intensity: 7 µmol photons/m2/sec, L/D cycle: 10L:14D Duration: 2 M |
|||
| Gene information | Whole-genome ( AP017375 ) , Plasmid DNA ( AP017376 ) | |||
| Cell size (min - max) | ||||
| Organization | ||||
| Characteristics | Genome decoded strain | |||
| Other strain no. | Other strain no. : CIT031 | |||
| Remarks | Cryopreserved; Axenic | |||
| Movie | ||||
|
Related strain information
(Used in same reference)
|
||||
|---|---|---|---|---|
| Strain number | Scientific name | Common name | Habitat (Isolation source) | Characteristics |
|
NIES-806 |
Dolichospermum compactum | Blue-green alga ; Cyanobacteria | Freshwater (Lake water) | Cyanobacterial water bloom (aoko) ; Genome decoded strain |
|
NIES-847 |
Limnothrix redekei | Blue-green alga ; Cyanobacteria | Freshwater (Lake water) | Cyanobacterial water bloom (aoko) ; Planktonic |
|
NIES-1071 |
Microcystis aeruginosa | Blue-green alga ; Cyanobacteria | Freshwater | Cyanobacterial water bloom (aoko) ; Toxicity ; microcystin (+) (Asukabe et al. 2020) ; Reisolated from TAC 70 |
|
NIES-230 |
Merismopedia tenuissima | Blue-green alga ; Cyanobacteria | Freshwater (Pond water) | |
|
NIES-1134 |
Microcystis aeruginosa | Blue-green alga ; Cyanobacteria | Freshwater (Lake water) | Cyanobacterial water bloom (aoko) ; Reisolated from TAC 159 ; ST48 (Tanabe, Y. et al. 2007) |
| Reference |
|---|
|
Moten, D., Batsalova, T., Basheva, D., Mladenov, R., Dzhambazov, B., Teneva, I.
2018
Outer membrane efflux protein (OMEP) is a suitable molecular marker for resolving the phylogeny and taxonomic status of closely related cyanobacteria.
Phycol. Res.,
66,
31-36.
Keywords: cyanobacterial taxonomy; phylogenetic analysis; transmembrane transporter sequences Strain(s): 39, 843, 2104, 3754, 3755, 3756, 3757 DOI: 10.1111/pre.12203 Asukabe, H., Akahori, S., Ueno, E., Nakayama, T., Yamashita, R., Arii, S., Harada, K., Imanishi, S. Y. 2020 Cyanobacterial classification with the toxicity using MALDI Biotyper. J. Am. Soc. Mass Spectrom., 31, 1572-1578. Keywords: cyanobacteria; MALDI Biotyper; microcystins; profiling Strain(s): 27, 39, 42, 73, 81, 87, 89, 100, 101, 102, 103, 104, 105, 107, 111, 112, 207, 208, 230, 266, 298, 416, 433, 478, 510, 512, 515, 592, 593, 604, 611, 808, 809, 835, 843, 846, 847, 905, 928, 931, 932, 945, 981, 989, 1025, 1043, 1058, 1061, 1064, 1068, 1069, 1071, 1076, 1085, 1099, 1101, 1105, 1113, 1115, 1126, 1133, 1134, 1135, 1144, 1157, 1215, 1642, 1643, 1652, 1668, 1672, 1673, 1677, 1678, 1698, 2087, 2131, 2412, 2665, 3708, 3733, 3734, 3736, 3755, 3756, 3757 PubMed: 32501712 DOI: 10.1021/jasms.0c00148 Hirose, Y., Ohtsubo, Y., Misawa, N., Yonekawa, C., Nagao, N., Shimura, Y., Fujisawa, T., Kanesaki, Y., Katoh, H., Katayama, M., Yamaguchi, H., Yoshikawa, H., Ikeuchi, M., Eki, T., Nakamura, Y., Kawachi, M. 2021 Genome sequencing of the NIES Cyanobacteria collection with a focus on the heterocyst-forming clade. DNA Res., 28, dsab024 (article ID). Keywords: Cyanobacteria; genome; heterocyst; culture collection; taxonomy Strain(s): 19, 21, 22, 23, 25, 37, 50, 73, 267, 806, 932, 2098, 2100, 2107, 2109, 2111, 2130, 2135, 3275, 3585, 3757, 3974, 4070, 4073, 4074, 4075, 4101, 4102, 4103, 4106 PubMed: 34677568 DOI: 10.1093/dnares/dsab024 Giordano, M., Goodman, C. A., Huang, F., Raven, J. A., Ruan, Z. 2022 A mechanistic study of the influence of nitrogen and energy availability on the NH4+ sensitivity of nitrogen assimilation in Synechococcus. J. Exp. Bot., 73, 5596-5611. Keywords: Ammonium; cyanobacteria; glutamine synthetase; limitation; nitrate reductase; nitrite reductase; NtcA regulation; N metabolism Strain(s): 25, 50, 204, 267, 843, 970, 981, 2107, 2134, 2135, 2481, 2549, 3709, 3754, 3756, 3757, 4074 PubMed: 35595516 DOI: 10.1093/jxb/erac219 Arsın, S., Delbaje, E., Jokela, J., Wahlsten, M., Farrar, Z. M., Permi, P., Fewer, D. 2023 A plastic biosynthetic pathway for the production of structurally distinct microbial sunscreens. ACS Chem. Biol., 18, 1959–1967. Strain(s): 25, 73, 267, 2100, 2107, 2109, 2111, 2130, 3755, 3756, 3757, 3974, 4073, 4102, 4103, 4105, 4106 PubMed: 37603862 DOI: 10.1021/acschembio.3c00112 |
Unauthorized copying and replication of text, images, and tables in our homepage, are prohibited.