225
Wachtershauser G. Origin of life: RNA world versus autocatalytic anabolist // The Prokaryotes. Springer Berlin Heidelberg, 2013. 81–88.
226
О том, как возник аппарат трансляции, подробно рассказано в книге: Никитин М. Происхождение жизни. От туманности до клетки. — М.: Альпина нон-фикшн, 2018.
227
Leipe D. D., Aravind L., Koonin E. V. Did DNA replication evolve twice independently? // Nucleic Acids Research, 1999, V. 27, №17, 3389–3401.
228
Takeuchi N., Hogeweg P. Evolutionary dynamics of RNA-like replicator systems: a bioinformatic approach to the origin of life // Physics of Life Reviews, 2012, V. 9, №3, 219–263.
229
Гусев М.В., Минеева Л.А. Микробиология. — М.: Издательство МГУ, 1992.
230
Заренков Н.А. Лекции по теории систематики. — М.: Издательство МГУ, 1996.
231
Лункевич В.В. От Гераклита до Дарвина. — М.: Издательство Министерства просвещения РСФСР, 1960. Т. 1.
232
Willdenow K. L. The principles of botany, and of vegetable physiology. Edinburgh, University Press, 1805.
233
Ellis J. On the Nature and Formation of Sponges: In a Letter from John Ellis, Esquire, FRS to Dr. Solander, FRS // Philosophical Transactions, 1765, V. 55, 280–289.
234
Ragan M. A. A third kingdom of eukaryotic life: History of an idea // Archiv fur Protistenkunde, 1997, V. 148, №3, 225–243.
235
Sapp J. Genesis: the evolution of biology. Oxford University Press (USA), 2003.
236
Hogg J. On the distinctions of a plant and an animal, and on a fourth kingdom of nature // The Edinburgh New Philosophical Journal, 1860, V. 12.
237
Sapp J. The new foundations of evolution: on the tree of life. Oxford University Press (USA), 2009.
238
Copeland H. F. The kingdoms of organisms // The Quarterly Review of Biology, 1938, V. 13, №4, 383–420.
239
Katscher F. The history of the terms prokaryotes and eukaryotes // Protist, 2004, V. 155, №2, 257–263.
240
Whittaker R. H. New concepts of kingdoms of organisms // Science, 1969, V. 163, №3863, 150–160.
241
Hennig W. Phylogenetic systematics // Annual Review of Entomology, 1965, V. 10, №1, 97–116.
242
Клюге Н.Ю. Современная систематика насекомых. Принципы систематики живых организмов и общая система насекомых с классификацией первичнобескрылых и древнекрылых. — СПб.: Лань, 2000.
243
Leedale G. F. How many are the kingdoms of organisms? // Taxon, 1974, V. 23, №2/3, 261–270.
244
Watanabe Y. et al. Introns in protein‐coding genes in Archaea // FEBS Letters, 2002, V. 510, №1/2, 27–30.
245
Woese C. R., Kandler O., Wheelis M. L. Towards a natural system of organisms: proposal for the domains Archaea, Bacteria, and Eucarya // Proceedings of the National Academy of Sciences, 1990, V. 87, №12, 4576–4579.
246
Stanier R. Y., Van Niel C. B. The concept of a bacterium // Archiv fur Mikrobiologie, 1962, V. 42, №1, 17–35.
247
Woese C. R., Fox G. E. Phylogenetic structure of the prokaryotic domain: the primary kingdoms // Proceedings of the National Academy of Sciences, 1977, V. 74, №11, 5088–5090.
248
Williams T. A. et al. An archaeal origin of eukaryotes supports only two primary domains of life // Nature, 2013, V. 504, 231–236.
249
Hug L. A. et al. A new view of the tree of life // Nature Microbiology, 2016, V. 1, 16048.
250
Gribaldo S. et al. The origin of eukaryotes and their relationship with the Archaea: are we at a phylogenomic impasse? // Nature Reviews. Microbiology, 2010, V. 8, №10, 743–752.
251
Embley T. M., Williams T. A. Steps on the road to eukaryotes // Nature, 2015, V. 521, 169–170.
252
Zaremba-Niedzwiedzka K. et al. Asgard archaea illuminate the origin of eukaryotic cellular complexity // Nature, 2017, V. 541, 353–358.
253
Единственный эукариот, у которого не удалось обнаружить не только остатков митохондрий, но и никаких митохондриальных белков, — бесцветный жгутиконосец Monocercomonoides, относящийся к супергруппе Excavata. Но из положения этого жгутиконосца на филогенетическом древе однозначно следует, что и у его предков митохондрии когда-то были. Karnkowska A. et al. A eukaryote without a mitochondrial organelle // Current Biology, 2016, V. 26, №10, 1274–1284.
254
Fuerst J. A. Intracellular compartmentation in planctomycetes // Annual Review of Microbiology, 2005, V. 59, 299–328.
255
Fuerst J. A. Beyond prokaryotes and eukaryotes: planctomycetes and cell organization // Nature Education, 2010, V. 3, №9, 44.
256
McInerney J. O. et al. Planctomycetes and eukaryotes: a case of analogy not homology // Bioessays, 2011, V. 33, №11, 810–817.
257
Yutin N. et al. The origins of phagocytosis and eukaryogenesis // Biology Direct, 2009, V. 4, №1, 9.
258
Baum D. A., Baum B. An inside-out origin for the eukaryotic cell // BMC Biology, 2014, V. 12, №1, 76.
259
Sogin M. L. Early evolution and the origin of eukaryotes // Current Opinion in Genetics & Development, 1991, V. 1, №4, 457–463.
260
Gupta R. S. et al. Cloning of Giardia lamblia heat shock protein HSP70 homologs: implications regarding origin of eukaryotic cells and of endoplasmic reticulum // Proceedings of the National Academy of Sciences, 1994, V. 91, №8, 2895–2899.
261
Lake J. A., Rivera M. C. Was the nucleus the first endosymbiont? // Proceedings of the National Academy of Sciences, 1994, V. 91, №8, 2880–2881.
262
Moreira D., Lopez-Garcia P. Symbiosis between methanogenic archaea and δ-proteobacteria as the origin of eukaryotes: the syntrophic hypothesis // Journal of Molecular Evolution, 1998, V. 47, №5, 517–530.
263
Lopez-Garcia P., Moreira D. Metabolic symbiosis at the origin of eukaryotes // Trends in Biochemical Sciences, 1999, V. 24, №3, 88–93.
264
Lake J. A. Eukaryotic origins // Philosophical Transactions of the Royal Society of London, B: Biological Sciences, 2015, V. 370, №1678, 20140321.
265
Lopez-Garcia P., Moreira D. Open questions on the origin of eukaryotes // Trends in Ecology & Evolution, 2015, V. 30, №11, 697–708.
266
Gupta R. S., Golding G. B. The origin of the eukaryotic cell // Trends in Biochemical Sciences, 1996, V. 21, №5, 166–171.
267
Lopez-Garcia, Moreira, 2015.
268
Там же.
269
Марков А.В., Куликов A.M. Происхождение эвкариот: выводы из анализа белковых гомологий в трех надцарствах живой природы // Происхождение и эволюция биосферы.