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Discovery of candidate genes for muscle traits based on GWAS supported by eQTL-analysis

机译:基于eQTL分析支持的GWAS的肌肉性状候选基因的发现

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Biochemical and biophysical processes that take place in muscle under relaxed and stressed conditions depend on the abundance and activity of gene products of metabolic and structural pathways. In livestock at post-mortem, these muscle properties determine aspects of meat quality and are measurable. The conversion of muscle to meat mimics pathological processes associated with muscle ischemia, injury or damage in humans and it is an economic factor in pork production. Linkage, association, and expression analyses independently contributed to the identification of trait-associated molecular pathways and genes. We aim at providing multiple evidences for the role of specific genes in meat quality by integrating a genome-wide association study (GWAS) for meat quality traits and the detection of eQTL based on trait-correlated expressed genes and trait-associated markers. The GWAS revealed 51 and 200 SNPs significantly associated with meat quality in a crossbred Pietrain×(German Landrace×Large White) (Pi×(GL×LW)) and a purebred German Landrace (GL) population, respectively. Most significant SNPs in Pi×(GL×LW) were located on chromosomes (SSC) 4 and 6. The data of 47,836 eQTLs at a significance level of p<10-5 were used to scale down the number candidate genes located in these regions. These SNPs on SSC4 showed association with expression levels of ZNF704, IMPA1, and OXSR1; SSC6 SNPs were associated with expression of SIGLEC10 and PIH1D1. Most significant SNPs in GL were located on SSC6 and associated with expression levels of PIH1D1, SIGLEC10, TBCB, LOC100518735, KIF1B, LOC100514845, and two unknown genes. The abundance of transcripts of these genes in muscle, in turn, is significantly correlated with meat quality traits. We identified several genes with evidence for their candidacy for meat quality arising from the integrative approach of a genome-wide association study and eQTL analysis.
机译:在松弛和压力条件下,肌肉中发生的生化和生物物理过程取决于代谢和结构途径的基因产物的丰度和活性。在宰后牲畜中,这些肌肉特性决定了肉质的各个方面,并且可以测量。肌肉向肉的转化模仿了与人类肌肉缺血,损伤或破坏相关的病理过程,这是猪肉生产中的经济因素。连锁,关联和表达分析独立地有助于鉴定与性状相关的分子途径和基因。我们旨在通过整合针对肉质性状的全基因组关联研究(GWAS)和基于性状相关表达基因和性状相关标记的eQTL检测,为特定基因在肉质中的作用提供多种证据。 GWAS揭示了杂种Pietrain×(德国长白×大白)(Pi×(GL×LW))和纯种德国长白(GL)种群中与肉质显着相关的51和200个SNP。 Pi×(GL×LW)中最重要的SNP位于4号和6号染色体上。使用p <10-5显着性水平的47,836个eQTL数据来缩小位于这些区域的候选基因的数量。 。 SSC4上的这些SNP与ZNF704,IMPA1和OXSR1的表达水平相关。 SSC6 SNP与SIGLEC10和PIH1D1的表达相关。 GL中最重要的SNP位于SSC6上,并与PIH1D1,SIGLEC10,TBCB,LOC100518735,KIF1B,LOC100514845和两个未知基因的表达水平相关。反过来,这些基因在肌肉中的大量转录产物与肉质性状显着相关。我们确定了几个基因,这些证据证明了它们是通过全基因组关联研究和eQTL分析的综合方法对肉质候选的。

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