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The Expansion of Animal MicroRNA Families Revisited

机译:再探动物MicroRNA家族

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摘要

MicroRNAs are important regulatory small RNAs in many eukaryotes. Due to their small size and simple structure, they are readily innovated de novo. Throughout the evolution of animals, the emergence of novel microRNA families traces key morphological innovations. Here, we use a computational approach based on homology search and parsimony-based presence/absence analysis to draw a comprehensive picture of microRNA evolution in 159 animal species. We confirm previous observations regarding bursts of innovations accompanying the three rounds of genome duplications in vertebrate evolution and in the early evolution of placental mammals. With a much better resolution for the invertebrate lineage compared to large-scale studies, we observe additional bursts of innovation, e.g., in Rhabditoidea. More importantly, we see clear evidence that loss of microRNA families is not an uncommon phenomenon. The Enoplea may serve as a second dramatic example beyond the tunicates. The large-scale analysis presented here also highlights several generic technical issues in the analysis of very large gene families that will require further research.
机译:在许多真核生物中,MicroRNA是重要的调控性小RNA。由于其体积小,结构简单,因此很容易从头进行创新。在动物的整个进化过程中,新型microRNA家族的出现追踪了关键的形态学创新。在这里,我们使用基于同源性搜索和基于简约的存在/不存在分析的计算方法来绘制159种动物中microRNA进化的综合图。我们确认先前关于脊椎动物进化和胎盘哺乳动物早期进化伴随三轮基因组重复的创新爆发的观察。与大规模研究相比,无脊椎动物谱系的分辨率要好得多,因此我们可以观察到更多的创新爆发,例如在Rhabditoidea中。更重要的是,我们看到了明确的证据,证明microRNA家族的丧失并非罕见现象。 Enoplea可以作为除被膜外的第二个戏剧性例子。本文介绍的大规模分析还突出了非常大的基因家族分析中的一些通用技术问题,需要进一步研究。

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