Mitochondrial DNA variation of the striped hyena (Hyaena hyaena) in Algeria and further insights into the species’ evolutionary history

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This study analyzes mitochondrial DNA variation in Algerian striped hyenas to clarify their evolutionary history and population structure within North Africa.

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The study examined mitochondrial DNA variation in striped hyenas, focusing on Algerian samples and incorporating additional geographic samples to compare with the only previous species-wide mitochondrial DNA study. Using a range of phylogeographic and demographic history analyses, the authors found that the Algerian population was monomorphic, and that global patterns were partially consistent with population growth in the Late Pleistocene. However, many demographic analyses did not detect significant growth, which the authors attribute to limited statistical power from a small number of segregating mitochondrial DNA sites. Estimated TMRCA values from three methods clustered around ~400,000 years, aligning with a long warm interglacial period and environmental conditions similar to the Holocene. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

The striped hyena ( Hyaena hyaena ) occurs in a wide range from north and east Africa, through southwest Asia to India, but its distribution is increasingly patchy and many of its populations are in decline due to intense human pressure. Its genetic diversity and structure, phylogeography, and evolutionary history, remain poorly understood. In this study, we investigated mitochondrial DNA variation in Algerian striped hyenas. Moreover, with the aim of contributing to our understanding of the evolutionary history of the species, we also examined samples from other geographic regions and compared our results with those of the only previous study in which individuals from across the range of the species were analysed. In particular, we performed a wide range of analyses of demographic history and estimation of the age of the extant mitochondrial DNA variation. The Algerian population sample was monomorphic. Overall, the global patterns of genetic diversity and the results of some demographic history analyses supported a scenario of population growth in the species, estimated to have occurred in the Late Pleistocene, but many of the analyses did not detect a significant signal of growth, most likely a result of the limited power provided by a small number of segregating sites. The estimates, from three different methods, for the time to the most recent common ancestor (TMRCA) of the mitochondrial DNA variation hovered around 400 ka, coinciding with one of the longest and warmest interglacials of the last 800,000 years, with environmental conditions similar to the Holocene.
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Abstract The striped hyena (Hyaena hyaena) occurs in a wide range from north and east Africa, through southwest Asia to India, but its distribution is increasingly patchy and many of its populations are in decline due to intense human pressure. Its genetic diversity and structure, phylogeography, and evolutionary history, remain poorly understood. In this study, we investigated mitochondrial DNA variation in Algerian striped hyenas. Moreover, with the aim of contributing to our understanding of the evolutionary history of the species, we also examined samples from other geographic regions and compared our results with those of the only previous study in which individuals from across the range of the species were analysed. In particular, we performed a wide range of analyses of demographic history and estimation of the age of the extant mitochondrial DNA variation. The Algerian population sample was monomorphic. Overall, the global patterns of genetic diversity and the results of some demographic history analyses supported a scenario of population growth in the species, estimated to have occurred in the Late Pleistocene, but many of the analyses did not detect a significant signal of growth, most likely a result of the limited power provided by a small number of segregating sites. The estimates, from three different methods, for the time to the most recent common ancestor (TMRCA) of the mitochondrial DNA variation hovered around 400 ka, coinciding with one of the longest and warmest interglacials of the last 800,000 years, with environmental conditions similar to the Holocene. Competing Interest Statement The authors have declared no competing interest. Footnotes Correction of one result (time since expansion in years in the IPHULA analysis), plus some minor text revisions.

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