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首页> 外文期刊>Journal of Molecular Evolution >Evolutionary Dynamics of the 5S rDNA Gene Family in the Mussel Mytilus: Mixed Effects of Birth-and-Death and Concerted Evolution
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Evolutionary Dynamics of the 5S rDNA Gene Family in the Mussel Mytilus: Mixed Effects of Birth-and-Death and Concerted Evolution

机译:贻贝贻贝中5S rDNA基因家族的进化动力学:生与死和协调进化的混合影响。

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In higher eukaryotes, the gene family encoding the 5S ribosomal RNA (5S rRNA) has been used (together with histones) to showcase the archetypal example of a gene family subject to concerted evolution. However, recent studies have revealed conspicuous features challenging the predictions of this model, including heterogeneity of repeat units, the presence of functional 5S gene variants as well as the existence of 5S rDNA divergent pseudogenes lacking traces of homogenization. In the present work, we have broadened the scope in the evolutionary study of ribosomal gene families by studying the 5S rRNA family in mussels, a model organism which stands out among other animals due to the heterogeneity it displays regarding sequence and organization. To this end, 48 previously unknown 5S rDNA units (coding and spacer regions) were sequenced in five mussel species, leading to the characterization of two new types of units (referred to here as small-beta 5S rDNA and gamma-5S rDNA) coexisting in the genome with alpha and beta rDNA units. The intense genetic dynamics of this family is further supported by the first description of an association between gamma-5S rDNA units and tRNA genes. Molecular evolutionary and phylogenetic analyses revealed an extensive lack of homology among spacer sequences belonging to different rDNA types, suggesting the presence of independent evolutionary pathways leading to their differentiation. Overall, our results suggest that the long-term evolution of the 5S rRNA gene family in mussels is most likely mediated by a mixed mechanism involving the generation of genetic diversity through birth-and-death, followed by a process of local homogenization resulting from concerted evolution in order to maintain the genetic identities of the different 5S units, probably after their transposition to independent chromosomal locations.
机译:在高级真核生物中,已使用编码5S核糖体RNA(5S rRNA)的基因家族(与组蛋白一起)来展示经过协调进化的基因家族的原型实例。然而,最近的研究揭示了突出特征,挑战了该模型的预测,包括重复单元的异质性,功能性5S基因变体的存在以及缺乏均一化痕迹的5S rDNA发散性假基因的存在。在本工作中,我们通过研究贻贝中的5S rRNA家族,拓宽了核糖体基因家族的进化研究范围,贻贝是一种模型生物,由于其在序列和组织方面的异质性而在其他动物中脱颖而出。为此,在五个贻贝物种中对48个先前未知的5S rDNA单元(编码区和间隔区)进行了测序,从而鉴定了两种共存的新型单元(此处称为小β5S rDNA和gamma-5S rDNA)。在基因组中具有α和βrDNA单元。 γ-5SrDNA单位与tRNA基因之间的关联的第一个描述进一步支持了该家族的强烈遗传动力学。分子进化和系统发育分析表明,属于不同rDNA类型的间隔子序列之间广泛缺乏同源性,表明存在导致它们分化的独立进化途径。总体而言,我们的研究结果表明,贻贝中5S rRNA基因家族的长期进化很可能是由一种混合机制介导的,该机制涉及通过生与死的遗传多样性的产生,以及随后由协调一致导致的局部均质化的过程。为了维持不同5S单位的遗传特性,可能进行了进化,可能是在将它们转移到独立的染色体位置之后。

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