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荷斯坦奶牛正常和非典型孕酮谱的全基因组关联研究。

Genome-wide association study of normal and atypical progesterone profiles in Holstein-Friesian dairy cows.

机构信息

Department of Animal Breeding and Genetics, Centre for Reproductive Biology, Swedish University of Agricultural Sciences, SE-750 07 Uppsala, Sweden.

Department of Animal Breeding and Genetics, Centre for Reproductive Biology, Swedish University of Agricultural Sciences, SE-750 07 Uppsala, Sweden.

出版信息

J Dairy Sci. 2019 Apr;102(4):3204-3215. doi: 10.3168/jds.2018-15418. Epub 2019 Feb 22.

Abstract

Female fertility has a major role in dairy production and affects the profitability of dairy cattle. The genetic progress obtained by traditional selection can be slow because of the low heritability of classical fertility traits. Endocrine fertility traits based on progesterone concentration in milk have higher heritability and more directly reflect the cow's own reproductive physiology. The aim of our study was to identify genomic regions for 7 endocrine fertility traits in dairy cows by performing a genome-wide association study with 54,000 SNP. The next step was to fine-map targeted genomic regions with significant SNP using imputed sequences to identify potential candidate genes associated with the normal and atypical progesterone profiles. The association between a SNP and a phenotype was assessed by a single SNP analysis, using a linear mixed model that included a random polygenic effect. Phenotypes and genotypes were available for 1,126 primiparous and multiparous Holstein-Friesian cows from research herds in Ireland, the Netherlands, Sweden, and the United Kingdom. In total, 44 significant SNP associated with 7 endocrine fertility traits were identified on Bos taurus autosome (BTA) 1-4, 6, 8-9, 11-12, 14-17, 19, 21-24, and 29. Three chromosomes, BTA8, BTA17, and BTA23, were imputed from 54,000 SNP genotypes to the whole-genome sequence level with Beagle version 4.1. The fine-mapping identified several significant associations with delayed cyclicity, cessation of cyclicity, commencement of luteal activity, and inter-ovulatory interval. These associations may contribute to an index of markers for genetic improvement of fertility. Several potential candidate genes reported to affect reproduction were also identified in the targeted genomic regions. However, due to high linkage disequilibrium, it was not possible to identify putative causal genes or polymorphisms for any of the regions.

摘要

女性生育能力在奶牛生产中起着重要作用,影响奶牛养殖的盈利能力。由于经典生育力性状的遗传力低,传统选择获得的遗传进展可能较为缓慢。基于牛奶中孕酮浓度的内分泌生育力性状具有更高的遗传力,更直接地反映牛自身的生殖生理。我们的研究目的是通过对 54000 个 SNP 进行全基因组关联研究,确定奶牛 7 种内分泌生育力性状的基因组区域。下一步是使用已导入序列对具有显著 SNP 的目标基因组区域进行精细定位,以鉴定与正常和异常孕酮谱相关的潜在候选基因。使用包含随机多基因效应的线性混合模型,通过单 SNP 分析评估 SNP 与表型之间的关联。表型和基因型可用于来自爱尔兰、荷兰、瑞典和英国研究牛群的 1126 头初产和经产荷斯坦弗里生奶牛。共鉴定出与 7 种内分泌生育力性状相关的 44 个显著 SNP,位于牛 Taurus 染色体(BTA)1-4、6、8-9、11-12、14-17、19、21-24 和 29 上。使用 Beagle 版本 4.1 将 54000 个 SNP 基因型导入到 3 个染色体 BTA8、BTA17 和 BTA23 的全基因组序列水平。精细定位确定了与周期性延长、周期性停止、黄体活动开始和排卵间隔相关的几个显著关联。这些关联可能有助于遗传改良生育力的标记指数。还在目标基因组区域中鉴定出几个报道影响生殖的潜在候选基因。然而,由于高度连锁不平衡,不可能为任何区域确定推定的因果基因或多态性。

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