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Excess non-synonymous substitutions suggest that positive selection episodes occurred during the evolution of DNA-binding domains in the Arabidopsis R2R3-MYB gene family

机译:过多的非同义替换表明,在拟南芥R2R3-MYB基因家族的DNA结合结构域的进化过程中发生了阳性选择事件

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摘要

It has been suggested that evolutionary changes in regulatory genes may be the predominant molecular mechanism governing both physiological and morphological evolution. R2R3-AtMYB is one of the largest transcription factor gene families in Arabidopsis. Using inferred ancestral sequences we show that several lineages in the R2R3-AtMYB phylogeny experienced excess non-synonymous nucleotide substitution upon gene duplication, indicating episodes of positive selection driving adaptive shifts early in the evolution of this gene family. A noise reduction technique was then used to determine individual sites in DNA-binding domains (R2 domain and R3 domain) of R2R3-AtMYB protein sequence that were favored by frequent non-synonymous substitutions. The analyses reveal that the first helix (helix1) and the second helix (helix2) in both R2 and R3 domains are characterized by more frequent non-synonymous substitutions, and thus experienced significantly higher positive selection pressure than the third helix (helix3) in both domains. Previous MYB protein structure studies have suggested that helix1 and helix2 in both R2 and R3 domains are involved in the characteristic packing of R2R3-AtMYB DNA-binding domains. This suggests that excess non-synonymous substitutions in these helices could have resulted in MYB recognition of novel gene target sites.
机译:已经提出调节基因的进化变化可能是控制生理和形态进化的主要分子机制。 R2R3-AtMYB是拟南芥中最大的转录因子基因家族之一。使用推断的祖先序列,我们显示了R2R3-AtMYB系统发育中的几个谱系在基因复制后经历了过量的非同义核苷酸取代,表明正选择的发作在该基因家族的进化早期驱动了适应性转变。然后使用降噪技术确定R2R3-AtMYB蛋白序列的DNA结合结构域(R2结构域和R3结构域)中的单个位点,这些位点经常被频繁的非同义词替换所青睐。分析显示,R2和R3域中的第一个螺旋(helix1)和第二个螺旋(helix2)具有更频繁的非同义替换特征,因此在这两个域中比第三个螺旋(helix3)经历的正选择压力明显高域。以前的MYB蛋白结构研究表明,R2和R3域中的helix1和helix2参与R2R3-AtMYB DNA结合域的特征性包装。这表明这些螺旋中过量的非同义取代可能导致MYB识别新的基因靶位点。

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