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Expansion of ruminant-specific microRNAs shapes target gene expression divergence between ruminant and non-ruminant species

机译:反刍动物特异性microRNA的扩增使反刍动物和非反刍动物之间的靶基因表达差异更加明显

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Background Understanding how species-specific microRNAs (miRNAs) contribute to species-specific phenotypes is a central topic in biology. This study aimed to elucidate the role of ruminant-specific miRNAs in shaping mRNA expression divergence between ruminant and non-ruminant species. Results We analyzed miRNA and mRNA transcriptomes generated by Illumina sequencing from whole blood samples of cattle and a closely related non-ruminant species, pig. We found evidence of expansion of cattle-specific miRNAs by analyzing miRNA conservation among 57 vertebrate species. The emergence of cattle-specific miRNAs was accompanied by accelerated sequence evolution at their target sites. Further, the target genes of cattle-specific miRNAs show markedly reduced expression compared to their pig and human orthologues. We found that target genes with conserved or non-conserved target sites of cattle-specific miRNAs exhibit reduced expression. One of the significantly enriched KEGG pathway terms for the target genes of the cattle-specific miRNAs is the insulin signalling pathway, raising the possibility that some of these miRNAs may modulate insulin resistance in ruminants. Conclusions We provide evidence of rapid miRNA-mediated regulatory evolution in the ruminant lineage. Cattle-specific miRNAs play an important role in shaping gene expression divergence between ruminant and non-ruminant species, by influencing the expression of targets genes through both conserved and cattle-specific target sites.
机译:背景技术了解物种特异性microRNA(miRNA)如何促进物种特异性表型是生物学的中心课题。这项研究旨在阐明反刍动物特定的miRNA在塑造反刍动物和非反刍动物之间的mRNA表达差异中的作用。结果我们分析了通过Illumina测序从牛和紧密相关的非反刍动物猪的全血样品中生成的miRNA和mRNA转录组。通过分析57种脊椎动物中的miRNA保守性,我们发现了牛特异性miRNA扩增的证据。牛特异性miRNA的出现伴随着在其靶位点的序列加速进化。此外,与它们的猪和人类直系同源物相比,牛特异性miRNA的靶基因显示出明显降低的表达。我们发现具有牛特异性miRNA的保守或非保守靶位点的靶基因表现出降低的表达。牛特异性miRNA靶基因的丰富的KEGG通路术语之一是胰岛素信号通路,这增加了其中一些miRNA调节反刍动物胰岛素抵抗的可能性。结论我们提供了反刍谱系中miRNA介导的快速调节进化的证据。牛特异的miRNA通过影响保守和牛特异靶位点的靶标基因表达,在塑造反刍动物和非反刍动物之间的基因表达差异中起重要作用。

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