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Identification of genes for controlling swine adipose deposition by integrating transcriptome, whole-genome resequencing, and quantitative trait loci data

机译:通过整合转录组,全基因组重新排序和定量特性地点数据来鉴定用于控制猪脂肪沉积的基因

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Backfat thickness is strongly associated with meat quality, fattening efficiency, reproductive performance, and immunity in pigs. Fat storage and fatty acid synthesis mainly occur in adipose tissue. Therefore, we used a high-throughput massively parallel sequencing approach to identify transcriptomes in adipose tissue, and whole-genome differences from three full-sibling pairs of pigs with opposite (high and low) backfat thickness phenotypes. We obtained an average of 38.69 million reads for six samples, 78.68% of which were annotated in the reference genome. Eighty-nine overlapping differentially expressed genes were identified among the three pair comparisons. Whole-genome resequencing also detected multiple genetic variations between the pools of DNA from the two groups. Compared with the animal quantitative trait loci (QTL) database, 20 differentially expressed genes were matched to the QTLs associated with fatness in pigs. Our technique of integrating transcriptome, whole-genome resequencing, and QTL database information provided a rich source of important differentially expressed genes and variations. Associate analysis between selected SNPs and backfat thickness revealed that two SNPs and one haplotype of ME1 significantly affected fat deposition in pigs. Moreover, genetic analysis confirmed that variations in the differentially expressed genes may affect fat deposition.
机译:Backfat厚度与肉质,肥胖效率,生殖性能和猪中的免疫力相关。脂肪储存和脂肪酸合成主要发生在脂肪组织中。因此,我们使用了高通量的巨大平行测序方法来鉴定脂肪组织中的转录om,以及与三种全兄弟对猪的全基因组差异,其具有相对的(高低)的背部厚度表型。我们平均获得38.69百万次读取六个样品,其中78.68%在参考基因组中注释。在三对比较中鉴定了八十九次重叠的差异表达基因。全基因组重构还检测到两组中DNA池之间的多种遗传变异。与动物定量性状基因座(QTL)数据库相比,20个差异表达基因与猪脂肪相关的QTL匹配。我们将转录组,全基因组重构和QTL数据库信息集成的技术提供了具有重要差异表达基因和变化的丰富来源。所选SNP和背脂厚度之间的助理分析显示,两个SNP和一个单倍型ME1在猪中显着影响脂肪沉积。此外,遗传分析证实,差异表达基因的变化可能影响脂肪沉积。

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