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Towards a natural system of organisms: Proposal for the domains and

Рис. 16. Sousa, F. L., Thiergart, T., Landan, G., Nelson-Sathi, S., Pereira, I. A. C., Allen, J. F., Lane, N., and W. F. Martin Early bioenergetic evolution // Phil. Trans. R. Soc. B 368: 20130088 (2013).

Sousa, F. L., Thiergart, T., Landan, G., Nelson-Sathi, S., Pereira, I. A. C., Allen, J. F., Lane, N., W. F. Martin Early bioenergetic evolution

Рис. 17. Sojo, V., Pomiankowski, A., and N. Lane A bioenergetic basis for membrane divergence in archaea and bacteria // PLOS Biology 12 (8): e1001926 (2014).

Sojo, V., Pomiankowski, A., and N. Lane A bioenergetic basis for membrane divergence in archaea and bacteria

Рис. 19. Sojo, V., Pomiankowski, A., and N. Lane A bioenergetic basis for membrane divergence in archaea and bacteria // PLOS Biology 12 (8): e1001926 (2014).

Sojo, V., Pomiankowski, A., and N. Lane A bioenergetic basis for membrane divergence in archaea and bacteria

Рис. 21. Thiergart, T., Landan, G., Schrenk, M., Dagan, T., and W. F. Martin An evolutionary network of genes present in the eukaryote common ancestor polls genomes on eukaryotic and mitochondrial origin // Genome Biology and Evolution 4: 466–485 (2012).

Thiergart, T., Landan, G., Schrenk, M., Dagan, T., and W. F. Martin An evolutionary network of genes present in the eukaryote common ancestor polls genomes on eukaryotic and mitochondrial origin

Рис. 22. Williams, T. A., Foster, P. G., Cox, C. J., and T. M. Embley An archaeal origin of eukaryotes supports only two primary domains of life // Nature 504: 231–236 (2013).

Williams, T. A., Foster, P. G., Cox, C. J., and T. M. Embley An archaeal origin of eukaryotes supports only two primary domains of life

Рис. 23. А – Б. Esther Angert, Cornell University. В – Г. Heide Schulz-Vogt, Leibnitz Institute for Baltic Sea Research, Rostock. См.: Lane, N., and W. Martin The energetics of genome complexity // Nature 467: 929–934 (2010); Schulz, H. N. The genus Thiomargarita // Prokaryotes 6: 1156–1163 (2006).

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