Glaucophyta
Skak / Schake

Taxonavigation
[Bewerke]Superregnum: Eukaryota
Cladus: Diaphoretickes
Cladus: CAM
Cladus: Archaeplastida
Regnum: Plantae
Divisio: Glaucophyta
Classis: Glaucophyceae
Name
[Bewerke]Glaucophyta Skuja, 1954 (see Adl. et al., 2019)
- Type genus: Glaucocystis Itzigsohn, 1854
Synonyme
[Bewerke]- Glaucophyta Skuja, 1948 nom. nud.
- Glaucocystophyta L.Kies & B.P.Kremer, 1986
Alternative Klassifizierungen
[Bewerke]| Kies & Kremer (1986) |
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Kies L. & Kremer B.P. (1986). Typification of the Glaucocystophyta. Taxon 35: 128–135, [1]. Division Glaucocystophyta Kies et Kremer, nomen novum. (Glaucophyta Skuja 1954, p. 56.)
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| Kies & Kremer, in Margulis et al. (1990) |
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Kies, L. & Kremer, B.P., 1990. 12. Phylum Glaucocystophyta. In: Margulis, L., J.O. Corliss, M. Melkonian, D.J. Chapman (ed.). Handbook of Protoctista. Jones and Bartlett Publishers, Boston, p. 152-166. See Brands, S.J. (1989-2015), [2]. Kingdom Protoctista
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Quellennachweise
[Bewerke]Primärliteratur
[Bewerke]- Adl. S.M., Bass, D., Lane, C.E., Burger, G., Schoch, C.L., Smirnov, A., Agatha, S., Berney, C., Brown, M.W., Burki, F., Cárdenas, P., Čepička, I., Chistyakova, L., Del Campo, J., Dunthorn, M., Edvardsen, B., Eglit, Y., Guillou, L., Hampl, V., Heiss, A.A., Hoppenrath, M., James, T.Y., Karnkowska, A.E., Karpov, S., Kim, E., Kolisko, M., Lahr, D.J.G., Lara, E., Le Gall, L., Lynn, D.H., Mann, D.G., Massana, R., Mitchell, E.A.D., Morrow, C., Park, J.S., Pawlowski, J.W., Powell, M.J., Richter, D.J., Rueckert, S., Shadwick, L., Shimano, S., Spiegel, F.W., Torruella, G., Youssef, N., Zlatogursky, V.V. & Zhang, Q. 2018 (Online) 2019 (Print). Revisions to the Classification, Nomenclature, and Diversity of Eukaryotes. Journal of Eukaryotic Microbiology 66(1): 4–119. DOI: 10.1111/JEU.12691
Seite dieser Quellenangabe. - Kies, L. & Kremer, B.P. 1986. Typification of the Glaucocystophyta. Taxon 35: 128–135. DOI: 10.2307/1221049 Seite dieser Quellenangabe.
- Skuja, H. 1948. Taxonomie des Phytoplanktons einiger Seen in Uppland, Schweden. Symbolae Botanicae Upsalienses 9(3): 1–399, 39 pls. Seite dieser Quellenangabe.
- Skuja, H. 1954. III. Abteilung: Glaucophyta. In: A. Engler's Syllabus der Pflanzenfamilien: mit besonderer Berücksichtigung der Nutzpflanzen nebst einer Übersicht über die Florenreiche und Florengebiete der Erde, 12th ed. I Band Allgemeiner Teil Bakterien bis Gymnospermen. (Melchior, H. & Werdermann, E. Eds), pp. 56–57. Berlin-Nikolassee: Borntraeger. Seite dieser Quellenangabe.
Weitere Literatur
[Bewerke]- Bohnert, H.J. & Löffelhardt, W. 1982. Cyanelle DNA from Cyanophora paradoxa exists in two forms due to intramolecular recombination. FEBS Lett., 150: 403–406.
- Chong, J.; Jackson, C; Kim, J.I.; Yoon, H.S. & Reyes-Prieto, A. 2014. Molecular markers from different genomic compartments reveal cryptic diversity within glaucophyte species. Mol. Phylogenet. Evol. 76C: 181–188. DOI: 10.1016/j.ympev.2014.03.019
- Facchinelli, F.; Pribil, M.; Oster, U.; Ebert, N.J.; Bhattacharya, D.; Leister, D. & Weber, A.P.M. 2013. Proteomic analysis of the Cyanophora paradoxa muroplast provides clues on early events in plastid endosymbiosis. Planta, 237: 637–651.
- Ferrari, C. & Mutwil, M. 2020. Gene expression analysis of Cyanophora paradoxa reveals conserved abiotic stress responses between basal algae and flowering plants. New Phytol., 225: 1562–1577.
- Figueroa-Martinez, F.; Jackson, C. & Reyes-Prieto, A. 2019. Plastid genomes from diverse glaucophyte genera reveal a largely conserved gene content and limited architectural diversity. Genome Biol. Evol., 11: 174–188.
- Heiss, A.A.; Heiss, A.W.; Lukacs, K. & Kim, E. 2017. The flagellar apparatus of the glaucophyte Cyanophora cuspidata. J. Phycol., 53: 1120–1150.
- Jackson, C.J. & Reyes-Prieto, A. 2014. The mitochondrial genomes of the glaucophytes Gloeochaete wittrockiana and Cyanoptyche gloeocystis: multilocus phylogenetics suggests a monophyletic archaeplastida. Genome Biol. Evol., 6: 2774–2785.
- Kies, L. & Kremer, B.P. 1990. "12. Phylum Glaucocystophyta", Pp. 152–166 in Margulis, L.; Corliss, J.O.; Melkonian, M.; & Chapman, D.J. (eds.) Handbook of Protoctista. Boston: Jones and Bartlett Publishers.
- Kugrens, P., Clay, B.L., Meyer, C.J. & Lee, R.E. 1999. Ultrastructure and description of Cyanophora biloba, sp. nov., with additional observations on C. paradoxa (Glaucophyta). Journal of Phycology 35(4): 844–854. 22 figs. DOI: 10.1046/j.1529-8817.1999.3540844.x Seite dieser Quellenangabe.
- Nozaki, H.; Maruyama, S.; Matsuzaku, M.; Nakada, T.; Kato, S.; & Misawa, K. 2009. Phylogenetic positions of Glaucophyta, green plants (Archaeplastida) and Haptophyta (Chromalveolata) as deduced from slowly evolving nuclear genes. Molecular Phylogenetics and Evolution 53(3): 872–880.
- Price, D.C.; Steiner, J.M.; Yoon, H.S.; Bhattacharya, D.; & Löffelhardt, W. 2016. "Glaucophyta", Pp. 1-65 in Archibald, J.M.; Simpson, A.G.B.; & Slamovits, C. (eds.). Handbook of the Protists. Springer. DOI: 10.1007/978-3-319-32669-6_42-1
- Reyes-Prieto, A.; Russell, S.; Figueroa-Martinez, F. & Jackson, C. 2018. Comparative plastid genomics of glaucophytes. Adv. Bot. Res., 85: 95–127.
- Russell, S.; Jackson, C.; & Reyes-Prieto, A. 2021. [2020] High Sequence Divergence but Limited Architectural Rearrangements in Organelle Genomes of Cyanophora (Glaucophyta) Species. Eukaryotic Microbiology 68(1): e12831 DOI: 10.1111/jeu.12831
- Skuja, H. 1954. III. Abteilung: Glaucophyta. In: A. Engler's Syllabus der Pflanzenfamilien: mit besonderer Berücksichtigung der Nutzpflanzen nebst einer Übersicht über die Florenreiche und Florengebiete der Erde, 12th ed. I Band Allgemeiner Teil Bakterien bis Gymnospermen. (Melchior, H. & Werdermann, E. Eds), pp. 56–57. Berlin-Nikolassee: Borntraeger. Seite dieser Quellenangabe.
- Skuja, H. 1956. Taxonomische und biologische Studien über das Phytoplankton schwedischer Binnengewässer. Nova Acta Regiae Societatis Scientiarum Upsaliensis, Series 4, 16(3): 1–404. Seite dieser Quellenangabe.
- Smith, D.R.; Jackson, C.J. & Reyes-Prieto, A. 2014. Nucleotide substitution analyses of the glaucophyte Cyanophora suggest an ancestrally lower mutation rate in plastid vs mitochondrial DNA for the Archaeplastida. Mol. Phylogenet. Evol., 79: 380–384.
- Stirewalt, V.L.; Michalowski, C.B.; Löffelhardt, W.; Bohnert, H.J. & Bryant, D.A. 1995. Nucleotide sequence of the cyanelle genome from Cyanophora paradoxa. Plant Mol. Biol. Rep., 13: 327–332.
- Takahashi, T., Sato, M., Toyooka, K., Matsuzaki, R., Kawafune, K., Kawamura, M., Okuda, K. & Nozaki, H. 2014. Five Cyanophora (Cyanophorales, Glaucophyta) species delineated based on morphological and molecular data. Journal of Phycology 50(6): 1058–1069. 22 figs. DOI: 10.1111/jpy.12236 Seite dieser Quellenangabe.
- Takahashi, T.; Nishida, T.; Tuji, A.; Saito, C.; Matsuzaki, R.; Sato, M.; Toyooka, K.; Yasuda, H. & Nozaki, H. 2016. Delineation of six species of the primitive algal genus Glaucocystis based on in situ ultrastructural characteristics. Sci. Rep., 6: 29209.
- Watanabe, M.; Kubota, H.; Wada, H.; Narikawa, R. & Ikeuchi, M. 2011. Novel supercomplex organization of photosystem I in Anabaena and Cyanophora paradoxa. Plant Cell Physiol., 52: 162–168.
- Watanabe, M.; Sato, M.; Kondo, K.; Narikawa, R. & Ikeuchi, M. 2012. Phycobilisome model with novel skeleton-like structures in a glaucocystophyte Cyanophora paradoxa. Biochim. Biophys. Acta, 1817: 1428–1435.
- Yusa, F.; Steiner, J.M. & Löffelhardt, W. 2008. Evolutionary conservation of dual Sec translocases in the cyanelles of Cyanophora paradoxa. BMC Evol. Biol., 8: 304.
Weblinks
[Bewerke]- Guiry, M.D. & Guiry, G.M. 2017. Glaucophyta AlgaeBase. World-wide electronic publication, National University of Ireland, Galway. Accessed 2019-12-15.
Trivialnamen
[Bewerke]- English: Glaucophytes
- eesti: Liitvetikad, Glaukotsüstofüüdid
- français: Glaucophytes
- русский: глаукофи́ты
- 中文: 灰藻门