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全基因组 SNP 分析清楚地区分了白俄罗斯红牛与其他欧洲牛品种。

Genome-wide SNP analysis clearly distinguished the Belarusian Red cattle from other European cattle breeds.

机构信息

L.K. Ernst Federal Research Center for Animal Husbandry, Podolsk, 142132, Russia.

Scientific and Practical Center of the National Academy of Sciences of Belarus for Animal Husbandry, Zhodino, 222160, Belarus.

出版信息

Anim Genet. 2021 Oct;52(5):720-724. doi: 10.1111/age.13102. Epub 2021 Jun 15.

Abstract

Local breeds can serve as an important source of genetic variability in domestic animal species. This study aimed to assess the genetic diversity and population structure of Belarusian Red cattle and their differentiation from other European cattle populations based on genome-wide SNP genotypes. Twenty pedigree-recorded non-closely related cows of Belarusian Red cattle were genotyped using the Illumina BovineHD BeadChip. Genotypes of 22 other European cattle breeds were included in the study for comparison. A total of 28 562 SNPs passed through the quality control checks and were selected for analysis. The Belarusian Red cattle displayed a moderate level of genetic variability ( H  = 0.341, H  = 0.368), and the highest heterozygote excess ( F  = -0.066), among the studied breeds; this reflects the contribution of multiple breeds to their formation. The principal component analysis, F -based Neighbor-Net tree and Admixture clustering, clearly distinguished the Belarusian Red cattle from the other European cattle breeds. Moreover, the presence of ancestral genomic components of Danish Red and Brown Swiss breeds were clearly visible, which agrees with the breed's history and its recent development. Our study highlights the importance of maintaining the specific genomic components, which makes a significant contribution to the global genetic diversity in the modern population of Belarusian Red cattle, allowing us to consider them a valuable national genetic resource. Our research results will be useful for the development of conservation programs for this local cattle breed.

摘要

本地品种可以作为家畜品种遗传多样性的重要来源。本研究旨在评估白俄罗斯红牛的遗传多样性和群体结构,并基于全基因组 SNP 基因型分析其与其他欧洲牛种群的分化情况。使用 Illumina BovineHD BeadChip 对 20 头具有谱系记录的非近亲白俄罗斯红牛进行基因分型。研究还包括 22 个其他欧洲牛品种的基因型作为对照。共筛选出 28562 个通过质量控制检查的 SNP 用于分析。白俄罗斯红牛表现出中等水平的遗传变异( H = 0.341, H = 0.368),并且在研究的品种中存在最高的杂合子过剩( F = -0.066);这反映了多个品种对其形成的贡献。主成分分析、基于 F 的邻居网络树和混合聚类清楚地区分了白俄罗斯红牛和其他欧洲牛品种。此外,丹麦红牛和瑞士褐牛品种的祖先基因组成分清晰可见,这与该品种的历史和近期发展相符。本研究强调了维持特定基因组成分的重要性,这对白俄罗斯红牛现代种群的全球遗传多样性做出了重要贡献,使我们可以将其视为有价值的国家遗传资源。我们的研究结果将有助于为该本地牛品种的保护计划的制定提供参考。

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