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The patterns and causes of variation in plant nucleotide substitution rates.

机译:植物核苷酸取代率变化的模式和原因。

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Early studies of protein evolution established that evolutionary rates vary among sites, genes, and lineages. Here, we review rate variation within each of these three components, with an emphasis on plant nuclear genes. Evolutionary rates vary among nucleotide sites as a consequence of selection and mutational biases. Mutation varies among sites as a function of the base, its neighboring bases, and its proximity to insertion-deletion polymorphisms. Nonsynonymous rate variation among genes correlates most strongly with gene expression, perhaps owing to selection for translational robustness. Among lineages, perennial plants evolve more slowly than annuals, but the mechanism driving this effect remains unclear. There are also interactions among these three main components; we discuss the patterns of interaction and their significance for understanding the evolutionary forces that shape nucleotide substitution rates in plants. Finally, we highlight gaps in our knowledge and future opportunities to answer fundamental questions in plant molecular evolution.Digital Object Identifier http://dx.doi.org/10.1146/annurev-ecolsys-102710-145119
机译:蛋白质进化的早期研究确立了进化速率在位点,基因和谱系之间变化。在这里,我们回顾了这三个部分中每个部分的速率变化,重点是植物核基因。由于选择和突变偏见,进化速率在核苷酸位点之间变化。位点之间的突变随碱基,其邻近碱基及其与插入缺失多态性的接近而变化。基因之间的非同义速率变化与基因表达密切相关,这可能是由于选择翻译鲁棒性所致。在世系中,多年生植物的生长速度比一年生植物慢,但是导致这种作用的机制尚不清楚。这三个主要组成部分之间也存在相互作用。我们讨论了相互作用的模式及其对理解影响植物中核苷酸取代率的进化力的意义。最后,我们强调了我们在知识和未来机会方面的差距,以回答植物分子进化中的基本问题。数字对象标识符http://dx.doi.org/10.1146/annurev-ecolsys-102710-145119

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