467
Xiao S., Laflamme M. On the eve of animal radiation: phylogeny, ecology and evolution of the Ediacara biota // Trends in Ecology & Evolution, 2009, V. 24, № 1, 31–40.
468
Gregory J. W., Barrett B. H. The major terms of the pre-Paleozoic // The Journal of Geology, 1927, V. 35, № 8, 734–742.
469
Shu D. On the phylum Vetulicolia // Chinese Science Bulletin, 2005, V. 50, № 20, 2342–2354.
470
Журавлев А. Ю. Скелетный докембрий // Природа. 2006. № 12.
471
Erwin D. H. et al. The Cambrian conundrum: early divergence and later ecological success in the early history of animals // Science, 2011, V. 334, № 6059, 1091–1097.
472
Wheat C. W., Wahlberg N. Phylogenomic insights into the Cambrian explosion, the colonization of land and the evolution of flight in Arthropoda // Systematic Biology, 2012, V. 62, № 1, 93–109.
473
Lee M. S. Y., Soubrier J., Edgecombe G. D. Rates of phenotypic and genomic evolution during the Cambrian explosion // Current Biology, 2013, V. 23, № 19, 1889–1895.
474
Budd G. E., Jackson I. S. C. Ecological innovations in the Cambrian and the origins of the crown group phyla // Philosophical Transactions of the Royal Society of London, B: Biological Sciences, 2016, V. 371, № 1685, 20150287.
475
Isozaki Y. et al. Beyond the Cambrian explosion: from galaxy to genome // Gondwana Research, 2014, V. 3, № 25, 881–883.
476
Brennan S. T., Lowenstein T. K., Horita J. Seawater chemistry and the advent of biocalcification // Geology, 2004, V. 32, № 6, 473–476.
477
Seilacher A. Biomat-related lifestyles in the Precambrian // Palaios, 1999, V. 14, № 1, 86–93.
478
McMenamin M. A. S. The garden of Ediacara // Palaios, 1986, V. 1, № 2, 178–182.
479
Laflamme M., Xiao S., Kowalewski M. Osmotrophy in modular Ediacara organisms // Proceedings of the National Academy of Sciences, 2009, V. 106, № 34, 14438–14443.
480
Stanley S. M. An ecological theory for the sudden origin of multicellular life in the late Precambrian // Proceedings of the National Academy of Sciences, 1973, V. 70, № 5, 1486–1489.
481
Bottjer D. J., Hagadorn J. W., Dornbos S. Q. The Cambrian substrate revolution // GSA Today, 2000, V. 10, № 9, 1–7.
482
Butterfield N. J. Plankton ecology and the Proterozoic-Phanerozoic transition // Paleobiology, 1997, V. 23, № 2, 247–262.
483
Алешин В. В. и др. О положении насекомых в кладе Pancrustacea // Молекулярная биология. 2009. Т. 43. № 5. 866–881.
484
Алешин В. В., Петров Н. Б. Происхождение насекомых: взгляд генетика // Суперкомпьютерные технологии в науке, образовании и промышленности. — М.: Издательство МГУ, 2009.
485
Butterfield N. J. Oxygen, animals and oceanic ventilation: an alternative view // Geobiology, 2009, V. 7, № 1, 1–7.
486
Zhang X. et al. Triggers for the Cambrian explosion: hypotheses and problems // Gondwana Research, 2014, V. 25, № 3, 896–909.
487
Reynolds P. D. The scaphopoda // Advances in Marine Biology, 2002, V. 42, 137–236.
488
Mulkidjanian A. Y. et al. Origin of first cells at terrestrial, anoxic geothermal fields // Proceedings of the National Academy of Sciences, 2012, V. 109, № 14, E821−E830.
489
Beraldi-Campesi H., Retallack G. J. Terrestrial ecosystems in the Precambrian // Biological soil crusts: an organizing principle in drylands. Springer International Publishing, 2016. 37–54.
490
Horodyski R. J., Knauth, L. P. Life on Land in the Precambrian // Science, 1994, V. 263, № 5146, 494–498.
491
Strother P. K. et al. Earth’s earliest non-marine eukaryotes // Nature, 2011, V. 473, № 7348, 505–509.
492
Beraldi-Campesi H. Early life on land and the first terrestrial ecosystems // Ecological Processes, 2013, V. 2, № 1, 1.
493
Kennedy M. et al. Late Precambrian oxygenation; inception of the clay mineral factory // Science, 2006, V. 311, № 5766, 1446–1449.
494
Yuan X., Xiao S., Taylor T. N. Lichen-like symbiosis 600 million years ago // Science, 2005, V. 308, № 5724, 1017–1020.
495
Steemans P. et al. Origin and radiation of the earliest vascular land plants // Science, 2009, V. 324, № 5925, 353–353.
496
Graham L. et al. Early terrestrialization: transition from algal to bryophyte grade // Photosynthesis in bryophytes and early land plants. Springer Netherlands, 2014. 9–28.
497
Wellman C. H. The nature and evolutionary relationships of the earliest land plants // New Phytologist, 2014, V. 202, № 1, 1–3.
498
Kenrick P. et al. A timeline for terrestrialization: consequences for the carbon cycle in the Palaeozoic // Philosophical Transactions of the Royal Society of London, B: Biological Sciences, 2012, V. 367, № 1588,