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Adaptive Evolution of Newly Emerged Micro-RNA Genes in Drosophila

机译:果蝇中新出现的微RNA基因的适应性进化。

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摘要

How often micro-RNA (miRNA) genes emerged and how fast they evolved soon after their emergence are some of the central questions in the evolution of miRNAs. Because most known miRNA genes are ancient and highly conserved, these questions can be best answered by identifying newly emerged miRNA genes. Among the 78 miRNA genes in Drosophila reported before 2007, only 5 are confirmed to be newly emerged in the genus (although many more can be found in the newly reported data set; e.g., Ruby et al. 2007; Stark et al. 2007; Lu et al. 2008). These new miRNA genes have undergone numerous changes, even in the normally invariant mature sequences. Four of them (the miR-310/311/312/313 cluster, denoted miR-310s) were duplicated from other conserved miRNA genes. The fifth one (miR-303) appears to be a very young gene, originating de novo from a non-miRNA sequence recently. We sequenced these 5 miRNA genes and their neighboring regions from a worldwide collection of Drosophila melanogaster lines. The levels of divergence and polymorphism in these miRNA genes, vis-à-vis those of the neighboring DNA sequences, suggest that these 5 genes are evolving adaptively. Furthermore, the polymorphism pattern of miR-310s in D. melanogaster is indicative of hitchhiking under positive selection. Thus, a large number of adaptive changes over a long period of time may be essential for the evolution of newly emerged miRNA genes.
机译:微小RNA(miRNA)基因多久出现一次以及它们出现后很快进化多快是miRNA进化中的一些核心问题。由于大多数已知的miRNA基因都古老且高度保守,因此可以通过鉴定新出现的miRNA基因来最好地回答这些问题。在2007年之前报道的果蝇中78个miRNA基因中,只有5个被证实是新出现在该属中(尽管在新报告的数据集中可以找到更多;例如Ruby等,2007; Stark等,2007; Nordon等,2007)。 Lu等人,2008)。这些新的miRNA基因已经发生了许多变化,即使在正常不变的成熟序列中也是如此。其中四个(miR-310 / 311/312/313簇,表示为miR-310s)与其他保守的miRNA基因重复。第五个(miR-303)似乎是一个非常年轻的基因,最近从一个非miRNA序列重新产生。我们从全球果蝇系收集了这5个miRNA基因及其邻近区域的序列。与邻近的DNA序列相比,这些miRNA基因的差异和多态性水平表明这5个基因正在适应性进化。此外,D。melanogaster中miR-310s的多态性模式表明正选择下的搭便车。因此,长时间内的大量适应性变化对于新出现的miRNA基因的进化可能至关重要。

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