Comprehensive Identification and Description of Mitochondrial DNA Haplogroups and Sub-Haplogroups in Snow Sheep (Ovis nivicola) in Support of Their Evolutionary History and Conservation

Mitochondrial DNA is a powerful marker for reconstructing maternal lineages and phylogeographic history in wild species. The snow sheep (Ovis nivicola), a mountain ungulate endemic to Siberia and the Russian Far East, is characterized by strong geographic fragmentation and a complex taxonomic structure. A formal mitochondrial haplogroup classification system for the species has, however, been lacking. In this study, we sequenced and analyzed 257 complete mitochondrial genomes representing all major populations across the species’ range. Using phylogenetic reconstruction and diagnostic mutations (present in 100% of individuals within clades), we identified four major haplogroups (A–D) and multiple nested sub-haplogroups with clear geographic structuring. Divergence times were estimated using Bayesian analysis in BEAST 2.7.7 with a relaxed lognormal clock model, calibrated by the divergence between O. dalli and O. canadensis. The results showed that haplogroup A is almost exclusive to Kamchatka, haplogroup B is predominant in northern populations, haplogroup C is the most widespread and diverse across the species range, and haplogroup D is largely restricted to the Verkhoyansk region. The mitochondrial data largely support traditional subspecies taxonomy but reveal mitochondrial polyphyly in some subspecies, particularly O. n. lydekkeri and O. n. koriakorum. This study provides the first comprehensive mitochondrial haplogroup system for snow sheep and shows that the observed mitochondrial phylogeographic patterns are consistent with an important influence of Pleistocene glacial cycles and prolonged geographic isolation on its current genetic structure. These findings offer important insights for conservation management and for understanding the evolutionary history of wild sheep in Northeast Asia.

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Journal
Animals
Published
2026-09-25
DOI
https://doi.org/10.3390/ani16193018
Primary Topic
Genetic diversity and population structure
Type
article
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Comprehensive Identification and Description of Mitochondrial DNA Haplogroups and Sub-Haplogroups in Snow Sheep (Ovis nivicola) in Support of Their Evolutionary History and Conservation

Michael N Romanov, Veronika Ruslanovna Kharzinova, Darren Karl Griffin, Nekruz Bakoev et al.
Animals
Genetic diversity and population structure
article

Comprehensive Identification and Description of Mitochondrial DNA Haplogroups and Sub-Haplogroups in Snow Sheep (Ovis nivicola) in Support of Their Evolutionary History and Conservation

Michael N Romanov, Veronika Ruslanovna Kharzinova, Darren Karl Griffin, Nekruz Bakoev, Natalia Anatolievna Zinovieva, Д. И. Литовка, Taras P. Sipko, Gottfried Brem, Mikhail Bondar, Tatiana Evgenievna Deniskova, Arsen Vladimirovich Dotsev, Olga A. Koshkina, Nikolay V. Mamaev, Maria N. Semerikova, Andrey A. Sitsko, Innokentiy M. Okhlopkov, Vugar A. Bagirov, Ivica Medugorac
article en

Abstract

Mitochondrial DNA is a powerful marker for reconstructing maternal lineages and phylogeographic history in wild species. The snow sheep (Ovis nivicola), a mountain ungulate endemic to Siberia and the Russian Far East, is characterized by strong geographic fragmentation and a complex taxonomic structure. A formal mitochondrial haplogroup classification system for the species has, however, been lacking. In this study, we sequenced and analyzed 257 complete mitochondrial genomes representing all major populations across the species’ range. Using phylogenetic reconstruction and diagnostic mutations (present in 100% of individuals within clades), we identified four major haplogroups (A–D) and multiple nested sub-haplogroups with clear geographic structuring. Divergence times were estimated using Bayesian analysis in BEAST 2.7.7 with a relaxed lognormal clock model, calibrated by the divergence between O. dalli and O. canadensis. The results showed that haplogroup A is almost exclusive to Kamchatka, haplogroup B is predominant in northern populations, haplogroup C is the most widespread and diverse across the species range, and haplogroup D is largely restricted to the Verkhoyansk region. The mitochondrial data largely support traditional subspecies taxonomy but reveal mitochondrial polyphyly in some subspecies, particularly O. n. lydekkeri and O. n. koriakorum. This study provides the first comprehensive mitochondrial haplogroup system for snow sheep and shows that the observed mitochondrial phylogeographic patterns are consistent with an important influence of Pleistocene glacial cycles and prolonged geographic isolation on its current genetic structure. These findings offer important insights for conservation management and for understanding the evolutionary history of wild sheep in Northeast Asia.

AnimalsVol. 16(19)
University of Veterinary Medicine Vienna (AT), Kasetsart University (TH), University of Kent (GB), Federal Scientific Center for Animal Husbandry named after Academician L.K. Ernst (RU), Taymyr Nature Reserve (RU), Severtsov Institute of Ecology and Evolution (RU), Institute of Oil and Gas Problems of the Siberian Branch of the RAS (RU), University College London (GB), Ludwig-Maximilians-Universität München (DE)
Life in Land
Openalex Percentile: Top 12%
Genetic diversity and population structure
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