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基于系谱和标记的方法估计荷斯坦奶牛小群体的遗传多样性。

Pedigree- and marker-based methods in the estimation of genetic diversity in small groups of Holstein cattle.

机构信息

Wageningen UR Livestock Research, Animal Breeding and Genomics Centre, Lelystad, The Netherlands.

出版信息

J Anim Breed Genet. 2012 Jun;129(3):195-205. doi: 10.1111/j.1439-0388.2012.00987.x. Epub 2012 Jan 27.

Abstract

Genetic diversity is often evaluated using pedigree information. Currently, diversity can be evaluated in more detail over the genome based on large numbers of SNP markers. Pedigree- and SNP-based diversity were compared for two small related groups of Holstein animals genotyped with the 50 k SNP chip, genome-wide, per chromosome and for part of the genome examined. Diversity was estimated with coefficient of kinship (pedigree) and expected heterozygosity (SNP). SNP-based diversity at chromosome regions was determined using 5-Mb sliding windows, and significance of difference between groups was determined by bootstrapping. Both pedigree- and SNP-based diversity indicated more diversity in one of the groups; 26 of the 30 chromosomes showed significantly more diversity for the same group, as did 25.9% of the chromosome regions. Even in small populations that are genetically close, differences in diversity can be detected. Pedigree- and SNP-based diversity give comparable differences, but SNP-based diversity shows on which chromosome regions these differences are based. For maintaining diversity in a gene bank, SNP-based diversity gives a more detailed picture than pedigree-based diversity.

摘要

遗传多样性通常使用系谱信息进行评估。目前,可以基于大量 SNP 标记在全基因组范围内更详细地评估多样性。比较了两个小型近交荷斯坦动物群体的系谱和 SNP 多样性,这些动物是使用 50 k SNP 芯片全基因组、每条染色体和部分基因组进行基因分型的。使用亲缘系数(系谱)和期望杂合度(SNP)估计多样性。使用 5-Mb 滑动窗口确定 SNP 基于染色体区域的多样性,并通过自举确定群体之间差异的显著性。系谱和 SNP 多样性都表明一个群体的多样性更多;30 条染色体中有 26 条显示出同一群体的多样性显著更高,同样,25.9%的染色体区域也是如此。即使在遗传上接近的小群体中,也可以检测到多样性的差异。系谱和 SNP 多样性给出了可比的差异,但 SNP 多样性显示了这些差异基于哪些染色体区域。对于在基因库中维持多样性,SNP 多样性比基于系谱的多样性提供更详细的信息。

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