Pliocene–Early Pleistocene Geological Events Structure Pacific Martens (Martes caurina)

Author:

Schwartz Michael K1ORCID,Walters Ashley D1ORCID,Pilgrim Kristine L1,Moriarty Katie M2,Slauson Keith M3ORCID,Zielinski William J31,Aubry Keith B4,Sacks Benjamin N5ORCID,Zarn Katherine E1,Quinn Cate B5ORCID,Young Michael K1

Affiliation:

1. USDA Forest Service, National Genomics Center for Wildlife and Fish Conservation, Missoula, MT

2. National Council for Air and Stream Improvement, Inc., Corvallis, OR

3. USDA Forest Service, Pacific Southwest Research Station, Arcata, CA

4. USDA Forest Service, Pacific Northwest Research Station, Olympia, WA

5. Mammalian Ecology and Conservation Unit, Veterinary Genetics Laboratory, University of California, Davis, Davis, CA

Abstract

AbstractThe complex topography, climate, and geological history of Western North America have shaped contemporary patterns of biodiversity and species distributions in the region. Pacific martens (Martes caurina) are distributed along the northern Pacific Coast of North America with disjunct populations found throughout the Northwestern Forested Mountains and Marine West Coast Forest ecoregions of the West Coast. Martes in this region have been classified into subspecies; however, the subspecific designation has been extensively debated. In this study, we use genomic data to delineate conservation units of Pacific marten in the Sierra-Cascade-Coastal montane belt in the western United States. We analyzed the mitochondrial genome for 94 individuals to evaluate the spatial distribution and divergence times of major lineages. We further genotyped 401 individuals at 13 microsatellite loci to investigate major patterns of population structure. Both nuclear and mitochondrial DNA suggest substantial genetic substructure concordant with historical subspecies designations. Our results revealed that the region contains 2 distinct mitochondrial lineages: a Cascades/Sierra lineage that diverged from the Cascades/coastal lineage 2.23 (1.48–3.14 mya), consistent with orogeny of the Cascade Mountain chain. Interestingly, Pacific Martes share phylogeographic patterns similar with other sympatric taxa, suggesting that the complex geological history has shaped the biota of this region. The information is critical for conservation and management efforts, and further investigation of adaptive diversity is warranted following appropriate revision of conservation management designations.

Funder

USDA Forest Service Northern Region

Rocky Mountain Research Station

Pacific Northwest Research Station

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,Biotechnology

Reference99 articles.

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