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19. Paul, N. & Joyce, G. F. Minimal self-replicating systems. Curr Opin Chem Biol 8, 634–639, doi:10.1016/j.cbpa.2004.09.005 (2004).

20. Wu, M. & Higgs, P. G. Origin of self-replicating biopolymers: autocatalytic feedback can jump-start the RNA world. J Mol Evol 69, 541–554, doi:10.1007/s00239-009-9276-8 (2009).

21. Vaidya, N. et al. Spontaneous network formation among cooperative RNA replicators. Nature 491, 72–77, doi:10.1038/nature11549 (2012).

22. Cafferty, B. J., Fialho, D. M., Khanam, J., Krishnamurthy, R. & Hud, N. V. Spontaneous formation and base pairing of plausible prebiotic nucleotides in water. Nat Commun 7, 11328, doi:10.1038/ncomms11328 (2016).

23. Trinks, H., Schröder, W. & Biebricher, C. K. Ice And The Origin Of Life. Origins of Life and Evolution of Biospheres 35, 429–445, doi:10.1007/s11084-005-5009-1 (2005).

24. Price, P. B. Microbial life in glacial ice and implications for a cold origin of life. FEMS Microbiol Ecol 59, 217–231, doi:10.1111/j.1574–6941.2006.00234.x (2007).

25. Miyakawa, S., Cleaves, H. J. & Miller, S. L. The cold origin of life: B. Implications based on pyrimidines and purines produced from frozen ammonium cyanide solutions. Orig Life Evol Biosph 32, 209–218, doi:10.1023/a:1019514022822 (2002).

26. Miyakawa, S., Cleaves, H. J. & Miller, S. L. The cold origin of life: A. Implications based on the hydrolytic stabilities of hydrogen cyanide and formamide. Orig Life Evol Biosph 32, 195–208, doi:10.1023/a:1016514305984 (2002).

27. Follmann, H. & Brownson, C. Darwin's warm little pond revisited: from molecules to the origin of life. Naturwissenschaften 96, 1265–1292, doi:10.1007/s00114-009-0602-1 (2009).

28. Pearce, B. K. D., Pudritz, R. E., Semenov, D. A. & Henning, T. K. Origin of the RNA world: The fate of nucleobases in warm little ponds. Proc Natl Acad Sci USA 114, 11327–11332, doi:10.1073/pnas.1710339114 (2017).

29. Опарин А. И. Жизнь, ее природа, происхождение и развитие. – М.: Наука, 1968.

30. Martin, W., Baross, J., Kelley, D. & Russell, M. J. Hydrothermal vents and the origin of life. Nat Rev Microbiol 6, 805–814, doi:10.1038/nrmicro1991 (2008).

31. Burcar, B. T. et al. RNA Oligomerization in Laboratory Analogues of Alkaline Hydrothermal Vent Systems. Astrobiology 15, 509–522, doi:10.1089/ast.2014.1280 (2015).

32. Baaske, P. et al. Extreme accumulation of nucleotides in simulated hydrothermal pore systems. Proc Natl Acad Sci USA 104, 9346–9351, doi:10.1073/pnas.0609592104 (2007).

33. Mulkidjanian, A. Y. & Galperin, M. Y. On the origin of life in the zinc world. 2. Validation of the hypothesis on the photosynthesizing zinc sulfide edifices as cradles of life on Earth. Biol Direct 4, 27, doi:10.1186/1745-6150-4-27 (2009).

34. Mulkidjanian, A. Y. On the origin of life in the zinc world: 1. Photosynthesizing, porous edifices built of hydrothermally precipitated zinc sulfide as cradles of life on Earth. Biol Direct 4, 26, doi:10.1186/1745-6150-4-26 (2009).

35. Deamer, D. W. & Georgiou, C. D. Hydrothermal Conditions and the Origin of Cellular Life. Astrobiology 15, 1091–1095, doi:10.1089/ast.2015.1338 (2015).

36. Sojo, V., Herschy, B., Whicher, A., Camprubi, E. & Lane, N. The Origin of Life in Alkaline Hydrothermal Vents. Astrobiology 16, 181–197, doi:10.1089/ast.2015.1406 (2016).

37. Nisbet, E. G. & Fowler, C. M. R. The hydrothermal imprint on life: did heat-shock proteins, metalloproteins and photosynthesis begin around hydrothermal vents? Geological Society, London, Special Publications 118, 239–251, doi:10.1144/gsl.Sp.1996.118.01.15 (1996).

38. Kelley, D. S. et al. A serpentinite-hosted ecosystem: the Lost City hydrothermal field. Science 307, 1428–1434, doi:10.1126/science.1102556 (2005).

39. Proskurowski, G. et al. Abiogenic hydrocarbon production at lost city hydrothermal field. Science 319, 604–607, doi:10.1126/science.1151194 (2008).

40. Mulkidjanian, A. Y., Bychkov, A. Y., Dibrova, D. V., Galperin, M. Y. & Koonin, E. V. Origin of first cells at terrestrial, anoxic geothermal fields. Proc Natl Acad Sci USA 109, E821–830, doi:10.1073/pnas.1117774109 (2012).

41. Никитин М. Происхождение жизни: от РНК-мира до последнего общего предка всего живого, (2018).

ГЛАВА 2. ХОРОШАЯ ИДЕЯ

1. Rigby, N., van der Merwe, P. & Williams, G. Pacific Exploration: Voyages of Discovery from Captain Cook's Endeavour to the Beagle (Bloomsbury Publishing, 2018).

2. Dynes, W. R., Johansson, W., Percy, W. A. & Donaldson, S. Encyclopedia of Homosexuality: A – L. (Garland Pub., 1990).

3. Franklin, R. The Death of Lord Londonderry. The Historian 96, 3 (2007).

4. Gibson, S. The Spirit of Inquiry: How one extraordinary society shaped modern science (OUP Oxford, 2019).

5. Pearl, S. About Faces: Physiognomy in Nineteenth-Century Britain (Harvard University Press, 2010).

6. Charles Darwin and the voyage of the Beagle (Pilot Press, 1945).

7. Oxford University Museum of Natural History: The Great Debate,

8. Barlow, D. The Devil within: Evolution of a tragedy. Weather 52, 337–341, doi:10.1002/j.1477-8696.1997.tb06250.x (1997).

9. Moore, P. The Tragic Life of Charles Darwin's Captain,

10. Steinheimer, F. D. Charles Darwin's bird collection and ornithological knowledge during the voyage of H. M. S. «Beagle», 1831–1836. Journal of Ornithology 145, 300–320, doi:10.1007/s10336-004-0043-8 (2004).

11. Sulloway, F. J. Darwin and his finches: The evolution of a legend. Journal of the History of Biology 15, 1–53, doi:10.1007/bf00132004 (1982).

12. MacCallum, R. M., Mauch, M., Burt, A. & Leroi, A. M. Evolution of music by public choice. Proc Natl Acad Sci USA 109, 12081–12086, doi:10.1073/pnas.1203182109 (2012).

13. Hug, L. A. et al. A new view of the tree of life. Nat Microbiol 1, 16048, doi:10.1038/nmicrobiol.2016.48 (2016).

14. Dobzhansky, T. Nothing in Biology Makes Sense except in the Light of Evolution. The American Biology Teacher 35, 125–129, doi:10.2307/4444260 (1973).

15. Campbell, A. K. & Matthews, S. B. Darwin's illness revealed. Postgraduate Medical Journal 81, 248, doi:10.1136/pgmj.2004.025569 (2005).

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