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脊椎动物进化中突变的定向固定

Directional fixation of mutations in vertebrate evolution.

作者信息

Perrin P, Bernardi G

机构信息

Institut d'Evolution Moléculaire, Université Claude Bernard--Lyon I, France.

出版信息

J Mol Evol. 1987;26(4):301-10. doi: 10.1007/BF02101148.

Abstract

We have made pairwise comparisons between the coding sequences of 21 genes from cold-blooded vertebrates and 41 homologous sequences from warm-blooded vertebrates. In the case of 12 genes, GC levels were higher, especially in third codon positions, in warm-blooded vertebrates compared to cold-blooded vertebrates. Six genes showed no remarkable difference in GC level and three showed a lower level. In the first case, higher GC levels appear to be due to a directional fixation of mutations, presumably under the influence of body temperature (see Bernardi and Bernardi 1986b). These GC-richer genes of warm-blooded vertebrates were located, in all cases studied, in isochores higher in GC than those comprising the homologous genes of cold-blooded vertebrates. In the third case, increases appear to be due to a limited formation of GC-rich isochores which took place in some cold-blooded vertebrates after the divergence of warm-blooded vertebrates. The directional changes in the GC content of coding sequences and the evolutionary conservation of both increased and unchanged GC levels are in keeping with the existence of compositional constraints on the genome.

摘要

我们对冷血脊椎动物的21个基因的编码序列与温血脊椎动物的41个同源序列进行了两两比较。在12个基因的情况中,与冷血脊椎动物相比,温血脊椎动物的GC含量更高,尤其是在第三密码子位置。六个基因在GC水平上没有显著差异,三个基因显示出较低的水平。在第一种情况下,较高的GC水平似乎是由于突变的定向固定,大概是在体温的影响下(见Bernardi和Bernardi 1986b)。在所有研究的案例中,这些温血脊椎动物富含GC的基因位于比包含冷血脊椎动物同源基因的等密度区GC含量更高的等密度区。在第三种情况下,增加似乎是由于在温血脊椎动物分化后,一些冷血脊椎动物中发生了有限的富含GC的等密度区的形成。编码序列GC含量的定向变化以及增加和未改变的GC水平的进化保守性与基因组组成限制的存在是一致的。

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