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Population subdivision in westslope cutthroat trout ( Oncorhynchus clarki lewisi ) at the northern periphery of its range: evolutionary inferences and conservation implications

E. B. Taylor; M. D. Stamford; J. S. Baxter
Molecular Ecology · Vol. 12, Issue 10 · pp. 2609-2622 · 2003

Abstract

Westslope cutthroat trout ( Oncorhynchus clarki lewisi , Salmonidae) are native to the upper Columbia, Missouri, and South Saskatchewan river drainages of western North America and are at the northern periphery of their range in southeastern British Columbia, Canada. We examined geographical variation in allele frequencies at eight microsatellite loci in 36 samples of westslope cutthroat trout from British Columbia to assess levels of population subdivision and to test the hypothesis that different habitat types (principally mainstem vs. above migration barrier habitats) would influence levels of genetic diversity, genetic divergence among populations, and attainment of equilibrium between gene flow and genetic drift. Across all samples, the mean number of alleles per locus was 3.9 and mean expected heterozygosity was 0.56. Population subdivision was extensive with an overall F st (θ) of 0.32. Populations sampled above migration barriers had significantly fewer alleles, lower expected heterozygosity, but greater average pairwise F st than populations sampled from mainstem localities. We found evidence for isolation‐by‐distance from a significant correlation between genetic distance and geographical distance ( r = 0.31), but the pattern was much stronger ( r = 0.51) when above barrier populations and a population that may have been involved in headwater exchanges were removed. By contrast, isolation‐by‐distance was not observed when only above barrier populations were tested among themselves. Our data support the maintenance of separate demographic management strategies for westslope cutthroat trout inhabiting different river systems and illustrate how differing habitat structure (e.g. presence of migration barriers) may influence patterns of biodiversity and gene flow‐drift equilibrium.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2003-10-01
Publication Year2003
Volume12
Issue10
Pages2609-2622
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1046/j.1365-294x.2003.01937.x
SubjectEcology & Organismal Biology

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
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