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荷斯坦奶牛后备牛抗苗勒管激素的基因组遗传力和全基因组关联分析。

Genomic heritability and genome-wide association analysis of anti-Müllerian hormone in Holstein dairy heifers.

机构信息

Department of Animal Science, Michigan State University, East Lansing 48823.

Zoetis Inclusions, Kalamazoo, MI 49007.

出版信息

J Dairy Sci. 2018 Sep;101(9):8063-8075. doi: 10.3168/jds.2018-14798. Epub 2018 Jul 13.

Abstract

Anti-Müllerian hormone (AMH) is an ovarian growth factor that plays an important role in regulation of ovarian follicle growth. The objectives of this study were to estimate the genomic heritability of AMH and identify genomic regions associated with AMH production in a genome-wide association (GWA) analysis. Concentrations of AMH were determined in 2,905 dairy Holstein heifers genotyped using the Zoetis medium density panel (Zoetis Inclusions, Kalamazoo, MI) with 54,519 single nucleotide polymorphism (SNP) markers remaining after standard genotype quality control edits. A linear mixed model was used to model the random effects of sampling day and genomics on the logarithm of AMH. The genomic heritability (± standard error of the mean) of AMH was estimated to be 0.36 ± 0.03. Our GWA analysis inferred significant associations between AMH and 11 SNP markers on chromosome 11 and 1 SNP marker on chromosome 20. Annotated genes with significant associations were identified using the Ensembl genome database (version 88) of the cow genome (version UMD 3.1; https://www.ensembl.org/biomart). Gene set enrichment analysis revealed that 2 gene ontology (GO) terms were significantly enriched in the list of candidate genes: G-protein coupled receptor signaling pathway (GO:0007186) and the detection of chemical stimulus involved in sensory perception (GO:0050907). The estimated high heritability and previously established associations between AMH and ovarian follicular reserve, fertility, longevity, and superovulatory response in cattle implies that AMH could be used as a biomarker for genetic improvement of reproductive potential.

摘要

抗缪勒管激素(AMH)是一种卵巢生长因子,在调节卵巢卵泡生长中发挥重要作用。本研究旨在估计 AMH 的基因组遗传力,并通过全基因组关联(GWA)分析鉴定与 AMH 产生相关的基因组区域。使用 Zoetis 中密度面板(Zoetis Inclusions,Kalamazoo,MI)对 2905 头荷斯坦奶牛进行基因分型,该面板包含 54519 个单核苷酸多态性(SNP)标记,经过标准基因型质量控制编辑后仍有 54519 个 SNP 标记。采用线性混合模型对 AMH 的对数进行模型化,模型包括采样日和基因组的随机效应。AMH 的基因组遗传力(±均值标准误差)估计为 0.36±0.03。我们的 GWA 分析推断出 AMH 与 11 号染色体上的 11 个 SNP 标记和 20 号染色体上的 1 个 SNP 标记之间存在显著关联。使用牛基因组(版本 UMD 3.1;https://www.ensembl.org/biomart)的 Ensembl 基因组数据库(版本 88)注释与显著关联的基因。基因集富集分析显示,候选基因列表中 2 个基因本体论(GO)术语显著富集:G 蛋白偶联受体信号通路(GO:0007186)和涉及感官感知的化学刺激检测(GO:0050907)。AMH 具有较高的遗传力,并且先前已建立 AMH 与牛的卵巢卵泡储备、生育能力、寿命和超数排卵反应之间的关联,这意味着 AMH 可作为遗传改良生殖潜力的生物标志物。

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