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. 2008 Oct 8;3(10):e3333.
doi: 10.1371/journal.pone.0003333.

Hybridization among three native North American Canis species in a region of natural sympatry

Affiliations

Hybridization among three native North American Canis species in a region of natural sympatry

Frank Hailer et al. PLoS One. .

Abstract

Background: Population densities of many species throughout the world are changing due to direct persecution as well as anthropogenic habitat modification. These changes may induce or increase the frequency of hybridization among taxa. If extensive, hybridization can threaten the genetic integrity or survival of endangered species. Three native species of the genus Canis, coyote (C. latrans), Mexican wolf (C. lupus baileyi) and red wolf (C. rufus), were historically sympatric in Texas, United States. Human impacts caused the latter two to go extinct in the wild, although they survived in captive breeding programs. Morphological data demonstrate historic reproductive isolation between all three taxa. While the red wolf population was impacted by introgressive hybridization with coyotes as it went extinct in the wild, the impact of hybridization on the Texas populations of the other species is not clear.

Methodology/ principal findings: We surveyed variation at maternally and paternally inherited genetic markers (mitochondrial control region sequence and Y chromosome microsatellites) in coyotes from Texas, Mexican wolves and red wolves from the captive breeding programs, and a reference population of coyotes from outside the historic red wolf range. Levels of variation and phylogenetic analyses suggest that hybridization has occasionally taken place between all three species, but that the impact on the coyote population is very small.

Conclusion/significance: Our results demonstrate that the factors driving introgressive hybridization in sympatric Texan Canis are multiple and complex. Hybridization is not solely determined by body size or sex, and density-dependent effects do not fully explain the observed pattern either. No evidence of hybridization was identified in the Mexican wolf captive breeding program, but introgression appears to have had a greater impact on the captive red wolves.

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Conflict of interest statement

Competing Interests: The authors have declared that no competing interests exist.

Figures

Figure 1
Figure 1. Historic distribution of three species of Canis in Texas.
The region of historic sympatry is shown in black. Diagonal hatching denotes the coyote distribution, light gray shading that of red wolves, and dark gray shading that of Mexican wolves. The vertically striped region in southeastern Texas indicates where the founders of the red wolf captive breeding program were caught in 1974–76 . A: Ca. 1700 C.E. distribution ranges following Carbyn and Young & Goldman . B: Ca. 1500 C.E. distribution ranges based on Nowak .
Figure 2
Figure 2. Phylogeny of mtDNA sequences.
Neighbor-joining phylogeny of mtDNA control region sequences from coyotes from Texas (la), Mexican wolves (lu) and red wolves (ru). Bootstrap support is indicated on branches when over 50%. Single asterisk indicates possible hybrid origin, and double asterisks indicate haplotypes of clear hybrid origin.
Figure 3
Figure 3. Statistical parsimony networks of Y chromosome haplotypes in North American Canis, based on four microsatellites.
Coyote haplotypes are shown in yellow, Alaskan and Canadian gray wolves in white, Mexican wolves in blue, and red wolves in red. Inferred intermediate haplotypes are shown as small open circles. A: Haplotypes with the 208 allele at MS41A, characteristic of the gray wolf lineage. H2 is a haplotype found in a Texas coyote with the 208 allele at locus MS41A. B: Haplotypes with alleles ≥212 at MS41A, characteristic of the coyote lineage. H15 is shared between captive red wolves and coyotes from Texas.

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