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全基因组关联和基因富集分析揭示了与牛肉肉质相关的膜锚定和结构蛋白。

Genome wide association and gene enrichment analysis reveal membrane anchoring and structural proteins associated with meat quality in beef.

机构信息

Department of Animal Sciences, University of Florida, Gainesville, FL, USA.

出版信息

BMC Genomics. 2019 Feb 21;20(1):151. doi: 10.1186/s12864-019-5518-3.

Abstract

BACKGROUND

Meat quality related phenotypes are difficult and expensive to measure and predict but are ideal candidates for genomic selection if genetic markers that account for a worthwhile proportion of the phenotypic variation can be identified. The objectives of this study were: 1) to perform genome wide association analyses for Warner-Bratzler Shear Force (WBSF), marbling, cooking loss, tenderness, juiciness, connective tissue and flavor; 2) to determine enriched pathways present in each genome wide association analysis; and 3) to identify potential candidate genes with multiple quantitative trait loci (QTL) associated with meat quality.

RESULTS

The WBSF, marbling and cooking loss traits were measured in longissimus dorsi muscle from 672 steers. Out of these, 495 animals were used to measure tenderness, juiciness, connective tissue and flavor by a sensory panel. All animals were genotyped for 221,077 markers and included in a genome wide association analysis. A total number of 68 genomic regions covering 52 genes were identified using the whole genome association approach; 48% of these genes encode transmembrane proteins or membrane associated molecules. Two enrichment analysis were performed: a tissue restricted gene enrichment applying a correlation analysis between raw associated single nucleotide polymorphisms (SNPs) by trait, and a functional classification analysis performed using the DAVID Bioinformatic Resources 6.8 server. The tissue restricted gene enrichment approach identified eleven pathways including "Endoplasmic reticulum membrane" that influenced multiple traits simultaneously. The DAVID functional classification analysis uncovered eleven clusters related to transmembrane or structural proteins. A gene network was constructed where the number of raw associated uncorrelated SNPs for each gene across all traits was used as a weight. A multiple SNP association analysis was performed for the top five most connected genes in the gene-trait network. The gene network identified the EVC2, ANXA10 and PKHD1 genes as potentially harboring multiple QTLs. Polymorphisms identified in structural proteins can modulate two different processes with direct effect on meat quality: in vivo myocyte cytoskeletal organization and postmortem proteolysis.

CONCLUSION

The main result from the present analysis is the uncovering of several candidate genes associated with meat quality that have structural function in the skeletal muscle.

摘要

背景

肉质相关表型难以测量且费用高昂,但如果能够识别出能够解释表型变异的有价值比例的遗传标记,那么它们就是基因组选择的理想候选者。本研究的目的是:1)对 Warner-Bratzler 剪切力(WBSF)、大理石花纹、烹饪损失、嫩度、多汁性、结缔组织和风味进行全基因组关联分析;2)确定每个全基因组关联分析中存在的富集途径;3)鉴定与肉质相关的多个数量性状位点(QTL)的潜在候选基因。

结果

在 672 头阉牛的背最长肌中测量了 WBSF、大理石花纹和烹饪损失性状。其中,495 头动物用于通过感官小组测量嫩度、多汁性、结缔组织和风味。所有动物均进行了 221,077 个标记的基因分型,并包含在全基因组关联分析中。使用全基因组关联方法共鉴定出 68 个基因组区域,覆盖 52 个基因;其中 48%的基因编码跨膜蛋白或膜相关分子。进行了两次富集分析:一种是应用性状相关原始单核苷酸多态性(SNP)之间的相关性分析的组织限制基因富集,另一种是使用 DAVID 生物信息学资源 6.8 服务器进行的功能分类分析。组织限制基因富集方法确定了 11 个途径,包括同时影响多个性状的“内质网膜”。DAVID 功能分类分析揭示了与跨膜或结构蛋白相关的 11 个聚类。构建了一个基因网络,其中每个基因在所有性状中的原始相关无相关 SNP 的数量用作权重。对基因-性状网络中五个最相关的基因进行了多 SNP 关联分析。基因网络确定了 EVC2、ANXA10 和 PKHD1 基因可能含有多个 QTL。结构蛋白中的多态性可以调节对肉质有直接影响的两个不同过程:肌细胞细胞骨架组织的体内过程和死后蛋白水解。

结论

本分析的主要结果是揭示了与肉质相关的几个候选基因,这些基因在骨骼肌中具有结构功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dabb/6385435/d4457057a88c/12864_2019_5518_Fig1_HTML.jpg

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