ロデラ綱
出典: フリー百科事典『ウィキペディア(Wikipedia)』 (2019/11/29 14:52 UTC 版)
ロデラ綱 (ロデラこう) (学名:Rhodellophyceae) は、単細胞性の紅藻の1群。多くは海に生育するが、淡水種も知られる。葉緑体の色は多様。古くは原始紅藻綱 (または亜綱) チノリモ目に分類されていたが、分子系統学的研究などに基づいて独立の綱とされた。ロデラ藻綱 (ロデラそうこう) ともよばれる[2][3]。
- ^ a b 和名は「鈴木 雅大 (2019) 紅藻類. 日本産海藻リスト. 生きもの好きの語る自然誌.」より。ただし古典的な意味での原始紅藻綱 (または亜綱) とは範囲が異なるので注意。古典的な原始紅藻類からイデユコゴメ綱とウシケノリ綱を除いたものに当たる。
- ^ 巌佐 庸, 倉谷 滋, 斎藤 成也 & 塚谷 裕一 (2013) 岩波生物学辞典第 第5版. 岩波書店. ISBN 978-4000803144
- ^ 日本光合成学会 (編) 光合成事典. 紅藻
- ^ a b c d Korshikov, A. A. (1930) Glaucosphaera vacuolata, a new member of the Glaucophyceae. Arch. Protistenk. 95: 217-222.
- ^ a b c d Billard, C. & Fresnel, J. (1986) Rhodella cyanea nov.sp., une nouvelle Rhodophyceaeunicellulaire. C. R. Acad. Sci. Paris, Sér. III 302: 271–276.
- ^ a b Scott, J., Broadwater, S., Saunders, B. D., Thomas, J. P. & Gabrielson, P. W. (1992) Ultrastructure of vegetative organization and cell division in the unicellular red alga Dixoniella grisea gen. nov.(Rhodophyta) and a consideration of the genus Rhodella. J. Phycol. 28: 649–660. https://doi.org/10.1111/j.0022-3646.1992.00649.x
- ^ a b c d e f Scott, J. L., Yokoyama, A., Billard, C. et al. (2008) Neorhodella cyanea, a new genus in the Rhodellophyceae (Rhodophyta). Phycologia 47: 560–572. DOI: 10.2216/08-27.1
- ^ a b c d Yokoyama, A., Scott, L. J., Zuccarello, C. G., Kajikawa, M., Hara, Y. & West, A. J. (2009) Corynoplastis japonica gen. et sp. nov.and Dixoniellales ord. nov. (Rhodellophyceae, Rhodophyta) based on morphological and molecular evidence. Phycol. Res. 57: 278–289. https://doi.org/10.1111/j.1440-1835.2009.00547.x
- ^ a b c d Kushibiki, A., Yokoyama, A., Iwataki, M., Yokoyama, J., West, J. A. & Hara, Y. (2012) New unicellular red alga, Bulboplastis apyrenoidosa gen. et sp. nov.(Rhodellophyceae, Rhodophyta) from the mangroves of Japan: phylogenetic and ultrastructural observations. Phycological Research 60: 114-122. https://doi.org/10.1111/j.1440-1835.2012.00643.x
- ^ a b c d e Evans, L. V. (1970) Electron microscopical observations on a new red algal unicell, Rhodella maculata gen. nov., sp. nov. Br. Phycol. J. 5: 1–13. https://doi.org/10.1080/00071617000650011
- ^ a b Deason, T. R., Butler, G. L. & Rhyne, C. (1983) Rhodella reticulata sp. nov., a new coccoid Rhodophytan alga (Porphyridiales). J. Phycol. 19: 104–111. https://doi.org/10.1111/j.0022-3646.1983.00104.x
- ^ a b c Patrone, L. M., Broadwater, S. T. & Scott, J. L. (1991) Ultrastructure of vegetative and dividing cells of the unicellular red algae Rhodella violacea and Rhodella maculata. J. Phycol. 27: 742–753. https://doi.org/10.1111/j.0022-3646.1991.00742.x
- ^ a b Broadwater, S. T. & Scott, J. L. (1994) Ultrastructure of unicellular red algae. In: Seckbach, J. (eds), Evolutionary Pathways and Enigmatic Alga: Cyanidium caldarium and Related Cells. Kluwer Scientific Academic Publishers, Netherlands. ISBN 0792326350 pp. 215–230.
- ^ a b c Yokoyama, A., Sato, K. & Hara, Y. (2004) The generic delimitation of Rhodella (Porphyridiales, Rhodophyta) with emphasis on ultrastructure and molecular phylogeny. Hydrobiologia 512: 177–183. https://doi.org/10.1007/978-94-007-0944-7_24
- ^ a b Broadwater, S. T., Scott, J. L., Goss, S. P. A. & Saunders, B. D. (1995) Ultrastructure of vegetative organization and cell division in Glaucosphaera vacuolata Korshikov (Porphyridiales, Rhodophyta). Phycologia 34: 351–361. https://doi.org/10.2216/i0031-8884-34-5-351.1
- ^ Wehrmeyer, W. (1971) Elektronmikroskopische Untersuchung zur Feinstructur von Porphyridium violaceum Kornmann mit Bemerkungen über seine taxonomische Stellung. Arch. Microbiol. 75: 121–139.
- ^ Takaichi, S., Yokoyama, A., Mochimaru, M., Uchida, H. & Murakami, A. (2016) Carotenogenesis diversification in phylogenetic lineages of Rhodophyta. Journal of Phycology 52: 329-338. https://doi.org/10.1111/jpy.12411
- ^ Shimonaga, T., Konishi, M., Oyama, Y., Fujiwara, S., Satoh, A., Fujita, N., Colleoni, C., Buléon, A., Putaux, J., Ball, S.G., Yokoyama, A., Hara, Y., Nakamura, Y. & Tsuzuki, M. (2008) Variation in storage α-glucans of the Porphyridiales (Rhodophyta). Plant and Cell Physiology 49: 103-116. https://doi.org/10.1093/pcp/pcm172
- ^ Karsten, U., West, J. A., Zuccarello, G. C., Nixdorf, O., Barrow, K. D. & King, R. J. (1999) Low molecular weight carbo- hydrate patterns in the Bangiophyceae (Rhodophyta). J. Phycol. 35: 967–976. https://doi.org/10.1046/j.1529-8817.1999.3550967.x
- ^ Karsten, U., West, J. A., Zuccarello, G. C. et al. (2003) Low molecular weight carbohydrates of the Bangiophycidae (Rhodophyta). J. Phycol. 39: 584–589. https://doi.org/10.1046/j.1529-8817.2003.02192.x
- ^ Eggert, A. & Karsten, U. (2010) Low molecular weight carbohydrates in red algae - an ecophysiological and biochemical perspective. In: Red Algae in the Genomic Age. Springer Netherlands. ISBN 978-90-481-3794-7 pp. 443-456.
- ^ Pickett-Heaps, J. D., West, J. A., Wilson, S. M. & McBride, D. L. (2001) Time-lapse videomicroscopy of cell (spore) movement in red algae. European Journal of Phycology 36: 9-22. DOI: https://doi.org/10.1017/S0967026201002992
- ^ 堀 輝三 (編) (1993) 藻類の生活史集成. 褐藻・紅藻類. 内田老鶴圃. 396 pp. ISBN 978-4753640584
- ^ Yoon, H.S., Muller, K.M., Sheath, R.G., Ott, F.D. & Bhattacharya, D. (2006) Defining the major lineages of red algae (Rhodophyta). J. Phycol. 42: 482-492. https://doi.org/10.1111/j.1529-8817.2006.00210.x
- ^ Yoon, H.S., Zuccarello, G.C. & Bhattacharya, D. (2010) Evolutionary history and taxonomy of red algae. In: Seckbach, J. & Chapman, D.J. (eds.) Red Algae in the Genomic Age. Springer, Netherlands. ISBN 978-90-481-3794-7 pp. 25-42.
- ^ Müller, K.M., Lynch, M.D., & Sheath, R.G. (2010) Bangiophytes: from one class to six; where do we go from here? In: Seckbach, J. & Chapman, D.J. (eds.) Red Algae in the Genomic Age. Springer, Netherlands. ISBN 978-90-481-3794-7 pp. 241-259.
- ^ Muñoz-Gómez, S. A., Mejía-Franco, F. G., Durnin, K., Colp, M., Grisdale, C. J., Archibald, J. M. & Slamovits, C. H. (2017) The new red algal subphylum Proteorhodophytina comprises the largest and most divergent plastid genomes known. Current Biology 27: 1677-1684. https://doi.org/10.1016/j.cub.2017.04.054
- ^ Qiu, H., Yoon, H. S. & Bhattacharya, D. (2016) Red algal phylogenomics provides a robust framework for inferring evolution of key metabolic pathways. PLoS Currents 8. DOI: 10.1371/currents.tol.7b037376e6d84a1be34af756a4d90846
- ^ a b Kamiya, M., Lindstrom, S. C., Nakayama, T., Yokoyama, A., Lin, S. M., Guiry, M. D., ... & Cho, T. O. (2017) Syllabus of plant families ‐ A. Engler's Syllabus der Pflanzenfamilien Part 2/2: Photoautotrophic eukaryotic algae ‐ Rhodophyta. Borntraeger Science Publishers, Berlin. 171 pp. ISBN 978-3-443-01094-2
- ^ Guiry, M.D. & Guiry, G.M. (2019) AlgaeBase. World-wide electronic publication, Nat. Univ. Ireland, Galway. http://www.algaebase.org; searched on 16 Septmber 2019.
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