| Strain number | NIES-4122 | |||
|---|---|---|---|---|
| Phylum | Haptophyta | |||
| Class | Prymnesiophyceae | |||
| Scientific name | Chrysochromulina sp. | |||
| Synonym | ||||
| Former name | ||||
| Common name | ||||
| Locality (Date of collection) | Tokyo Bay, Edogawa-ku, Tokyo, Japan (2013-08-24) | |||
| Latitude / Longitude | 35.638652 / 139.850941 | |||
| Habitat (Isolation source) | Marine (Seawater) | |||
| History | < Atsuji, Kohei; Inaba, Kazuo | |||
| Isolator (Date of isolation) | Atsuji, Kohei (2014-09-**) | |||
| Identified by | Atsuji, Kohei | |||
| State of strain | Subculture; Unialgal; Clonal; Non-axenic | |||
|
Culture condition (Preculture condition) |
Medium:
IMK
Temperature: 20 C Light intensity: 22-24 µmol photons/m2/sec, L/D cycle: 10L:14D Duration: 45 D |
|||
| Gene information | ||||
| Cell size (min - max) | 5 - 10 μm | |||
| Organization | Unicellular; Flagellate | |||
| Characteristics | ||||
| Other strain no. | Other strain no. : D1 | |||
| Remarks | ||||
| Movie | ||||
|
Related strain information
(Large number of orders and same genus or species)
|
||||
|---|---|---|---|---|
| Strain number | Scientific name | Common name | Habitat (Isolation source) | Characteristics |
|
NIES-2506 |
Chrysochromulina sp. | Marine (Seawater) | Planktonic | |
|
NIES-1333 |
Chrysochromulina sp. | Marine (Seawater) | Genome decoded strain (Nishimura et al. 2014) ; Prey for NIES-1334 and NIES-1335 | |
|
NIES-562 |
Chrysochromulina parva | Freshwater (Lake water) | Planktonic | |
|
NIES-4257 |
Chrysochromulina andersonii | Marine (the host radiolarian Dictyocoryne truncatum) | Planktonic ; Benthic ; Symbiotic (radiolarian) ; Authentic strain (Yuasa et al. 2019) | |
|
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-1392 |
Chrysochromulina simplex | Marine (Seawater) | ||
| Reference |
|---|
|
Nomura, M., Atsuji, K., Hirose, K., Shiba, K., Yanase, R., Nakayama, T., Ishida, K-I., Inaba, K.
2019
Microtubule stabilizer reveals requirement of Ca2+-dependent conformational changes of microtubules for rapid coiling of haptonema in haptophyte algae.
Biol. Open,
8,
bio036590 (article ID).
Keywords: Haptophyte; Chrysochromulina; Haptonema; Microtubule; Paclitaxel; Curvature Strain(s): 4122 PubMed: 30700402 DOI: 10.1242/bio.036590 |
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