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DNA碱基组成的两个方面:G+C含量以及与A=T和G=C链内规则的翻译偶联偏差。

Two aspects of DNA base composition: G+C content and translation-coupled deviation from intra-strand rule of A = T and G = C.

作者信息

Sueoka N

机构信息

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

出版信息

J Mol Evol. 1999 Jul;49(1):49-62. doi: 10.1007/pl00006534.

Abstract

The relative contribution of mutation and selection to the G+C content of DNA was analyzed in bacterial species having widely different G+C contents. The analysis used two methods that were developed previously. The first method was to plot the average G+C content of a set of nucleotides against the G+C content of the third codon position for each gene. This method was used to present the G+C distribution of the third codon position and to assess the relative neutrality of a set of nucleotides to that of the G+C content of the third codon position. The second method was to plot the intrastrand bias of the third codon position from Parity Rule 2 (PR2), where A = T and G = C. It was found that whereas intragenomic distributions of the DNA G+C content of these bacteria are narrow in the majority of species, in some species the G+C content of the minor class of genes distributes over wider ranges than the major class of genes. On the other hand, ubiquitous PR2 biases are amino acid specific and independent of the G+C content of DNA, so that when averaged over the amino acids, the biases are small and not correlated with the DNA G+C content. Therefore, translation coupled PR2-biases are unlikely to explain the wide range of G+C contents among different species. Considering all data available, it was concluded that the amino acid-specific PR2 bias has only a minor effect, if any, on the average G+C content. In addition, PR2 bias patterns of different species show phylogenetic relationships, and the pattern can be as a taxal fingerprint.

摘要

在具有广泛不同G+C含量的细菌物种中,分析了突变和选择对DNA的G+C含量的相对贡献。该分析使用了之前开发的两种方法。第一种方法是针对每个基因,绘制一组核苷酸的平均G+C含量与第三密码子位置的G+C含量的关系图。此方法用于呈现第三密码子位置的G+C分布,并评估一组核苷酸相对于第三密码子位置的G+C含量的相对中性。第二种方法是绘制第三密码子位置相对于奇偶规则2(PR2,即A=T且G=C)的链内偏差。结果发现,尽管这些细菌的DNA G+C含量在大多数物种中的基因组内分布较窄,但在某些物种中,次要基因类别的G+C含量分布范围比主要基因类别更广。另一方面,普遍存在的PR2偏差是氨基酸特异性的,且与DNA的G+C含量无关,因此当对氨基酸进行平均时,偏差较小且与DNA G+C含量不相关。所以,翻译偶联的PR2偏差不太可能解释不同物种间广泛的G+C含量差异。综合所有可得数据得出结论,氨基酸特异性的PR2偏差对平均G+C含量的影响(如果有)很小。此外,不同物种的PR2偏差模式显示出系统发育关系,且该模式可作为一种分类指纹。

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