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Genetic diversity is an important indicator of population health, especially for assessing population recovery of endangered species. To characterize the genetic diversity of Tibetan antelope(Pantholops hodgsonii) populations, we used muscle and placental tissues from accidentally killed Tibetan antelopes in Qinghai and Xinjiang and screened 11 Tibetan antelope Y-SNP-specific loci from 30 published polymorphic Y-SNP loci in bovids, of which AMELY3 (g.723 C > T) and SRYOY1 (g.167 G > A) 2 pairs of primers were polymorphic. Based on the AMELY3 locus, the haplotype diversity of Tibetan antelope Y chromosome was 0.048 ± 0.045 and the nucleotide polymorphism was 0.00006 ± 0.00005. According to the SRYOY1 locus, Tibetan antelope was divided into two haplotypes, of which H1 (g.167 G) was the dominant haplotype. Maximum likelihood tree suggests that Tibetan antelope might have two paternal origins. The haplotype diversity of Tibetan antelope Y chromosome was 0.439 ± 0.050 and the nucleotide polymorphism was 0.0008 ± 0.0004. The genetic differentiation index showed that the FST value between the male population of Tibetan antelope in Qinghai and Xinjiang was 0.6846 ± 0.0389, suggesting a strong population genetic differentiation. Therefore, integrated conservation across regions and research on sex chromosomes need more attention in the future conservation of Tibetan antelope.  相似文献   
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藏羚Pantholops hodgsonii是藏羚属Pantholops现存的唯一物种,由于Y染色体基因较保守,基于近缘物种的Y染色体多态性遗传位点筛选受到了很大的限制。本研究对15份藏羚新鲜组织样品进行基因组重测序,生物信息分析筛选出Y染色体雄性特异区(MSY)对应的scaffolds,对部分SNP及SSR位点进行多态性验证。共比对出44个scaffolds,以其中序列最长、候选变异位点最多且最完整的KE113803.1为参考,对其中190个SNP变异位点设计引物进行验证,共获得45条MSY DNA序列,其中15对引物扩增到的11 898 bp DNA序列中检测到27个SNP位点;同时对KE113803.1中除单核苷酸重复以外的134个SSR位点设计引物并验证多态性,筛选出56个Y-SSR位点,其中5个具有多态性。本研究结果为后续分析藏羚Y染色体遗传多样性及父系遗传奠定了良好基础。  相似文献   
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