Subspecies limits based on morphometry and mitochondrial DNA genomics in a polytypic species, the common grackle, Quiscalus quiscula

Author:

Capainolo Peter12,Perktaş Utku13,ElverıCı Can3,Fellowes Mark D E2ORCID

Affiliation:

1. Division of Vertebrate Zoology, Department of Ornithology, American Museum of Natural History , Central Park West @ 79th Street, New York, NY 10024-5192 , USA

2. People and Wildlife Research Group, School of Biological Sciences, University of Reading , Whiteknights, Reading RG6 6AS , UK

3. Department of Biology (Zoology Section, Biogeography Research Laboratory), Faculty of Science, Hacettepe University , Beytepe, 06800, Ankara , Turkey

Abstract

Abstract Nearctic migratory songbirds have demonstrated low levels of genetic differentiation and weak phylogeographical structure in mitochondrial DNA lineages compared with resident species. The common grackle, Quiscalus quiscula, is a widespread, partially migratory, North American icterid composed of three currently recognized subspecies. In this study, mensural characters (external and skeletal measurements) and the complete mitochondrial genome together with two mitochondrial genes, Cytb and ND2, were used to investigate subspecific differentiation and demographic history of the common grackle. The results showed substantial variation in body size among subspecies, mostly distributed between the ‘Florida grackle’, Quiscalus quiscula quiscula, and the two other subspecies. Analysis of mitochondrial DNA indicated low levels of genetic variation, but we found distinct haplotypes in Florida that form a clade in the phylogenetic tree. This suggests that the nominate subspecies in Florida is a distinct evolutionary unit. The sharing of haplotypes among the other subspecies (Quiscalus quiscula versicolor and Quiscalus quiscula stonei) in the north suggests high levels of gene flow, making the status of these two subspecies equivocal. Gene flow between nominate Q. q. quiscula, Q. q. versicolor and putative Q. q. stonei is probably attributable to historical changes in distribution and abundance following climate change events. We therefore recognize only two subspecies in the common grackle complex.

Publisher

Oxford University Press (OUP)

Subject

Ecology, Evolution, Behavior and Systematics

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