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microRNA complements in deuterostomes: Origin and evolution of microRNAs

机译:氘吻口中的microRNA补体:microRNA的起源和进化

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SUMMARY Although numerous studies have emphasized the role of microRNAs (miRNAs) in the control of many different cellular processes, they might also exert a profound effect on the macroevolution of animal body plans. It has been hypothesized that, because miRNAs increase genic precision and are continuously being added to metazoan genomes through geologic time, miRNAs might be instrumental for canalization of development and morphological evolution. Nonetheless, an outstanding question remains: how are new miRNAs constantly evolving? To address this question, we assessed the miRNA complements of four deuterostome species, chosen because of their sequenced genomes and well-resolved phylogeny. Our comparative analysis shows that each of these four species is characterized by a unique repertoire of miRNAs, with few instances of miRNA loss. Moreover, we find that almost half of the miRNAs identified in this study are located in intronic regions of protein coding genes, suggesting that new miRNAs might arise from intronic regions in a process we term intronic exaptation. We also show that miRNAs often occur within cotranscribed clusters, and describe the biological function of one of these conserved clusters, the miR-1/miR-133 cluster. Taken together, our work shows that miRNAs can easily emerge within already transcribed regions of DNA, whether it be introns or preexisting clusters of miRNAs and/or miRNAs and protein coding genes, and because of their regulatory roles, these novel players change the structure of gene regulatory networks, with potential macroevolutionary results.
机译:概述尽管许多研究都强调了microRNA(miRNA)在控制许多不同细胞过程中的作用,但它们也可能对动物身体计划的宏观进化产生深远影响。据推测,由于miRNA提高了基因精度,并在地质时期不断被添加到后生动物的基因组中,因此miRNA可能对发育和形态进化的形成有帮助。尽管如此,仍然存在一个悬而未决的问题:新的miRNA如何不断发展?为了解决这个问题,我们评估了四种氘核动物的miRNA互补序列,它们是由于它们的基因组测序和良好的系统发育而选择的。我们的比较分析表明,这四个物种中的每个物种都具有独特的miRNA组成特征,很少出现miRNA丢失的情况。此外,我们发现在这项研究中鉴定出的miRNA几乎一半位于蛋白质编码基因的内含子区域,这表明在我们称为内含子的过程中,新的miRNA可能来自内含子区域。我们还显示,miRNA经常出现在共转录的簇中,并描述了这些保守簇之一miR-1 / miR-133簇的生物学功能。综上所述,我们的工作表明,miRNA可以轻易地出现在已经转录的DNA区域内,无论是内含子还是miRNA和/或miRNA和蛋白质编码基因的预先存在的簇,并且由于它们的调控作用,这些新颖的分子改变了DNA的结构。基因调控网络,具有潜在的宏观进化结果。

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