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首页> 外文期刊>Mammalian Genome >A genetical genomics approach reveals new candidates and confirms known candidate genes for drip loss in a porcine resource population
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A genetical genomics approach reveals new candidates and confirms known candidate genes for drip loss in a porcine resource population

机译:遗传基因组学方法揭示了新的候选物,并确认了猪资源种群中滴漏的已知候选基因

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摘要

In this study lean meat water-holding capacity (WHC) of a Duroc × Pietrain (DuPi) resource population with corresponding genotypes and transcriptomes was investigated using genetical genomics. WHC was characterized by drip loss measured in M. longissimus dorsi. The 60K Illumina SNP chips identified genotypes of 169 F2 DuPi animals. Whole-genome transcriptomes of muscle samples were available for 132 F2 animals using the Affymetrix 24K GeneChip® Porcine Genome Array. Performing genome-wide association studies of transcriptional profiles, which are correlated with phenotypes, allows elucidation of cis- and trans-regulation. Expression levels of 1,228 genes were significantly correlated with drip loss and were further analyzed for enrichment of functional annotation groups as defined by Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathways. A hypergeometric gene set enrichment test was performed and revealed glycolysis/glyconeogenesis, pentose phosphate pathway, and pyruvate metabolism as the most promising pathways. For 267 selected transcripts, expression quantitative trait loci (eQTL) analysis was performed and revealed a total of 1,541 significant associations. Because of positional accordance of the gene underlying transcript and the eQTL location, it was possible to identify eight eQTL that can be assumed to be cis-regulated. Comparing the results of gene set enrichment and the eQTL detection tests, molecular networks and potential candidate genes, which seemed to play key roles in the expression of WHC, were detected. The α-1-microglobulin/bikunin precursor (AMBP) gene was assumed to be cis-regulated and was part of the glycolysis pathway. This approach supports the identification of trait-associated SNPs and the further biological understanding of complex traits.
机译:在这项研究中,使用遗传基因组学研究了杜洛克(Duroc)×皮特兰(DuPi)资源人群具有相应基因型和转录组的瘦肉持水量(WHC)。 WHC的特征是在背最长芽孢杆菌中测得的滴水损失。 60K Illumina SNP芯片鉴定出169只F2 DuPi动物的基因型。使用Affymetrix 24K猪基因组阵列可对132名F2动物进行肌肉样品的全基因组转录组分析。进行与表型相关的转录谱的全基因组关联研究,可以阐明顺式和反式调节。 1,228个基因的表达水平与滴落损失显着相关,并进一步进行了功能注释组的富集分析,如基因本体论和《京都议定书》中的基因与基因组途径所定义的。进行了超几何基因集富集测试,发现糖酵解/糖原生成,磷酸戊糖途径和丙酮酸代谢是最有希望的途径。对于267个选定的转录本,进行了表达数量性状基因座(eQTL)分析,发现总共1,541个显着关联。由于转录本的基因和eQTL位置的位置一致,因此有可能鉴定出8个可以被顺式调节的eQTL。比较基因集富集的结果和eQTL检测测试,发现了似乎在WHC表达中起关键作用的分子网络和潜在候选基因。假定α-1-微球蛋白/比丘宁前体(AMBP)基因是顺式调节的,并且是糖酵解途径的一部分。这种方法支持与性状相关的单核苷酸多态性的鉴定和对复杂性状的进一步生物学理解。

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  • 来源
    《Mammalian Genome》 |2013年第10期|416-426|共11页
  • 作者单位

    Institute of Animal Science University of Bonn">(1);

    Institute of Animal Science University of Bonn">(1);

    Department of Animal Science Faculty of Agriculture Erciyes University">(2);

    Institute of Animal Science University of Bonn">(1);

    Institute of Animal Science University of Bonn">(1);

    Institute of Animal Science University of Bonn">(1);

    Institute of Animal Science University of Bonn">(1);

    Institute of Molecular Psychiatry University of Bonn">(3);

    Institute of Molecular Psychiatry University of Bonn">(3);

    Research Group Functional Genomics Research Institute for the Biology of Farm Animals (FBN)">(4);

    Research Unit Molecular Biology Research Institute for the Biology of Farm Animals (FBN)">(5);

    Institute of Animal Science University of Bonn">(1);

    Institute of Animal Science University of Bonn">(1);

    Institute of Animal Science University of Bonn">(1);

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