玉米遗传多样性进化的新见解。

Genome dynamics Pub Date : 2008-01-01 DOI:10.1159/000126011
A Rafalski, S Tingey
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引用次数: 0

摘要

发生在玉米基因组内的进化变化可分为两类:在蛋白质编码区,在选择压力下存活下来的突变主要由单核苷酸多态性组成,其进化速度相对较慢(10-9个突变/ bp/代),而功能有害的插入则被强烈选择反对。在快速进化的基因间区(10-4 - 10-8个突变/bp/代),转座子插入和缺失占主导地位。虽然基因单核苷酸的变化在一定程度上导致氨基酸序列变异,从而导致蛋白质特性的改变(酶的催化特性、结合常数等),但转座元件和其他大的插入和缺失,在功能相关的情况下,预计在本质上是调控的,并可能影响距离达100 kb的基因表达。在此,我们讨论了最近关于玉米基因间区大规模动态变化的实验证据以及该物种基因组多样性的预测功能后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent insights into the evolution of genetic diversity of maize.

Evolutionary changes that occur within the maize genome can be divided into two classes: In the protein-coding regions, mutations that survive selective pressure primarily consist of single nucleotide polymorphisms which evolve at a relatively slow rate (10-9 mutations/ bp/generation), and functionally detrimental insertions are strongly selected against. In intergenic regions rapidly evolving (10-4 10-8 mutations/bp/generation) transposon insertions and deletions predominate. While genic single nucleotide changes are expected in part to result in amino acid sequence variants leading to the modification of protein properties (catalytic properties of enzymes, binding constants, etc.), transposable elements and other large insertions and deletions, when functionally relevant, are predicted to be regulatory in nature and may affect gene expression at distances of up to 100 kb away. Here, we discuss recent experimental evidence for massive dynamic changes of maize intergenic regions and the predicted functional consequences of genome diversity within this species.

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