4.6 Article

Systematics and phylogeny of the Zygodactylidae (Ayes, Neognathae) with description of a new species from the early Eocene of Wyoming, USA

期刊

PEERJ
卷 6, 期 -, 页码 -

出版社

PEERJ INC
DOI: 10.7717/peerj.4950

关键词

Avian evolution; Fossil birds; Stem passeriform; Zygodactylus; Primozygodactylus; Eozygodactylus; Green River Formation; Zygodactylus grandei; Primoscens

资金

  1. National Science Foundation [EAR 0719943/ 0938199]
  2. University of Texas at Austin
  3. National Evolutionary Synthesis Center (NESCent) [NSF EF-0905606]
  4. John Caldwell Meeker Postdoctoral Fellowship at the Field Museum of Natural History

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Zygodactylidae are an extinct lineage of perching birds characterized by distinct morphologies of the foot and wing elements. Although the Glade has a complex taxonomic history, current hypotheses place Zygodactylidae as the sister taxon to Passeriformes (i.e., songbirds). Given the rather sparse fossil record of early passeriforms, the description of zygodactylid taxa is important for inferring potentially ancestral states in the largest radiation of living birds (i.e., the similar to 6,000 species of extant passeriforms). Despite the exceptional preservation of many specimens and considerable species diversity in Zygodactylidae, the relationships among species have not been previously evaluated in a phylogenetic context. Herein, we review the fossil record of Zygodactylidae from North America and describe five new well-preserved fossils from the early Eocene Green River Formation of Wyoming. Two specimens are identified as representing a new species and the first records of the taxon Zygodactylus outside Europe. Anatomical comparisons with previously named taxa and the results of phylogenetic analysis including newly described specimens and previously named zygodactylid taxa provide the first hypothesis of the species-level relationships among zygodactylids. The monophyly of Zygodactylidae is supported in these new analyses. However, the monophyly of Primozygodactylus and the taxonomic distinction between Zygodactylus and Eozygodactylus remain unresolved and would likely benefit from the description of additional specimens.

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