Strain number | NIES-2693 | |||
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Phylum | Heterokontophyta | |||
Class | Pinguiophyceae | |||
Scientific name | Phaeomonas sp. | |||
Synonym | ||||
Former name | ||||
Common name | ||||
Locality (Date of collection) | Mediterranean Sea (Spanish Coast), Spain (2001-06-25) | |||
Latitude / Longitude | 41.66666666 / 2.8 | |||
Habitat (Isolation source) | Marine (Seawater) | |||
History | < RCC (2010); | |||
Isolator (Date of isolation) | Guillou, L. (2001-06-25) | |||
Identified by | Identified by DNA analysis at RCC | |||
State of strain | Subculture; Unialgal; Clonal; Non-axenic | |||
Culture condition (Preculture condition) |
Medium:
f/2
Temperature: 20 C Light intensity: 22-32 µmol photons/m2/sec, L/D cycle: 10L:14D Duration: 2 M |
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Gene information | 16S rRNA ( AY702170 ) | |||
Cell size (min - max) | - 3 μm | |||
Organization | Unicellular; Flagellate | |||
Characteristics | Planktonic | |||
Other strain no. |
Other collection strain no. : RCC503
Other strain no. : BL_149-10 |
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Remarks | ||||
Movie |
Reference |
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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): 1, 8, 9, 14, 15, 17, 71, 115, 223, 225, 233, 234, 265, 274, 275, 276, 277, 278, 279, 280, 281, 282, 284, 293, 323, 324, 330, 333, 344, 345, 346, 347, 348, 350, 353, 372, 377, 388, 391, 395, 407, 408, 409, 413, 414, 417, 461, 462, 466, 487, 534, 548, 553, 556, 557, 558, 559, 560, 562, 587, 588, 589, 590, 603, 605, 622, 623, 695, 696, 697, 698, 699, 700, 701, 702, 703, 704, 705, 706, 707, 708, 709, 710, 711, 712, 713, 714, 715, 716, 741, 765, 766, 767, 805, 837, 997, 1001, 1002, 1003, 1004, 1005, 1006, 1007, 1009, 1011, 1016, 1017, 1044, 1045, 1046, 1047, 1302, 1303, 1324, 1327, 1330, 1339, 1340, 1349, 1353, 1370, 1375, 1376, 1379, 1383, 1384, 1385, 1386, 1387, 1391, 1392, 1393, 1395, 1398, 1399, 1400, 1401, 1699, 1700, 1730, 1813, 1815, 1816, 1826, 1827, 1831, 1862, 1863, 1864, 1865, 1874, 1963, 1964, 1965, 1974, 1975, 1976, 2142, 2143, 2144, 2145, 2147, 2148, 2300, 2331, 2332, 2351, 2363, 2364, 2365, 2369, 2370, 2376, 2506, 2533, 2534, 2535, 2536, 2537, 2590, 2633, 2668, 2689, 2690, 2691, 2693, 2694, 2696, 2697, 2707, 2716, 2717, 2718, 2720, 2722, 2723, 2725, 2726, 2729, 2730, 2731, 2732, 2770, 2771, 2772, 2773, 2839, 2840, 2841, 2842, 2843, 2844, 2859, 2872, 2878, 2890, 2899, 3391, 3689, 3690, 3691 Stawiarski, B., Buitenhuis, ET., Le Quéré, C. 2016 The physiological response of picophytoplankton to temperature and its model representation. Front. Mar. Sci., 3, 164 (article ID). Strain(s): 2588, 2693, 2886 DOI: 10.3389/fmars.2016.00164 del Campo, J., Sieracki, M.E., Molestina, R., Keeling, P., Massana, R., Ruiz-Trillo, I. 2014 The others: our biased perspective of eukaryotic genomes. Trends Ecol. Evol., 29, 252-259. Strain(s): 1000, 2582, 2584, 2587, 2590, 2670, 2673, 2691, 2693, 2694, 2695, 2696, 2697, 2699, 2700, 2707, 2751, 2753, 2755, 2756, 2758, 2761, 3369, 3370, 3371 PubMed: 24726347 DOI: 10.1016/j.tree.2014.03.006 Giovagnetti, V., Cataldo, M. L., Conversano, F., Brunet, C. 2010 Functional relation between growth, photosynthetic rate and regulation in the coastal picoeukaryote Phaeomonas sp. RCC 503 (Pinguiophyceae, Stramenopiles). J. Plankton Res., 32, 1501-1511. Keywords: photoacclimation; picoeukaryote; xanthophyll cycle Strain(s): 2693 DOI: 10.1093/plankt/fbq074 Fuller, N. J., Campbell, C., Allen, D. J., Pitt, F. D., Le Gall, F., Vaulot, D., Scanlan, D. J. 2006 Analysis of photosynthetic picoeukaryote diversity at open ocean sites in the Arabian Sea using a PCR biased towards marine algal plastids. Aquat. Microb. Ecol., 43, 79-93. Keywords: Photosynthetic picoeukaryotes; Plastid 16S rRNA; Arabian Sea; PCR Strain(s): 2586, 2588, 2589, 2672, 2673, 2687, 2690, 2693 DOI: 10.3354/ame043079 |
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