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Higher Rates of Protein Evolution in the Self-Fertilizing Plant Arabidopsis thaliana than in the Out-Crossers Arabidopsis lyrata and Arabidopsis halleri

机译:自耕植物拟南芥中的蛋白质进化速率要高于外拟南芥和拟南芥中的蛋白质进化速率

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摘要

The common transition from out-crossing to self-fertilization in plants decreases effective population size. This is expected to result in a reduced efficacy of natural selection and in increased rates of protein evolution in selfing plants compared with their outcrossing congeners. Prior analyses, based on a very limited number of genes, detected no differences between the rates of protein evolution in the selfing Arabidopsis thaliana compared with the out-crosser Arabidopsis lyrata. Here, we reevaluate this trend using the complete genomes of A. thaliana, A. lyrata, Arabidopsis halleri, and the outgroups Capsella rubella and Thellungiella parvula. Our analyses indicate slightly but measurably higher nonsynonymous divergences (dN), synonymous divergences (dS) and dN/dS ratios in A. thaliana compared with the other Arabidopsis species, indicating that purifying selection is indeed less efficacious in A. thaliana.
机译:植物从异种杂交到自体受精的常见过渡会减少有效种群数量。与自交植物的异型同源物相比,预计这将导致自交植物的自然选择功效降低,蛋白质进化速率提高。基于非常有限数量的基因,先前的分析未检测到自交拟南芥与异交拟南芥的蛋白质进化速率之间的差异。在这里,我们使用拟南芥,拟南芥,拟南芥的完整基因组以及小Cap菜和小菜蛾的完整基因组重新评估了这种趋势。我们的分析表明,拟南芥中的非同义异义(dN),同义异义(dS)和dN / dS比与其他拟南芥属物种相比略高但可测量地更高,这表明纯化选择确实在拟南芥中不太有效。

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