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转换、颠换与分子进化钟。

Transitions, transversions, and the molecular evolutionary clock.

作者信息

Jukes T H

机构信息

Space Sciences Laboratory, University of California, Berkeley 94720.

出版信息

J Mol Evol. 1987;26(1-2):87-98. doi: 10.1007/BF02111284.

Abstract

Nucleotide substitutions in the form of transitions (purine-purine or pyrimidine-pyrimidine interchanges) and transversions (purine-pyrimidine interchanges) occur during evolution and may be compiled by aligning the sequences of homologous genes. Referring to the genetic code tables, silent transitions take place in third positions of codons in family boxes and two-codon sets. Silent transversions in third positions occur only in family boxes, except for A = C transversions between AGR and CGR arginine codons (R = A or G). Comparisons of several protein genes have been made, and various subclasses of transitional and transversional nucleotide substitutions have been compiled. Considerable variations occur among the relative proportions of transitions and transversions. Such variations could possibly be caused by mutator genes, favoring either transitions or, conversely, transversions, during DNA replication. At earlier stages of evolutionary divergence, transitions are usually more frequent, but there are exceptions. No indication was found that transversions usually originate from multiple substitutions in transitions.

摘要

在进化过程中会发生转换(嘌呤 - 嘌呤或嘧啶 - 嘧啶互换)和颠换(嘌呤 - 嘧啶互换)形式的核苷酸替换,并且可以通过比对同源基因的序列来汇编这些替换情况。参照遗传密码表,沉默转换发生在家族框和双密码子组中密码子的第三位。第三位的沉默颠换仅发生在家族框中,AGR和CGR精氨酸密码子(R = A或G)之间的A = C颠换除外。已经对多个蛋白质基因进行了比较,并汇编了转换和颠换核苷酸替换的各种子类。转换和颠换的相对比例之间存在相当大的差异。这种差异可能是由在DNA复制过程中有利于转换或相反有利于颠换的突变基因引起的。在进化分歧的早期阶段,转换通常更频繁,但也有例外情况。没有发现迹象表明颠换通常源自转换中的多个替换。

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