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Systematic status of Asian “Pterodon” and early evolution of hyaenaelurine hyaenodontid creodonts

Published online by Cambridge University Press:  14 July 2015

N. Egi
Affiliation:
1Japan Monkey Centre, Inuyama, Aichi 484-0081, Japan,
T. Tsubamoto
Affiliation:
2Primate Research Institute, Kyoto University, Inuyama, Aichi 484-8506, Japan
M. Takai
Affiliation:
2Primate Research Institute, Kyoto University, Inuyama, Aichi 484-8506, Japan

Abstract

We establish a new genus of a hyaenaelurine hyaenodontid (Creodonta: Mammalia), Orienspterodon for “Pterodon” dahkoensis, which is known from three late middle Eocene localities in central and southern China and Myanmar. This paper provides a full description of the species and a comment on the early evolution of Hyaenaelurinae. Some features of Orienspterodon (p2–p3 without an anterior accessory cuspulid, lesser reduction of the m3 talonid relative to m1–m2 talonids, double-rooted P3, and better fusion of the paracone and metacone on M1) confirm that O. dahkoensis is distinct from Pterodon. Orienspterodon differs from the other specialized hyaenodontids from the Paleogene of Asia in being a hyaenaelurine, in being unrelated to Hyaenodon, and in having a geographical distribution in the southern part of the continent. Orienspterodon represents the earliest fossil records of Hyaenaelurinae, and some features (small metaconid on m3, basined talonid on all lower molars, a short and more diagonally oriented metastyle, large size, better fused paracone and metacone) indicate an early branching of this genus from the other hyaenaelurines.

Type
Research Article
Copyright
Copyright © The Paleontological Society 

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References

Andrews, C. W. 1903. Notes on an expedition to the Fayum, Egypt, with descriptions of some new mammals. Geological Magazine, 4:337343.CrossRefGoogle Scholar
Barry, J. C. 1980. Occurrence of a hyaenodontine creodont (Mammalia) in the late Miocene of Pakistan. Journal of Paleontology, 54:11281131.Google Scholar
Biedermann, W. G. A. 1863. Petrefacten aus der Umgegend von Winterthur, Pt. II, Die Braunkohlen von Elgg. Anhang: Hyainailouros sulzeri m. Winterthur, 23 p.Google Scholar
Chow, M. 1975. Some carnivores from the Eocene of China. Vertebrata PalAsiatica, 13:165168. (In Chinese with English summary)Google Scholar
Cope, E. D. 1875. On the supposed Carnivora of the Eocene of Rocky Mountains. Proceedings of the Academy of Natural Sciences, Philadelphia, 27:444448.Google Scholar
Cope, E. D. 1885. The White River beds of Swift Current River, Northwest Territory. American Naturalist, 14:163.Google Scholar
Dashzeveg, D. 1964. On two Oligocene Hyaenodontidae from Erghilyin-Dzo (Mongolian People's Republic). Acta Palaeontologica Polonica, 9:263276.Google Scholar
Dashzeveg, D. 1985. Nouveaux Hyaenodontinae (Creodonta, Mammalia) du Paléogène de Mongolie. Annales de Paléontologie (Vertebrata-Invertebrata), 71:223256.Google Scholar
de Blainville, H. M. D. 1839. Sur l'Hyaenodon leptorhynchus (de Laizer) nouveau genre de Carnassiers fossiles d'Auvergne. Annales français et étrange d'Anatomie et Physiologie, 3:1731.Google Scholar
Egi, N., Holroyd, P. A., Tsubamoto, T., Shigehara, N., Takai, M., Tun, Soe Thura, Aung, Aye Ko, and Soe, Aung Naing. 2004. A new genus and species of hyaenodontid creodont from the Pondaung Formation (Eocene; Myanmar). Journal of Vertebrate Paleontology, 24:502506.CrossRefGoogle Scholar
Egi, N., and Tsubamoto, T. 2000. A preliminary report on carnivorous mammals from Pondaung fauna. Asian Paleoprimatology, 1:103114.Google Scholar
Fischer, P. 1880. Note sur un nouveau genre de mammifère fossile (Apterodon gaudryi) des Phosphorites de Quercy. Bulletin de la Société Géologique de France, 8:288290.Google Scholar
Ginsburg, L. 1980. Hyainailourus sulzeri, mammifère Créodonte du Miocène d'Europe. Annnales de Paléontologie (Vertébrès), 66:1973.Google Scholar
Holroyd, P. A. 1994. An examination of dispersal origins for Fayum Mammalia. Ph.D. dissertation, Duke University, Durham, North Carolina, 328 p.Google Scholar
Holroyd, P. A. 1999. New Pterodontinae (Creodonta: Hyaenodontidae) from the late Eocene-early Oligocene Jebel Qatrani Formation, Fayum province, Egypt. PaleoBios, 19(2):118.Google Scholar
Holroyd, P. A., and Maas, M. C. 1994. Paleogeography, paleobiogeography, and anthropoid origins, p. 297334. In Fleagle, J. G. and Kay, R. F. (eds.), Anthropoid origins. Plenum Press, New York.CrossRefGoogle Scholar
Laizer, L. D. and Parieu, D. 1838 Description et détermination d'une mâchoire fossile appartenant à un mammifère jusqu'à présent inconnu, Hyaenodon leptorhynchus. Comptes Rendus de l'Académie des Sciences Paris, 7:442.Google Scholar
Lange-Badré, B. 1979. Les Créodontes (Mammalia) d'Europe occidentale de l'Éocéne supérieur a l'Oligocene supérieur. Mémoires du Muséum National d'Histoire Naturelle, Série C, Sciences de la Terre, 42, 249 p.Google Scholar
Lange-Badré, B., and Dashzeveg, D. 1989. On some Oligocene carnivorous mammals from Central Asia. Acta Palaeontologica Polonica, 34:125148.Google Scholar
Lange-Badré, B., and Haubold, H. 1990. Les créodontes (Mammifères) du gisement du Geiseltal (Éocène moyen, RDA). Geobios, 23:607637.CrossRefGoogle Scholar
Lavrov, A. V. 1996. A new genus Neoparapterodon (Creodonta, Hyaenodontidae) from the Khaichin-Ula-2 locality (Khaichin Formation, Middle-Upper Eocene, Mongolia) and the systematic position of the Asiatic Pterodon representatives. Paleontological Journal, 30:593604.Google Scholar
Lavrov, A. V. 1999. New material on the Hyaenodontidae (Mammalia, Creodonta) from the Ergiliyn Dzo Formation (late Eocene of Mongolia) and some notes on the system of the Hyaenodontidae. Paleontological Journal, 33:321329.Google Scholar
Lavrov, A. V., and Averianov, A. O. 1998. The oldest Asiatic Hyaenodontidae (Mammalia, Creodonta) from the early Eocene of the southern Fergana Basin (Andarak-2 locality). Paleontological Journal, 32:200205.Google Scholar
Legendre, S., and Roth, C. 1988. Correlation of carnassial tooth size and body weight in Recent carnivores (Mammalia). Historical Biology, 1:8598.CrossRefGoogle Scholar
Leidy, J. 1869. The extinct mammalian fauna of Dakota and Nebraska. Journal of the Academy of Natural Sciences of Philadelphia, 7, 472 p.Google Scholar
Li, C., and Ting, S. 1983. The Paleogene mammals of China. Bulletin of Carnegie Museum of Natural History, 21:193.CrossRefGoogle Scholar
Linnaeus, C. 1758. Systema Naturae (tenth edition). Laurentii Salvii, Holmiae, 823 p.Google Scholar
MacDonald, D. 2001. The Encyclopedia of Mammals (second edition). Volume I. Carnivores and Sea Mammals. Facts on File, New York, 289 p.Google Scholar
Martin, R. 1906. Revision der obereocänen und unteroligocänen Creodonten Europas. Revue suisse de Zoologie, 14:405600.CrossRefGoogle Scholar
Matthes, H. W. 1967. Erstmaliger Nachweis eines Vertreters der Oxyaeninae Trouessart 1885 (Creodonta) in Europa. Geologie, 16:452456.Google Scholar
Matthew, W. D., and Granger, W. 1925. New mammals from the Shara Murun Eocene of Mongolia. American Museum Novitates, 196, 11 p.Google Scholar
McKenna, M. C., and Bell, S. K. 1997. Classification of Mammals above the Species Level. Columbia University Press, New York, 631 p.Google Scholar
Mellett, J. S. 1977. Paleobiology of North American Hyaenodon (Mammalia, Creodonta). Contributions to Vertebrate Evolution, 1, 134 p.Google Scholar
Meng, J., and McKenna, M. C. 1998. Faunal turnovers of Paleogene mammals from the Mongolian Plateau: Nature, 394:364367.CrossRefGoogle Scholar
Morales, J., Pickford, M., and Soria, D. 1998. A new creodont Metapterodon stromeri nov. sp. (Hyaenodontidae, Mammalia) from the early Miocene of Langental (Sperrgebiet, Nambia). Comptes Rendus de l'Academie des Sciences, Paris, Sciences de la terre et des planètes 327:633638.Google Scholar
Morlo, M., and Habersetzer, J. 1999. The Hyaenodontidae (Creodonta, Mammalia) from the lower middle Eocene (MP11) of Messel (Germany) with special remarks on new x-ray methods. Courier Forschungsinstitut Senckenberg, 216:3173.Google Scholar
Osborn, H. F. 1909. New carnivorous mammals from the Fayum Oligocene, Egypt. Bulletin of the American Museum of Natural History, 26:415424.Google Scholar
Pilgrim, G. E. 1932. The fossil Carnivora of India. Palaeontologia Indica, n.s. 18, 232 p.Google Scholar
Polly, P. D. 1993. Hyaenodontidae (Creodonta, Mammalia) and the position of systematics in evolutionary biology. Ph.D. dissertation, University of California, Berkeley, 283 p.Google Scholar
Polly, P. D. 1996. The skeleton of Gazinocyon vulpeculus gen. et comb. nov. and the cladistic relationships of Hyaenodontidae (Eutheria, Mammalia). Journal of Vertebrate Paleontology, 16:303319.CrossRefGoogle Scholar
Qi, T., Beard, K. C., Wang, B., Dawson, M. R., Guo, J., and Li, C. 1996. The Shanghuang mammalian fauna, middle Eocene of Jiangsu: History of discovery and significance. Vertebrata PalAsiatica, 34:202214.Google Scholar
Russell, D. E., and Zhai, R. 1987. The Paleogene of Asia: Mammals and stratigraphy. Mémoires du Muséum National d'Histoire Naturelle, série C, Sciences de la Terre, 52, 488 p.Google Scholar
Savage, R. J. G. 1965. Fossil mammals of Africa: 19. The Miocene Carnivora of East Africa. Bulletin of the British Museum (Natural History), Geology, 10:239316.Google Scholar
Savage, R. J. G. 1973. Megistotherium, gigantic hyaenodont from Miocene of Gebel Zelten, Libya. Bulletin of the British Museum (Natural History), Geology, 22:485511.CrossRefGoogle Scholar
Savage, R. J. G. 1978. Carnivora, p. 299330. In Maglio, V. J. and Cooke, H. B. S. (eds.), Evolution of African Mammals. Harvard University Press, Cambridge.Google Scholar
Shi, R. 1989. Late Eocene mammalian fauna of Huangzhuang, Qufu, Shandong. Vertebrata PalAsiatica, 27:87102.Google Scholar
Stromer, E. 1926. Reste Land- und Süsswasser-Bewohnender Wirbeltiere aus den Diamant-feldern Deutsch-Südwestafrikas, p. 107153. In Kaiser, E. (ed.), Die Diamantwüste Südwestafrikas, Volume 2, Berlin.Google Scholar
Tong, Y. 1989. A review of middle and Eocene mammalian faunas from China. Acta Palaeontologia Sinica, 28:663682. (In Chinese with English summary)Google Scholar
Tsubamoto, T. 2001. The Pondaung mammal fauna: An analysis of a terrestrial mammal fauna in the latest middle Eocene of central Myanmar (Southeast Asia). D. Sc dissertation, Kyoto University, Kyotom, 112 p. + 20 pls. + 58 p. (for appendices).Google Scholar
Tsubamoto, T., Egi, N., Takai, M., Sein, Chit, and Maung, Maung. 2005. Middle Eocene ungulate mammals from Myanmar: A review with description of new specimens. Acta Palaeontologica Polonica, 50:117138.Google Scholar
Tsubamoto, T., Takai, M., and Egi, N. 2004. Quantitative analyses of the middle to late Eocene mammalian faunas in East Asia and inferences on regional differentiation of faunal evolution. Journal of Vertebrate Paleontology, 24:657667.CrossRefGoogle Scholar
Tsubamoto, T., Takai, M., Shigehara, N., Egi, N., Tun, Soe Thura, Aung, Aye Ko, Maung, Maung, Danhara, T., and Suzuki, H. 2002. Fissiontrack zircon age of the Eocene Pondaung Formation, Myanmar. Journal of Human Evolution, 42:361369.CrossRefGoogle ScholarPubMed
Van Valen, L. 1967. New Paleocene indectivores and insectivore classification. Bulletin of the American Museum of Natural History, 132:221284.Google Scholar
Van Valkenburgh, B. 1990. Skeletal and dental predictors of body mass in carnivores, p. 181206. In Damuth, J. and MacFadden, B. J. (eds.), Body Size in Mammalian Paleobiology: Estimation and Biological Implications. Cambridge University Press, New York.Google Scholar
Van Valkenburgh, B. 1994. Extinction and replacement among predatory mammals in the North American Late Eocene and Oligocene: Tracking a paleoguild over twelve million years. Historical Biology, 8:122.CrossRefGoogle Scholar
Wang, X., Qiu, Z., and Wang, B. 2005. Hyaenodonts and carnivorans from the early Oligocene to early Miocene of Xianshuihe Formation, Lanzhou Basin, Gansu Province, China. Palaeontologia Electronica, 8:114.Google Scholar