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Using Targeted Resequencing for Identification of Candidate Genes and SNPs for a QTL Affecting the pH Value of Chicken Meat

机译:使用靶向重测序鉴定影响鸡肉pH值的QTL的候选基因和SNP

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Using targeted genetical genomics, a quantitative trait locus (QTL) affecting the initial postmortem pH value of chicken breast muscle ( Pectoralis major ) on chromosome 1 (GGA1) recently was fine-mapped. Thirteen genes were present in the QTL region of approximately 1 Mb. In this study, 10 birds that were inferred to be homozygous for either the high (QQ) or low (qq) QTL allele were selected for resequencing. After enrichment for 1 Mb around the QTL region, 500 × coverage for the QTL region in each of the 10 birds was obtained. In total 5056 single-nucleotide polymorphisms (SNPs) were identified for which the genotypes were consistent with one of the QTL genotypes. We used custom tools to identify putative causal mutations in the mapped QTL region from these SNPs. Four nonsynonymous SNPs differentiating the two QTL genotype groups were identified within four local genes (PRDX4, EIF2S3, PCYT1B, and E1BTD2). Although these are likely candidate SNPs to explain the QTL effect, 54 additional consensus SNPs were detected within gene-related regions (untranslated regions, splicing sites CpG island, and promoter regions) for the QQ birds and 71 for the qq birds. These could also play a role explaining the observed QTL effect. The results provide an important step for prioritizing among a large amount of candidate mutations and significantly contribute to the understanding of the genetic mechanisms affecting the initial postmortem pH value of chicken muscle.
机译:使用有针对性的遗传基因组学,最近对影响1号染色体(GGA1)上的鸡胸肌(Pectoralis major)的初始死后pH值的定量性状位点(QTL)进行了精确定位。在大约1 Mb的QTL区域中存在13个基因。在这项研究中,选择了10个被推断为高(QQ)或低(qq)QTL等位基因纯合的鸟类进行重测序。在QTL区域周围富集1 Mb后,在10只禽鸟中,每一个QTL区域的覆盖率均> 500×。总共鉴定出5056个单核苷酸多态性(SNP),其基因型与一种QTL基因型一致。我们使用定制工具从这些SNPs定位QTL映射区域中的假定因果突变。在四个局部基因(PRDX4,EIF2S3,PCYT1B和E1BTD2)中鉴定了区分两个QTL基因型组的四个非同义SNP。尽管这些可能是解释QTL效应的候选SNP,但在QQ鸟类和qq鸟类的基因相关区域(非翻译区域,剪接位点CpG岛和启动子区域)中检测到了54个其他共有SNP。这些也可能起到解释观察到的QTL效应的作用。结果为在大量候选突变中进行优先排序提供了重要的步骤,并为理解影响鸡肌肉初始宰后pH值的遗传机制做出了重要贡献。

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