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Protein recoding by ADAR1-mediated RNA editing is not essential for normal development and homeostasis

机译:通过ADAR1介导的RNA编辑进行蛋白质编码对于正常发育和体内平衡而言不是必不可少的

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Background: The functional divergence of duplicate genes (ohnologues) retained from whole genome duplication (WGD) is thought to promote evolutionary diversification. However, species radiation and phenotypic diversification are often temporally separated from WGD. Salmonid fish, whose ancestor underwent WGD by autotetraploidization ~95 million years ago, fit such a ‘time-lag’ model of post-WGD radiation, which occurred alongside a major delay in the rediploidization process. Here we propose a model, ‘lineage-specific ohnologue resolution’ (LORe), to address the consequences of delayed rediploidization. Under LORe, speciation precedes rediploidization, allowing independent ohnologue divergence in sister lineages sharing an ancestral WGD event. Results: Using cross-species sequence capture, phylogenomics and genome-wide analyses of ohnologue expression divergence, we demonstrate the major impact of LORe on salmonid evolution. One-quarter of each salmonid genome, harbouring at least 4550 ohnologues, has evolved under LORe, with rediploidization and functional divergence occurring on multiple independent occasions >50 million years post-WGD. We demonstrate the existence and regulatory divergence of many LORe ohnologues with functions in lineage-specific physiological adaptations that potentially facilitated salmonid species radiation. We show that LORe ohnologues are enriched for different functions than ‘older’ ohnologues that began diverging in the salmonid ancestor. Conclusions: LORe has unappreciated significance as a nested component of post-WGD divergence that impacts the functional properties of genes, whilst providing ohnologues available solely for lineage-specific adaptation. Under LORe, which is predicted following many WGD events, the functional outcomes of WGD need not appear ‘explosively’, but can arise gradually over tens of millions of years, promoting lineage-specific diversification regimes under prevailing ecological pressures.
机译:背景:全基因组复制(WGD)中保留的重复基因(同源物)的功能差异被认为促进了进化的多样化。但是,物种辐射和表型多样化通常在时间上与WGD分开。鲑鱼的祖先在大约9千5百万年前通过四倍体化进行了WGD繁殖,它符合WGD后辐射的“时滞”模型,该模型在重倍化过程中出现了重大延迟。在这里,我们提出了一个模型,即“特定于谱系的直系同源物解析”(LORe),以解决延迟重整倍化的后果。在LORe下,物种形成先于重倍体化,从而允许在共享祖先WGD事件的姐妹谱系中进行独立的同源变异。结果:使用跨物种序列捕获,系统进化组学和全基因组分析的同源表达差异,我们证明了LORe对鲑鱼进化的主要影响。每个鲑鱼基因组的四分之一,至少有4550个同源基因,在LORe的作用下已经进化,在WGD后超过5000万年的多次独立场合下,发生了重倍化和功能分化。我们证明了许多LORe同源物的存在和调节差异,其在特定于谱系的生理适应中具有功能,潜在地促进了鲑科鱼类的辐射。我们显示,与在鲑鱼祖先中开始分化的“较旧”同源物相比,LORe同源物在功能上有所不同。结论:LORe作为后WGD差异的嵌套组件,其影响基因的功能特性,同时提供仅可用于谱系特异性适应的同源物,其意义不容小significance。根据LORe(在许多WGD事件之后进行预测),WGD的功能结果不必“爆炸性”出现,而是可以在数千万年中逐渐出现,从而在普遍的生态压力下促进特定于世袭的多样化制度。

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