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. 2018 Apr;29(3):455-473.
doi: 10.1080/24701394.2017.1307973. Epub 2017 Apr 19.

Historical mitochondrial diversity in African leopards (Panthera pardus) revealed by archival museum specimens

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Historical mitochondrial diversity in African leopards (Panthera pardus) revealed by archival museum specimens

Corey Anco et al. Mitochondrial DNA A DNA Mapp Seq Anal. 2018 Apr.

Abstract

Once found throughout Africa and Eurasia, the leopard (Panthera pardus) was recently uplisted from Near Threatened to Vulnerable by the International Union for the Conservation of Nature (IUCN). Historically, more than 50% of the leopard's global range occurred in continental Africa, yet sampling from this part of the species' distribution is only sparsely represented in prior studies examining patterns of genetic variation at the continental or global level. Broad sampling to determine baseline patterns of genetic variation throughout the leopard's historical distribution is important, as these measures are currently used by the IUCN to direct conservation priorities and management plans. By including data from 182 historical museum specimens, faecal samples from ongoing field surveys, and published sequences representing sub-Saharan Africa, we identify previously unrecognized genetic diversity in African leopards. Our mtDNA data indicates high levels of divergence among regional populations and strongly differentiated lineages in West Africa on par with recent studies of other large vertebrates. We provide a reference benchmark of genetic diversity in African leopards against which future monitoring can be compared. These findings emphasize the utility of historical museum collections in understanding the processes that shape present biodiversity. Additionally, we suggest future research to clarify African leopard taxonomy and to differentiate between delineated units requiring monitoring or conservation action.

Keywords: African leopard; Panthera pardus; genetic diversity; museum collections; phylogeography.

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