Data from: Genetic differentiation of eastern wolves in Algonquin Park despite bridging gene flow between coyotes and grey wolves ...

Distinguishing genetically differentiated populations within hybrid zones and determining the mechanisms by which introgression occurs are crucial for setting effective conservation policy. Extensive hybridization among grey wolves (Canis lupus), eastern wolves (C. lycaon) and coyotes (C. latrans) i...

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Bibliographic Details
Main Authors: Rutledge, L. Y., Garroway, C. J., Loveless, K. M., Patterson, B. R.
Format: Dataset
Language:English
Published: Dryad 2014
Subjects:
Online Access:https://dx.doi.org/10.5061/dryad.q9d6s
https://datadryad.org/stash/dataset/doi:10.5061/dryad.q9d6s
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Summary:Distinguishing genetically differentiated populations within hybrid zones and determining the mechanisms by which introgression occurs are crucial for setting effective conservation policy. Extensive hybridization among grey wolves (Canis lupus), eastern wolves (C. lycaon) and coyotes (C. latrans) in eastern North America has blurred species distinctions, creating a Canis hybrid swarm. Using complementary genetic markers, we tested the hypotheses that eastern wolves have acted as a conduit of sex-biased gene flow between grey wolves and coyotes, and that eastern wolves in Algonquin Provincial Park (APP) have differentiated following a history of introgression. Mitochondrial, Y chromosome and autosomal microsatellite genetic data provided genotypes for 217 canids from three geographic regions in Ontario, Canada: northeastern Ontario, APP and southern Ontario. Coyote mitochondrial DNA (mtDNA) haplotypes were common across regions but coyote-specific Y chromosome haplotypes were absent; grey wolf mtDNA was ... : Structure Assignment and Microsatellite ScoresThis file contains raw micro satellite scores and the Q value probability of assignment (mean of 10 runs in Structure) to each of the three identified clusters as described in the manuscript.Rutledge et al. 2010 Heredity K ...