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Selection Fine-Tunes the Expression of MicroRNA Target Genes in Arabidopsis thaliana

机译:选择微调拟南芥MicroRNA靶基因的表达

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摘要

MicroRNAs (miRNAs) are involved in posttranscriptional gene regulation by repressing the expression of their target genes through inhibition of translation and/or cleavage of mRNAs. In plants, the target genes of miRNAs usually belong to large gene families, and miRNA regulation is gained for individual genes throughout gene family evolution. To explore the selective effect of miRNA regulation on their target genes, we investigated the pattern of polymorphism and interspecific divergence in 11 multigene families that include target genes of ancient miRNAs in Arabidopsis thaliana. We found that the levels of polymorphism and divergence in target genes are significantly reduced, whereas those for nontarget genes are very similar to the genomic averages. This pattern is particularly clear at synonymous sites; we found that the reduction of synonymous variation is caused by selection for optimal codons, which increase the efficiency and accuracy of translation. Based on these results, we conclude that tuning via miRNA regulation has a strong impact on the evolution of target genes through which highly sophisticated regulation systems have been established.miRNA system, gene duplication, codon usage bias.
机译:MicroRNA(miRNA)通过抑制mRNA的翻译和/或切割来抑制其靶基因的表达,从而参与转录后基因的调控。在植物中,miRNA的靶基因通常属于较大的基因家族,并且在整个基因家族进化过程中,单个基因都获得了miRNA调控。为了探索miRNA调控对其靶基因的选择性作用,我们调查了11个多基因家族的多态性和种间差异模式,其中包括拟南芥中古代miRNA的靶基因。我们发现目标基因的多态性和差异水平显着降低,而非目标基因的多态性和差异水平与基因组平均值非常相似。在同义网站上,这种模式特别明显。我们发现同义变异的减少是由选择最佳密码子引起的,从而提高了翻译的效率和准确性。根据这些结果,我们得出结论,通过miRNA调控进行的调节对建立高度复杂的调控系统的靶基因的进化有很大影响。miRNA系统,基因重复,密码子使用偏倚。

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