Abstract
The Neotropical avian genus Thraupis (Passeriformes, Thraupidae) currently comprises seven species that are widespread and abundant throughout their ranges. However, no phylogenetic hypothesis with comprehensive intraspecific sampling is available for the group and, therefore, currently accepted species limits remain untested. We obtained sequence data for two mitochondrial (ND2, cyt-b) and three non-coding nuclear (TGFB2, MUSK, and βF5) markers from 118 vouchered museum specimens. We conducted population structure and coalescent-based species-tree analyses using a molecular clock calibration. We integrated these results with morphometric and coloration analyses of 1,003 museum specimens to assess species limits within Thraupis. Our results confirm that Thraupis is a monophyletic group and support its origin in the late Miocene and subsequent diversification during the Pleistocene. However, we found conflicts with previous phylogenies. We recovered Thraupis glaucocolpa to be sister to all other species in the genus, and T. cyanoptera to the remaining five species. Our phylogenetic trees and population structure analyses uncovered phylogeographic structure within Thraupis episcopus that is congruent with geographic patterns of phenotypic variation and distributions of some named taxa. The first genetic and phenotypic cluster in T. episcopus occurs east of the Andes and is diagnosed by the white patch on the lesser and median wing coverts, whereas the second group has a blue patch on the wing and distributes to the west of Colombia’s eastern Andes. Finally, we present evidence of hybridization and ongoing gene flow between several taxa at different taxonomic levels and discuss its taxonomic implications.
Funder
Fundação de Amparo à Pesquisa do Estado de São Paulo
American Museum of Natural History
Conselho Nacional de Desenvolvimento Científico e Tecnológico
Publisher
Public Library of Science (PLoS)
Reference93 articles.
1. Sixtieth Supplement to the American Ornithological Society’s Check-list of North American Birds;RT Chesser;Auk,2019
2. A Classification of the Bird Species of South America.;J Van Remsen;In: American Ornithological Society [Internet].,2021
3. Mitochondrial genomes and thousands of ultraconserved elements resolve the taxonomy and historical biogeography of the Euphonia and Chlorophonia finches (Passeriformes: Fringillidae).;TS Imfeld;Auk,2020
4. Evolution into and out of the Andes: a bayesian analysis of historical diversification in Thamnophilus Antshrikes;RT Brumfield;Evolution (N Y).,2007
5. Climate, habitat associations and the potential distributions of Neotropical birds: Implications for diversification across the Andes.;CD Cadena;Rev la Acad Colomb Ciencias Exactas, Físicas y Nat.,2016