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Gray Partridges (Phasianidae: Genera Perdix and Enkuria gen. nov.) from the Early Pleistocene of Crimea and Remarks on the Evolution of the Genus Perdix

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Abstract

This paper describes remains of fossil gray partridges from the Lower Pleistocene (1.8–1.5 Ma) deposits of the Taurida Cave in Central Crimea. The smaller gray partridge is referred to the fossil species Perdix jurcsaki Kretzoi, 1962. Another phasianid bird from the cave, which is partly similar to modern Perdix but larger than the latter, is described as Enkuria voinstvenskyi gen. et sp. nov. The spatiotemporal stability of the Early–Middle Pleistocene European gray partridge morphotype makes it possible to synonymize the fossil species P. jurcsaki and P. palaeoperdix Mourer-Chauviré, 1975. Earlier fossil finds of the genus Perdix from the Upper Pliocene–Lower Pleistocene of Eastern Europe and Asia are revised. Perdix margaritae Kurochkin, 1985 from the Upper Pliocene of Mongolia and Transbaikalia is considered a junior synonym of Lophura inferna Kurochkin, 1985. The oldest confirmed find of P. jurcsaki comes from the lower Gelasian (about 2.4 Ma) of the Northern Black Sea region (Kryzhanovka-2 locality; Ukraine). A dispersal of gray partridge to the west of Europe in the second half of the Early Pleistocene is shown. The discovery of the genus Enkuria confirms the existence of the fossil diversity of Perdicini s.s. in the Plio-Pleistocene of Northern Eurasia. Phasianus etuliensis Bocheński et Kurochkin, 1987 from the Lower Pliocene of Moldova is also here assigned to this genus. In addition, the validity of the fossil Early Pleistocene phasianids Francolinus subfrancolinus Jánossy, 1976 and Alectoris baryosefi Tchernov, 1980 is confirmed.

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  1. In the catalog of J. Mlíkovský (Mlíkovský, 2002), the lower horizon of the Kryzhanovka locality is designated as Kryzhanovka 1; it corresponds to the Kryzhanovka 1–3 localities in the modern interpretation (Tesakov, 2004).

REFERENCES

  1. Bajzath, J., Plant macrofossils from Hungarian Pleistocene II. Angiospermatophyta in Győrújfalu, West Hungary, Ann. Hist. Nat. Mus. Nat. Hung., 1996, vol. 88, pp. 5–20.

    Google Scholar 

  2. Bao, X.-K., Liu, N.-f., Qu, J.-y., et al., The phylogenetic position and speciation dynamics of the genus Perdix (Phasianidae, Galliformes), Mol. Phyl. Evol., 2010, vol. 56, no. 2, pp. 840–847.

    Article  Google Scholar 

  3. Baryshnikov, G.F., Large mammals of the Kudar Pleistocene fauna of the Caucasus, Trudy Zool. Inst. Ross. Akad. Nauk, 2020, appendix 9.

  4. Baryshnikov, G.F. and Potapova, O.R., Pleistocene birds from the Acheulean site of the Treugolnaya Cave in the northern Caucasus, Cour. Forschungsinst. Senckenberg, 1995, vol. 181, pp. 241–248.

    Google Scholar 

  5. Bedetti, C. and Pavia, M., Early Pleistocene birds from Pirro Nord (Puglia, southern Italy), Palaeontogr. Abt. A., 2013, vol. 298, pp. 31–53.

    Article  Google Scholar 

  6. Belyalov, O.V. and Karpov, F.F., Features and pattern of dispersal of gray and bearded partridges in Semirechye, Kaz. Ornitol. Byull., 2008, pp. 194–203.

    Google Scholar 

  7. Boev, Z., Paleobiodiversity of the Vrachanska Planina Mountains in the Villafranchian: a case study of the Varshets (Dolno Ozirovo) Early Pleistocene locality of fossil fauna and flora, in Faunistic Diversity of Vrachanski Balkan Nature Park, ZooRemarks, Suppl. 3, Bechev, D. and Georgiev, D., Eds., Plovdiv: Plovdiv Univ. Press, 2016, pp. 299–323.

    Google Scholar 

  8. Brodkorb, P., Catalogue of fossil birds, Part 2: Anseriformes through Galliformes, Bull. Fla. St. Mus. Biol. Sci., 1964, vol. 8, pp. 195–335.

    Google Scholar 

  9. Cai, T., Fjeldså, J., Wu, Y., et al., What makes the Sino-Himalayan mountains the major diversity hotspots for phasianids? J. Biogeogr., 2018, vol. 45, no. 3, pp. 640–651.

    Article  Google Scholar 

  10. Chen, D., Hosner, P.A., Dittmann, D.L., et al., Divergence time estimation of Galliformes based on the best gene shop** scheme of ultraconserved elements, BMC Ecol. Evol., 2021, vol. 21, no. 1, p. 209.

    Article  Google Scholar 

  11. Gorobets, L.V., Addition to Pleistocene avifauna (Aves) of Ukraine, in Evolyutsiya organicheskogo mira i etapy geologicheskogo razvitiya Zemli: Mater. XXXV Sess. Paleontol. O-va Nats. Akad. Nauk Ukr. (Evolution of the Organic World and Stages of Geological Development of the Earth, Proc. 25th Sess. Paleontol. Soc. Nat. Acad. Sci. Ukraine), Kiev, 2014, pp. 115–116.

  12. Gorobets, L., Birds as Indicators of Paleo-ecological Changes in Southeastern Europe on the Example of Eocene–Holocene Avifaunas, Doctoral (Biol.) Dissertation, Kyiv: Kyiv. Nats. Univ. im. T. Shevchenka, 2018.

  13. Hosner, P.A., Tobias, J.A., Braun, E.L., and Kimball, R.T., How do seemingly non-vagile clades accomplish trans-marine dispersal? Trait and dispersal evolution in the landfowl (Aves: Galliformes), Proc. R. Soc. B., 2017, vol. 284: 20170210.

    Article  Google Scholar 

  14. Hou, L., Avian fossils of Pleistocene from Zhoukoudian, Mem. Inst. Vertebr. Palaeontol. Palaeoanthropol. Acad. Sin., 1993, vol. 19, pp. 165–297.

    Google Scholar 

  15. Jánossy, D., Plio-Pleistocene bird remains from the Carpathian basin II. Galliformes 2. Phasianidae, Aquila, 1976, vol. 83, pp. 29–42.

    Google Scholar 

  16. Jánossy, D., Lower Pleistocene bird remains from Beremend (S-Hungary, loc. 15 and 16), Aquila, 1992, vol. 99, pp. 9–25.

    Google Scholar 

  17. Jurcsák, T. and Kessler, E., Cercetari paleornitologice din România, Nymphaea, 1973, vol. 1, pp. 263–300.

    Google Scholar 

  18. Kessler, E., New results with regard to the Neogene and Quaternary avifauna of the Carpathian Basin. Part II, Foldt. Kozl., 2009, vol. 139, no. 3, pp. 251–271.

    Google Scholar 

  19. Kessler, E., Evolution of Galliformes and their presence in the Carpathian Basin, Ornithol. Hung., 2019, vol. 27, pp. 142–174.

    Google Scholar 

  20. Kimball, R.T., Hosner, P.A., and Braun, E.L., A phylogenomic supermatrix of Galliformes (Landfowl) reveals biased branch lengths, Mol. Phyl. Evol., 2021, vol. 158: 107091.

    Article  Google Scholar 

  21. Kostin, S.Yu., Was there a rock partridge in Crimea? Ecosystems, 2020, vol. 23, pp. 124–132.

    Google Scholar 

  22. Kozlova, E.V., Ptitsy zonal’nykh stepei i pustyn’ Tsentral’noi Azii (Birds of Zonal Steppes and Deserts in Central Asia), Leningrad: Nauka, 1975.

  23. Kraft, E., Vergleichend Morphologische Untersuchungen an Einzelknochen Nord- und Mitteleuropaischer Kleinerer Huhnervogel, München, 1972.

  24. Kretzoi, M., Madár-maradványok a betfiai alsópleisztocén faunából, Aquila, 1962, vols. 67–68, pp. 167–174.

    Google Scholar 

  25. Krokhmal’, A.I. and Rekovets, L.I., Mestonakhozhdeniya melkikh mlekopitayushchikh pleistotsena Ukrainy i sopredel’nykh territorii (Localities of Small Mammals of the Pleistocene of Ukraine and Adjacent Territories), Kiev: LAT & K, 2010.

  26. Kurochkin, E.N., Ptitsy Tsentral’noi Azii v pliotsene (Birds of Central Asia in the Pliocene), Moscow: Nauka, 1985.

  27. Laroulandie, V., Damage to pigeon long bones in pellets of the eagle owl Bubo bubo and food remains of peregrine falcon Falco peregrinus: zooarchaeological implications, Acta Zool. Cracov., Spec. Iss., 2002, vol. 45, pp. 331–339.

    Google Scholar 

  28. Liukkonen-Anttila, T., Uimaniemi, L., Orell, M., and Lumme, J., Mitochondrial DNA variation and the phylogeography of the grey partridge (Perdix perdix) in Europe: from Pleistocene history to present day populations, J. Evol. Biol., 2002, vol. 15, pp. 971–982.

    Article  CAS  Google Scholar 

  29. Lopatin, A.V., The lost world of Taurida: the oldest fossil cave fauna in Crimea, Priroda, 2019, no. 6 (1246), pp. 53–61.

  30. Lopatin, A.V., Vislobokova, I.A., Lavrov, A.V., et al., Taurida Cave—a new locality of Early Pleistocene vertebrates in Crimea, Dokl. Biol. Sci., 2019, vol. 485, no. 1, pp. 381–385.

    Article  Google Scholar 

  31. Masini, F. and Sala, B., Considerations on an integrated biochronological scale of Italian Quaternary continental mammals, in Il Quaternario, Ital. J. Quat. Sci., 2011, vol. 24, no. 2, pp. 193–198.

  32. Mlíkovský, J., Early Pleistocene birds of Stránská skála: 1. Musil’s talus cone, Anthropos, 1995, vol. 26, pp. 111–126.

    Google Scholar 

  33. Mlíkovský, J., Cenozoic Birds of the World, Pt. 1: Europe, Praha: Ninox Press, 2002.

  34. Mourer-Chauviré, C., Les oiseaux du Pléistocène moyen et supérieur de France, Docum. Lab. Geol. Fac. Sci. Lyon, 1975, vol. 64, pp. 1–624.

    Google Scholar 

  35. Palacios, C., Wang, P., Wang, N., et al., Genomic variation, population history, and long-term genetic adaptation to high altitudes in Tibetan partridge (Perdix hodgsoniae), Mol. Biol. Evol., 2023, vol. 40: msad214. https://doi.org/10.1093/molbev/msad214

  36. Pavia, M., Göhlich, U.B., and Mourer-Chauviré, C., Description of the type-series of Palaeocryptonyx donnezani Depéret, 1892 (Aves: Phasianidae) with the selection of a lectotype, C. R. Palevol., 2012, vol. 11, pp. 257–263.

    Article  Google Scholar 

  37. Pavlova, E.A., On the geographical variability of gray partridge (Perdix perdix L.) in the USSR, Trudy Zool. Inst. Akad. Nauk SSSR, 1987, vol. 163, pp. 53–70.

    Google Scholar 

  38. Pazonyi, P., Trembeczki, M., Meszaros, L., and Szentesi, Z., Preliminary report on the Early Pleistocene vertebrate sites of Beremend Crystal Cave (Beremend 16, South Hungary) and on their palaeoecological importance, Fragm. Palaeontol. Hung., 2019, vol. 36, pp. 115–140.

    Article  Google Scholar 

  39. Potapova, O.R. and Baryshnikov, G.F., Birds from the Acheulean site in the Treugolnaya Cave in the North Caucasus, Trudy Zool. Inst. Ross. Akad. Nauk, 1993, vol. 249, pp. 48–65.

    Google Scholar 

  40. Potts, G.R., Partridges: Countryside Barometers, London: Collins, 2012.

    Google Scholar 

  41. Sánchez, Marco A., New Iberian Galliformes and reappraisal of some Pliocene and Pleistocene Eurasian taxa, J. Vertebr. Paleontol., 2009, vol. 29, no. 4, pp. 1148–1161.

    Article  Google Scholar 

  42. Spassov, N., The Plio-Pleistocene vertebrate fauna in South-Eastern Europe and the megafaunal migratory waves from the east to Europe, Rev. Paléobiol., 2003, vol. 22, pp. 197–229.

    Google Scholar 

  43. Stewart, J.R., An evolutionary study of some archaeologically significant avian taxa in the Quaternary of the Western Palearctic, BAR Int. Ser., 2007, no. 1653, pp. 1–272.

  44. Tchernov, E., The Pleistocene Birds of Ubeidiya, Jordan Valley. Jerusalem: The Israel Acad. Sci. and Humanities, 1980.

  45. Tesakov, A.S., Frolov, P.D., Titov, V.V., et al., Aminostratigraphical test of the East European Mammal Zonation for the Late Neogene and Quaternary, Quat. Sci. Rev., 2020, vol. 245, 106434. https://doi.org/10.1016/j.quascirev.2020.106434

    Article  Google Scholar 

  46. Tsvelykh, A.N., Revision of the Late Pleistocene and Holocene Galliformes fauna of the mountainous Crimea, Zool. Zh., 2016, vol. 95, no. 11, pp. 1354–1361.

  47. Tugarinov, A.I., New finds of the Pliocene avifauna of Odessa, Dokl. Akad. Nauk SSSR, 1940, vol. 26, pp. 311–313.

    Google Scholar 

  48. Tyrberg, T., Pleistocene Birds of the Palearctic: A Catalogue, Cambridge, Mass.: Nuttall Ornithol. Club, 1998.

    Google Scholar 

  49. Venczel, M., Quaternary Snakes from Bihor (Romania), Oradea: Ţării Crişurilor Museum, 2000.

    Google Scholar 

  50. Voinstvensky, M.A., Fossil avifauna of Ukraine, in Prirodnaya obstanovka i fauna proshlogo (Natural Situation and Fauna of the Past), Kiev: Nauk. Dumka, 1967, vol. 3, pp. 3–75.

  51. Wang, N., Kimball, R.T., Braun, E.L., et al., Ancestral range reconstruction of Galliformes: The effects of topology and taxon sampling, J. Biogeogr., 2017, vol. 44, no. 1, pp. 122–135.

    Article  Google Scholar 

  52. Zelenkov, N.V., Evolution of bird communities in the Neogene of Central Asia, with a review of the fossil record of the Neogene Asian birds, Paleontol. J., 2016a, vol. 50, no. 12, pp. 1421–1433.

    Article  Google Scholar 

  53. Zelenkov, N.V., Revision of non-passeriform birds from Polgardi (Hungary, Upper Miocene): 2. Galliformes, Paleontol. J., 2016b, vol. 50, no. 6, pp. 623–634.

    Article  Google Scholar 

  54. Zelenkov, N.V., Fossil stone shelduck (Tadorna petrina) and shoveler (Spatula praeclypeata sp. nov.)—the oldest Early Pleistocene ducks (Aves: Anatidae) from Crimea, Paleontol. J., 2022, vol. 56, no. 6, pp. 682–692.

    Article  Google Scholar 

  55. Zelenkov, N.V., A new species of sandgrouse (Aves: Pteroclidae) from the Early Pleistocene of the Crimea, Dokl. Biol. Sci., 2023a, vol. 511, no. 1, pp. 264–266.

    Article  CAS  Google Scholar 

  56. Zelenkov, N.V., Unexpected find of a buttonquail (Aves: Charadriiformes: Turnicidae) in the Lower Pleistocene of Crimea, Dokl. Biol. Sci., 2023b, vol. 513, suppl 1, pp. S1–S4.

    Article  CAS  Google Scholar 

  57. Zelenkov, N.V., Grouse (Aves: Phasianidae: Tetraonini) from the Early Pleistocene of Crimea, and the taxonomic status of Lagopus atavus, Paleontol. J., 2024, no. 1, pp. 112–123.

  58. Zelenkov, N.V. and Gorobets, L.V., Revision of Plioperdix (Aves: Phasianidae) from the Plio-Pleistocene of Ukraine, Paleontol. J., 2020, vol. 54, no. 5, pp. 531–541.

    Article  Google Scholar 

  59. Zelenkov, N.V. and Kurochkin, E.N., Neogene phasianids (Aves: Phasianidae) of Central Asia: 2. Genera Perdix, Plioperdix, and Bantamyx, Paleontol. J., 2009, vol. 43, no. 3, pp. 318–325.

    Article  Google Scholar 

  60. Zelenkov, N.V. and Kurochkin, E.N., Class Aves, Iskopaemye reptilii i ptitsy (Fossil Reptiles and Birds), Part 3, Kurochkin, E.N., Lopatin, A.V., and Zelenkov, N.V., Eds., Moscow: GEOS, 2015, pp. 86–290.

    Google Scholar 

  61. Zelenkov, N.V., Lavrov, A.V., Startsev, D.B., et al., A giant early Pleistocene bird from Eastern Europe: unexpected component of terrestrial faunas at the time of early Homo arrival, J. Vertebr. Paleontol., 2019, vol. 39, e1605521.

    Article  Google Scholar 

  62. Zelenkov, N., Palastrova, E., Martynovich, N., et al., A tiny duck (Sibirionetta formozovi sp. nov.), a giant grey partridge (Titanoperdix felixi gen. et sp. nov.), a new rail (Porzana payevskyi sp. nov.), and other birds from the Early Pleistocene of Baikalian Siberia, Biol. Comm., 2023, vol. 68, pp. 261–272.

    Article  Google Scholar 

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ACKNOWLEDGMENTS

The author is grateful to Academician A.V. Lopatin and A.V. Lavrov (Paleontological Institute, Russian Academy of Sciences), D.O. Gimranov (Institute of Plant and Animal Ecology, Ural Branch, Russian Academy of Sciences), and D.B. Startsev (Crimean Vernadsky Federal University) for collecting and transferring the fossil bird remains from the Taurida Cave, as well as to Z. Bocheński (Institute of Systematics and Evolution of Animals, Krakow) and L. Gorobets (National Museum of Natural History, Kyiv) for assistance in working with collections of fossil birds and Z. Boev (National Museum of Natural History, Sofia) and N.V. Martynovich (Museum of the World Ocean, Kaliningrad) for reviews.

Funding

The study was supported by a grant from the Russian Science Foundation, no. 22-14-00214, https://rscf.ru/project/22-14-00214/.

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PIN RAS, Borissiak Paleontological Institute, Russian Academy of Sciences, Moscow.

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Zelenkov, N.V. Gray Partridges (Phasianidae: Genera Perdix and Enkuria gen. nov.) from the Early Pleistocene of Crimea and Remarks on the Evolution of the Genus Perdix. Paleontol. J. 58, 335–352 (2024). https://doi.org/10.1134/S0031030124700084

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