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Original Articles

Taxonomical reappraisal of Cathayornithidae (Aves: Enantiornithes)

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Pages 29-47 | Received 06 May 2014, Accepted 19 Nov 2014, Published online: 19 Jan 2015

References

  • Baumel, J. J. & Witmer, L. M. 1993. Osteologia. Pp. 45–132 in J. J. Baumel, A. S. King, J. E. Breazile, H. E. Evans & J. C. Vanden Berge (eds) Handbook of Avian anatomy: Nomina Anatomica Avium, 2nd edition. Nuttall Ornithological Club, Cambridge.
  • Cau, A. & Arduini, P. 2008. Enantiophoenix electrophyla gen. et sp. nov. (Aves, Enantiornithes) from the Upper Cretaceous (Cenomanian) of Lebanon and its phylogenetic relationship. Atti della Società Italiana di Scienze Naturali e del Museo Civico di Storia Naturale di Milano, 149, 293–324.
  • Chiappe, L. M. 1993. Enantiornithine (Aves) tarsometatarsi from the Cretaceous Lecho Formation of northwestern Argentina. American Museum Novitates, 3083, 1–27.
  • Chiappe, L. M. & Walker, C. A. 2002. Skeletal morphology and systematics of the Cretaceous Euenantiornithes (Ornithothoraces: Enantiornithes). Pp. 240–267 in L. M. Chiappe & L. M. Witmer (eds) Mesozoic Birds: Above the Heads of Dinosaurs. University of California Press, Berkeley.
  • Chiappe, L. M., Ji, S. & Ji, Q. 2007a. Juvenile birds from the Early Cretaceous of China: Implications for enantiornithine ontogeny. American Museum Novitates, 3594, 1–46.
  • Chiappe, L. M., James, J., Lamb, P. & Erickson, P. G. P. 2002. New enantiornithine bird from the marine Upper Cretaceous of Alabama. Journal of Vertebrate Paleontology, 22, 170–174.
  • Chiappe, L. M., Ji, S., Ji, Q. & Norell, M. A. 1999. Anatomy and systematics of the Confuciusornithidae (Theropoda: Aves) from the Late Mesozoic of northeastern China. Bulletin of American Museum of Natural History, 242, 1–89.
  • Chiappe, L. M., Suzuki, S., Dyke, G. J., Watabe, M., Tsogtbaatar, K. & Barsbold, R. 2007b. A new enantiornithine bird from the Late Cretaceous of the Gobi desert. Journal of Systematic Palaeontology, 5, 193–208.
  • Clarke, J. A., Zhou, Z. & Zhang, F. 2006. Insight into the evolution of avian flight from a new clade of Early Cretaceous ornithurines from China and the morphology of Yixianornis grabaui. Journal of Anatomy, 208, 287–308.
  • Gao, C., Chiappe, L. M., Meng, Q., O'Connor, J. K., Wang, X., Cheng, X. & Liu, J. 2008. A new basal lineage of Early Cretaceous birds from China and its implications on the evolution of the avian tail. Palaeontology, 51, 775–791.
  • Goloboff, P. A., Farris, J. S. & Nixon, K. C. 2008. TNT: Tree analysis Using New Technology, version1.1 (Willi Hennig Society Edition). Program and documentation available at http://www.zmuc.dk/public/phylogeny/tnt.
  • Hou, L. 1997. Mesozoic birds of China. Feng-Huang-Ku Bird Park of Taiwan, Nantou County, 228 pp.
  • Hou, L., Chiappe, L. M., Zhang, F. & Chuong, C. 2004. New Early Cretaceous fossil from China documents a novel trophic specialization for Mesozoic birds. Naturwissenschaften, 91, 22–25.
  • Howard, H. 1929. The avifauna of Emeryville shell mound. University of California. Publications in Zoology, 32, 301–394.
  • Ji, S., Atterholt, J., O'Connor, J. K., Lamanna, M. C., Harris, J. D., Li, D. Q., You, H. & Dodson, P. 2011. A new, three-dimensionally preserved enantiornithine bird (Aves: Ornithothoraces) from Gansu Province, north-western China. Zoological Journal of the Linnean Society, 162, 201–219.
  • Lamanna, M. C., You, H., Harris, J. D., Chiappe, L. M., Ji, S., Chang, L. & Ji, Q. 2006. A partial skeleton of an enantiornithine bird from the Early Cretaceous of northwestern China. Acta Palaeontologica Polonica, 51, 423–433.
  • Li, J., Li, Z., Zhang, Y., Zhou, Z., Bai, Z., Zhang, L. & Ba, T. 2008. A new species of Cathayornis from Lower Cretaceous of Inner Mongolia, China and its stratigraphic significance. Acta Geologica Sinica, 82, 1115–1123.
  • Longrich, N. R., Tokaryk, T. & Field, D. J. 2011. Mass extinction of birds at the Cretaceous-Paleogene (K-Pg) boundary. Proceedings of the National Academy of Sciences of the United States of America, 108, 15253–15257.
  • Novas, F. E., Agnolín, F. L. & Scanferla, C. A. 2010. New enantiornithine bird (Aves, Ornithothoraces) from the Late Cretaceous of NW Argentina. Comptes Rendus Palevol, 9, 499–503.
  • O'Connor, J. K. 2009. A systematic review of Enantiornithes (Aves: Ornithothoraces). Unpublished Ph.D. thesis, University of Southern California, 600 pp.
  • O'Connor, J. K. & Chiappe, L. M. 2011. A revision of enantiornithine (Aves: Ornithothoraces) skull morphology. Journal of Systematic Palaeontology, 9, 135–157.
  • O'Connor, J. K. & Dyke, G. 2010. A reassessment of Sinornis santensis and Cathayornis yandica (Aves: Enantiornithes). Records of the Australian Museum, 62, 7–20.
  • O'Connor, J. K. & Zhou, Z. 2013. A redescription of Chaoyangia beishanensis (Aves) and a comprehensive phylogeny of Mesozoic birds. Journal of Systematic Palaeontology, 11, 889–906.
  • O'Connor, J. K., Zhou, Z. & Zhang, F. 2011a. A reappraisal of Boluochia zhengi (Aves: Enantiornithes) and a discussion of intraclade diversity in the Jehol avifauna, China. Journal of Systematic Palaeontology, 9, 51–63.
  • O'Connor, J. K., Chiappe, L. M., Gao, C. & Zhao, B. 2011b. Anatomy of the Early Cretaceous enantiornithine bird Rapaxavis pani. Acta Palaentologica Polonica, 56, 463–475.
  • O'Connor, J. K., Zhang, Y., Chiappe, L. M., Meng, Q. Liz, Q. & Liu, D. 2013. A new enantiornithine from the Yixian Formation with the first recognized avian enamel specialization. Journal of Vertebrate Paleontology, 33, 1–12.
  • O'Connor, J. K., Wang, X., Chiappe, L. M., Gao, C., Meng, Q., Cheng, X. & Liu, J. 2009. Phylogenetic support for a specialized clade of Cretaceous enantiornithine birds with information from a new species. Journal of Vertebrate Paleontology, 29, 188–204.
  • Pol, D. & Escapa, I. H. 2009. Unstable taxa in cladistic analysis: identification and the assessment of relevant characters. Cladistics, 25, 515–527.
  • Sanz, J. L., Chiappe, L. M., Bernardino, P. P. M., Angela, D. B. & Jose, J. P. A. 1996. An early Cretaceous bird from Spain and its implications for the evolution of avian flight. Nature, 382, 442–445.
  • Sanz, J. L., Perez-Moreno, B. P., Chiappe, L. M. & Buscalioni, A. 2002. The birds from the Lower Cretaceous of Las Hoyas (Province of Cuenca, Spain). Pp. 209–229 in L. M. Chiappe & L. M. Witmer (eds) Mesozoic Birds: Above the Heads of Dinosaurs. University of California Press, Berkeley.
  • Sereno, P. C. & Rao, C. 1992. Early evolution of avian flight and perching: New evidence from the Lower Cretaceous of China. Science, 255, 845–848.
  • Sereno, P. C., Rao, C. & Li, J. 2002. Sinornis santensis (Aves: Enantiornithes) from the Early Cretaceous of Northeastern China; pp. 184–208 in L. M. Chiappe & L. M. Witmer (eds) Mesozoic Birds: Above the Heads of Dinosaurs. University of California Press, Berkeley.
  • Starck, J. M. 1993. Evolution of avian ontogenies. Pp. 275–366 in D. M. Power (ed.) Current Ornithology, Volume 10. Plenum, New York.
  • Walker, C. A. & Dyke, G. J. 2009. Euenantiornithine birds from the Late Cretaceous of El Brete (Argentina). Irish Journal of Earth Sciences, 27, 15–62.
  • Wang, X., O'Connor, J. K., Zhao, B., Chiappe, L. M., Gao, C. & Cheng, X. 2010. New species of Enantiornithes (Aves: Ornithothoraces) from the Qiaotou Formation in northern Hebei, China. Acta Geologica Sinica, 84, 247–256.
  • Wang, M. 2014. Taxonomical revision, ontogenetic, habitat and phylogenetic analyses of Enantiornithes (Aves: Ornithothoraces) of China. Unpublished Ph.D. thesis, University of Chinese Academy of Sciences, 464 pp.
  • Wang M., O'Connor, J. K. & Zhou, Z. 2014a. A new robust enantiornithine bird from the Lower Cretaceous of China with scansorial adaptations. Journal of Vertebrate Paleontology, 34, 657–671.
  • Wang, M., Zhou, Z., O'Connor, J. K. & Zelenkov, N. V. 2014b. A new diverse enantiornithine family (Bohaiornithidae fam. nov.) from the Lower Cretaceous of China with information from two new species. Vertebrata Palasiatica, 52, 31–76.
  • Wilkinson, M. 1994. Common cladistic information and its consensus representation: reduced Adams and reduced cladistic consensus trees and profiles. Systematic Biology, 43, 343–368.
  • You, H. L., Atterholt, J., O'Connor, J. K., Harris, J. D., Lamanna, M. C. & Li, D. 2010. A second Cretaceous ornithuromorph bird from the Changma Basin, Gansu Province, northwestern China. Acta Palaeontologica Polonica, 55, 617–625.
  • Zhang, Z., Chiappe, L. M., Han, G. & Chinsamy, A. 2013. A large bird from the Early Cretaceous of China: new information on the skull of enantiornithines. Journal of Vertebrate Paleontology, 33, 1176–1189.
  • Zhang, F. & Zhou, Z. 2000. A primitive enantiornithine bird and the origin of feathers. Science, 290, 1955–1959.
  • Zhang, F., Zhou, Z., Hou, L. & Gu, G. 2001. Early diversification of birds: Evidence from a new opposite bird. Chinese Science Bulletin, 46, 945–949.
  • Zhang, Y., Zhang, L., Li, J. & Li, Z. 2010. A new specimen of cathayornithid from Early Cretaceous of Chabu, Otog Qi in Inner Mongolia and flight ability analysis of this specimen. Geological Bulletin of China, 29, 987–991.
  • Zheng, X., Wang, X., O'Connor, J. K. & Zhou, Z. 2012. Insight into the early evolution of the avian sternum from juvenile enantiornithines. Nature Communication, 3, 1116.
  • Zheng, X., O'Connor, J. K., Huchzermeyer, F., Wang, X., Wang, Y., Wang, M. & Zhou, Z. 2013a. Preservation of ovarian follicles reveals early evolution of avian reproductive behaviour. Nature, 495, 507–511.
  • Zheng, X., Zhou, Z., Wang, X., Zhang, F., Zhang, X., Wang, Y., Wei, G., Wang, S. & Xu, X. 2013b. Hind wings in basal birds and the evolution of leg feathers. Science, 339, 1309–1312.
  • Zheng, X., Martin, L. D., Zhou, Z., Burnham, D. A., Zhang, F. & Miao, D. 2011. Fossil evidence of avian crops from the Early Cretaceous of China. Proceedings of the National Academy of Sciences, 108, 15904–15907.
  • Zhou, S., Zhou, Z. & O'Connor, J. K. 2013. Anatomy of the basal ornithuromorph bird Archaeorhynchus spathula from the Early Cretaceous of Liaoning, China. Journal of Vertebrate Paleontology, 33, 141–152.
  • Zhou, S., Zhou, Z. & O'Connor, J. K. 2014. A new piscivorous ornithuromorph from the Jehol Biota. Historical Biology, 26, 608–618.
  • Zhou, Z. 2002. A new and primitive enantiornithine bird from the Early Cretaceous of China. Journal of Vertebrate Paleontology, 22, 49–57.
  • Zhou, Z. 2004. The origin and early evolution of birds: discoveries, disputes, and perspectives from fossil evidence. Naturwissenschaften, 91, 455–471.
  • Zhou, Z. & Hou L. 2002. The discovery and study of Mesozoic birds in China. Pp. 160–183 in L. M. Chiappe & L. M. Witmer (eds) Mesozoic Birds: Above the Heads of Dinosaurs. University of California Press, Berkeley.
  • Zhou, Z. & Zhang, F. 2006a. Mesozoic birds of China—a synoptic review. Vertebrata Palasiatica, 44, 74–98.
  • Zhou, Z. & Zhang, F. 2006b. A beaked basal ornithurine bird (Aves, Ornithurae) from the Lower Cretaceous of China. Zoologica Scripta, 35, 363–373.
  • Zhou, Z., Chiappe, L. M. & Zhang, F. 2005. Anatomy of the Early Cretaceous bird Eoenantiornis buhleri (Aves: Enantiornithes) from China. Canadian Journal of Earth Sciences, 42, 1331–1338.
  • Zhou, Z., Clarke, J. & Zhang, F. 2008. Insight into diversity, body size and morphological evolution from the largest Early Cretaceous enantiornithine bird. Journal of Anatomy, 212, 565–577.
  • Zhou, Z., Li, Z. & Zhang, F. 2010. A new Lower Cretaceous bird from China and tooth reduction in early avian evolution. Proceedings of the Royal Society, Series B, 277, 219–227.
  • Zhou, Z., Jin, F. & Zhang, J. 1992. Preliminary report on a Mesozoic bird from Liaoning, China. Chinese Science Bulletin, 37, 1365–1368.

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