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Charlebois, R. L., and W. F. Doolittle Computing prokaryotic gene ubiquity: Rescuing the core from extinction // Genome Research 14: 2469–2477 (2004).

Charlebois, R. L., and W. F. Doolittle Computing prokaryotic gene ubiquity: Rescuing the core from extinction

Koonin, E. V. Comparative genomics, minimal gene-sets and the last universal common ancestor // Nature Reviews Microbiology 1: 127–136 (2003).

Koonin, E. V. Comparative genomics, minimal gene-sets and the last universal common ancestor

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., and W. F. Martin Early bioenergetic evolution

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Dagan, T., and W. Martin Ancestral genome sizes specify the minimum rate of lateral gene transfer during prokaryote evolution // Proceedings National Academy Sciences USA 104: 870–875 (2007).

Dagan, T., and W. Martin Ancestral genome sizes specify the minimum rate of lateral gene transfer during prokaryote evolution

Edgell, D. R., and W. F. Doolittle Archaea and the origin(s) of DNA replication proteins // Cell 89: 995–998 (1997).

Edgell, D. R., and W. F. Doolittle and the origin(s) of DNA replication proteins

Koga, Y., Kyuragi, T., Nishihara, M., and N. Sone Did archaeal and bacterial cells arise independently from noncellular precursors? A hypothesis stating that the advent of membrane phospholipid with enantiomeric glycerophosphate backbones caused the separation of the two lines of descent // Journal of Molecular Evolution 46: 54–63 (1998).

Koga, Y., Kyuragi, T., Nishihara, M., and N. Sone