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首页> 外文期刊>Scientific reports. >MicroRNA-guided prioritization of genome-wide association signals reveals the importance of microRNA-target gene networks for complex traits in cattle
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MicroRNA-guided prioritization of genome-wide association signals reveals the importance of microRNA-target gene networks for complex traits in cattle

机译:MicroRNA指导的全基因组关联信号优先级揭示了microRNA靶基因网络对于牛复杂性状的重要性

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MicroRNAs (miRNA) are key modulators of gene expression and so act as putative fine-tuners of complex phenotypes. Here, we hypothesized that causal variants of complex traits are enriched in miRNAs and miRNA-target networks. First, we conducted a genome-wide association study (GWAS) for seven functional and milk production traits using imputed sequence variants (13~15?million) and 10,000 animals from three dairy cattle breeds, i.e., Holstein (HOL), Nordic red cattle (RDC) and Jersey (JER). Second, we analyzed for enrichments of association signals in miRNAs and their miRNA-target networks. Our results demonstrated that genomic regions harboring miRNA genes were significantly (P??0.05) enriched with GWAS signals for milk production traits and mastitis, and that enrichments within miRNA-target gene networks were significantly higher than in random gene-sets for the majority of traits. Furthermore, most between-trait and across-breed correlations of enrichments with miRNA-target networks were significantly greater than with random gene-sets, suggesting pleiotropic effects of miRNAs. Intriguingly, genes that were differentially expressed in response to mammary gland infections were significantly enriched in the miRNA-target networks associated with mastitis. All these findings were consistent across three breeds. Collectively, our observations demonstrate the importance of miRNAs and their targets for the expression of complex traits.
机译:微小RNA(miRNA)是基因表达的关键调节剂,因此可作为复杂表型的微调剂。在这里,我们假设复杂性状的因果变体富含miRNA和miRNA靶网络。首先,我们使用推算的序列变体(13〜15百万)和来自三种奶牛品种(即荷斯坦(HOL),北欧红)的> 10,000种动物,对七个功能和牛奶生产性状进行了全基因组关联研究(GWAS)牛(RDC)和泽西岛(JER)。其次,我们分析了miRNA及其miRNA靶标网络中缔合信号的富集。我们的研究结果表明,携带miRNA基因的基因组区域显着(P 0.05)富含GWAS信号,可用于乳汁生产性状和乳腺炎,并且miRNA靶基因网络内的富集程度显着高于大多数随机基因组特质。此外,与miRNA-靶标网络进行的富集之间的大多数性状和杂交相关性均显着大于随机基因集,这表明miRNA的多效性效应。有趣的是,响应乳腺感染而差异表达的基因在与乳腺炎相关的miRNA-靶标网络中显着丰富。所有这些发现在三个品种中都是一致的。总的来说,我们的观察证明了miRNA及其靶标对于表达复杂性状的重要性。

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