Molecular structure and evolution of chloroplast nucleoids
Author:
Affiliation:
1. College of Science, Department of Science, Ibaraki University
Publisher
The Japanese Society of Plant Morphology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/plmorphol/32/1/32_75/_pdf
Reference48 articles.
1. Archibald, J. M. (2015) Endosymbiosis and eukaryotic cell evolution. Curr Biol 25: R911-921.
2. Bell, L., and Byers, B. (1979) Occurrence of crossed strand-exchange forms in yeast DNA during meiosis. Proc Natl Acad Sci USA 76: 3445-3449.
3. Bendich, A. J. (2004) Circular chloroplast chromosomes: the grand illusion. Plant Cell 16: 1661-1666.
4. Biasini, M., Bienert, S., Waterhouse, A., Arnold, K., Studer, G., Schmidt, T., Kiefer, F., Cassarino, T. G., Bertoni, M., Bordoli, L., and Schwede, T. (2014) SWISS-MODEL: modelling protein tertiary and quaternary structure using evolutionary information. Nucleic Acids Res 42: W252-258.
5. Chi-Ham, C. L., Keaton, M. A., Cannon, G. C., and Heinhorst, S. (2002) The DNA-compacting protein DCP68 from soybean chloroplasts is ferredoxin: sulfite reductase and co-localizes with the organellar nucleoid. Plant Mol Biol 49: 621-631.
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