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定向突变压力、突变体突变与分子进化动力学

Directional mutation pressure, mutator mutations, and dynamics of molecular evolution.

作者信息

Sueoka N

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder 80309-0347.

出版信息

J Mol Evol. 1993 Aug;37(2):137-53. doi: 10.1007/BF02407349.

Abstract

Using a general form of the directional mutation theory, this paper analyzes the effect of mutations in mutator genes on the G+C content of DNA, the frequency of substitution mutations, and evolutionary changes (cumulative mutations) under various degrees of selective constraints. Directional mutation theory predicts that when the mutational bias between A/T and G/C nucleotide pairs is equilibrated with the base composition of a neutral set of DNA nucleotides, the mutation frequency per gene will be much lower than the frequency immediately after the mutator mutation takes place. This prediction explains the wide variation of the DNA G+C content among unicellular organisms and possibly also the wide intragenomic heterogeneity of third codon positions for the genes of multicellular eukaryotes. The present analyses lead to several predictions that are not consistent with a number of the frequently held assumptions in the field of molecular evolution, including belief in a constant rate of evolution, symmetric branching of phylogenetic trees, the generality of higher mutation frequency for neutral sets of nucleotides, the notion that mutator mutations are generally deleterious because of their high mutation rates, and teleological explanations of DNA base composition.

摘要

本文采用定向突变理论的一般形式,分析了突变基因中的突变对DNA的G+C含量、替换突变频率以及在各种程度的选择约束下的进化变化(累积突变)的影响。定向突变理论预测,当A/T和G/C核苷酸对之间的突变偏向与一组中性DNA核苷酸的碱基组成达到平衡时,每个基因的突变频率将远低于突变基因发生突变后立即出现的频率。这一预测解释了单细胞生物中DNA G+C含量的广泛变化,也可能解释了多细胞真核生物基因第三密码子位置在基因组内的广泛异质性。目前的分析得出了一些预测,这些预测与分子进化领域中一些经常持有的假设不一致,包括相信进化速率恒定、系统发育树的对称分支、中性核苷酸组具有较高突变频率的普遍性、认为突变基因由于其高突变率通常有害的观点,以及对DNA碱基组成的目的论解释。

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