Relict Early Cretaceous Salamanders of the “Great Siberian Refugium”

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Resumo

Primitive salamanders found in the Lower Cretaceous localities of Shestakovo 1 (Kemerovo Oblast) and Teete (Republic of Sakha (Yakutia)) are relict forms for the Early Cretaceous. These salamanders are an important component of the unique fauna of the Early Cretaceous “Great Siberian Refugium”, a vast northeastern part of the Asian continent with numerous relict vertebrates of Jurassic origin. A possible reason for the existence of “Great Siberian Refugium” was the absence of serious climatic changes and catastrophic events in this area in the Late Jurassic — Early Cretaceous.

Sobre autores

P. Skutschas

Saint Petersburg State University

Email: p.skutschas@spbu.ru
Saint Petersburg, Russia

V. Kolchanov

Saint Petersburg State University

Email: veniamin.kolchanov@mail.ru
Saint Petersburg, Russia

Bibliografia

  1. Boisvert C. A. Vertebral development of modern salamanders provides insights into a unique event of their evolutionary history. Journal of Experimental Zoology. Part B: Molecular and Developmental Evolution. 2009; 312: 1–29.
  2. Bonett R. M., Ledbetter N. M., Hess A. J. et al. Repeated ecological and life cycle transitions make salamanders an ideal model for evolution and development. Developmental Dynamics. 2022; 251: 957–972.
  3. Fröbisch N. B. Ossification patterns in the tetrapod limb — conservation and divergence from morphogenetic events. Biological Reviews of the Cambridge Philosophical Society. 2008; 83: 571–600.
  4. Godwin J. W., Pinto A. R., Rosenthal N. A. Macrophages are required for adult salamander limb regeneration. Proceedings of the National Academy of Sciences USA. 2013; 110: 9415–9420.
  5. Jones M. E. H., Benson R. B. J., Skutschas P. P. et al. Middle Jurassic fossils document an early stage in salamander evolution. Proceedings of the National Academy of Sciences USA. 2022; 119: e2114100119.
  6. Joven A., Elewa A., Simon A. Model systems for regeneration: salamanders. Development. 2019; 146: dev167700.
  7. Schloissnig, S., Kawaguchi A., Nowoshilow S. et al. The giant axolotl genome uncovers the evolution, scaling, and transcriptional control of complex gene loci. Proceedings of the National Academy of Sciences USA. 2021; 118: e2017176118.
  8. Ивахненко М. Ф. Хвостатые амфибии из триаса и юры Средней Азии. Палеонтологический журнал. 1978; 3: 84–89.
  9. Schoch R. R., Werneburg R., Voigt S. A Triassic stem-salamander from Kyrgyzstan and the origin of salamanders. Proceedings of the National Academy of Sciences USA. 2020; 117(21): 11584–11588. doi: 10.1073/pnas.2001424117.
  10. Skutschas P. P., Martin T. Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan. Zoological Journal of the Linnean Society. 2011; 161: 816–838.
  11. Skutschas P. P. Mesozoic salamanders and albanerpetontids of Middle Asia, Kazakhstan, and Siberia. Palaeobiodiversity and Palaeoenvironments. 2013; 93: 441e457. doi: 10.1007/s12549-013-0126-8.
  12. Skutschas P. P. A relict stem salamander: evidence from the Early Cretaceous of Siberia. Acta Palaeontologica Polonica. 2016; 61: 119–123. doi: 10.4202/app.00124.2014.
  13. Skutschas P. P., Kolchanov V. V., Averianov A. O. et al. A new relict stem salamander from the Early Cretaceous of Yakutia, Siberian Russia. Acta Palaeontologica Polonica. 2018; 63: 519e525.
  14. Averianov A. O., Ivantsov S. V., Skutschas P. P. et al. A new sauropod dinosaur from the Lower Cretaceous Ilek Formation, Western Siberia, Russia. Geobios. 2018; 51(1): 1–14. doi: 10.1016/j.geobios.2017.12.004.
  15. Mashchenko E. N., Lopatin A. V. First record of an Early Cretaceous triconodont mammal in Siberia. Bulletin de l’Institut Royal des Sciences Naturelles de Belqique, Sciences de la Terre. 1998; 68: 233–236.
  16. Maschenko E. N., Lopatin A. V., Voronkevich A. V. A new genus of the tegotheriid docodonts (Docodonta, Tegotheriidae) from the Early Cretaceous of West Siberia. Russian Journal of Theriology. 2003; 1(2): 75–81. doi: 10.15298/rusjtheriol.1.2.01.
  17. Skutschas P. P., Vitenko D. D. On a record of choristoderes (Diapsida, Choristodera) from the Lower Cretaceous of Western Siberia. Paleontological Journal. 2015; 49(5): 507–511. doi: 10.1134/S0031030115050123.
  18. Skutschas P. P., Vitenko D. D. Early Cretaceous choristoderes (Diapsida, Choristodera) from Siberia, Russia. Cretaceous Research. 2017; 77: 79–92. doi: 10.1016/j.cretres.2017.05.004.
  19. Skutschas P. P. A new crown-group salamander from the Middle Jurassic of Western Siberia, Russia. Palaeobiodiversity and Palaeoenvironments. 2016; 96: 41–48.
  20. Skutschas P. P, Kolchanov V. V., Averianov A. O. et al. The northernmost occurrence of non-karaurid salamanders (Lissamphibia, Caudata) in the Mesozoic. Cretaceous Research. 2023; 152: 105686. doi: 10.1016/j.cretres.2023.105686.
  21. Leshchinskiy S. V., Voronkevich A. V., Fayngertz A. V. et al. Early Cretaceous vertebrate locality Shestakovo, Western Siberia: a refugium for Jurassic relics? Journal of Vertebrate Paleontology. 2001; 21: 73A.
  22. Skutschas P. P., Averianov A. O., Schellhorn R. et al. Amphibians from the high latitude Early Cretaceous Teete locality, Yakutia, Russia. Abstracts of the 92 Annual Meeting of the Paläontologische Gesellschaft. 2021; 142: 84.
  23. Tennant P., Mannion P. D., Upchurch P. et al. Biotic and environmental dynamics through the Late Jurassic — Early Cretaceous transition: evidence for protracted faunal and ecological turnover. Biological Reviews. 2017; 92: 776–814. doi: 10.1111/brv.12255.

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