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全基因组关联分析影响五个瘤牛品种 Warner-Bratzler 剪切力的数量性状位点。

Genome-wide association analysis for quantitative trait loci influencing Warner-Bratzler shear force in five taurine cattle breeds.

机构信息

Division of Animal Sciences, University of Missouri, Columbia, MO 65211, USA.

出版信息

Anim Genet. 2012 Dec;43(6):662-73. doi: 10.1111/j.1365-2052.2012.02323.x. Epub 2012 Feb 27.

Abstract

We performed a genome-wide association study for Warner-Bratzler shear force (WBSF), a measure of meat tenderness, by genotyping 3360 animals from five breeds with 54 790 BovineSNP50 and 96 putative single-nucleotide polymorphisms (SNPs) within μ-calpain [HUGO nomenclature calpain 1, (mu/I) large subunit; CAPN1] and calpastatin (CAST). Within- and across-breed analyses estimated SNP allele substitution effects (ASEs) by genomic best linear unbiased prediction (GBLUP) and variance components by restricted maximum likelihood under an animal model incorporating a genomic relationship matrix. GBLUP estimates of ASEs from the across-breed analysis were moderately correlated (0.31-0.66) with those from the individual within-breed analyses, indicating that prediction equations for molecular estimates of breeding value developed from across-breed analyses should be effective for genomic selection within breeds. We identified 79 genomic regions associated with WBSF in at least three breeds, but only eight were detected in all five breeds, suggesting that the within-breed analyses were underpowered, that different quantitative trait loci (QTL) underlie variation between breeds or that the BovineSNP50 SNP density is insufficient to detect common QTL among breeds. In the across-breed analysis, CAPN1 was followed by CAST as the most strongly associated WBSF QTL genome-wide, and associations with both were detected in all five breeds. We show that none of the four commercialized CAST and CAPN1 SNP diagnostics are causal for associations with WBSF, and we putatively fine-map the CAPN1 causal mutation to a 4581-bp region. We estimate that variation in CAST and CAPN1 explains 1.02 and 1.85% of the phenotypic variation in WBSF respectively.

摘要

我们对五个品种的 3360 只动物进行了全基因组关联研究,以研究 Warner-Bratzler 剪切力(WBSF),这是衡量肉质嫩度的指标。研究中使用了 BovineSNP50 54790 个标记和 96 个假定的单核苷酸多态性(SNP),这些 SNP 位于 μ-钙蛋白酶[HUGO 命名法钙蛋白酶 1,(μ/I)大亚基;CAPN1]和钙蛋白酶抑制剂(CAST)内。在品种内和品种间分析中,通过动物模型下的约束最大似然法和方差分量,使用基因组最佳线性无偏预测(GBLUP)估计 SNP 等位基因替代效应(ASE),该模型包含基因组关系矩阵。跨品种分析的 GBLUP 估计的 ASE 与品种内分析的 ASE 中等相关(0.31-0.66),表明从跨品种分析中开发的用于分子估计育种值的预测方程应该对品种内的基因组选择有效。我们在至少三个品种中发现了与 WBSF 相关的 79 个基因组区域,但在所有五个品种中仅检测到 8 个,这表明品种内分析的功效不足,品种间的变异由不同的数量性状基因座(QTL)引起,或者 BovineSNP50 SNP 密度不足以检测品种间的常见 QTL。在跨品种分析中,CAPN1 是与 WBSF 相关性最强的基因组区域,紧随其后的是 CAST,在所有五个品种中都检测到了与这两个基因的相关性。我们表明,CAST 和 CAPN1 商业化 SNP 诊断试剂均不是与 WBSF 相关的因果突变,并且我们推测 CAPN1 因果突变被精细映射到 4581-bp 区域。我们估计 CAST 和 CAPN1 的变异分别解释了 WBSF 表型变异的 1.02%和 1.85%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88ad/3506923/5c24b1c024ba/age0043-0662-f1.jpg

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