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核糖体RNA二级结构:补偿性突变及其对系统发育分析的影响。

Ribosomal RNA secondary structure: compensatory mutations and implications for phylogenetic analysis.

作者信息

Dixon M T, Hillis D M

机构信息

Department of Zoology, University of Texas, Austin 78712.

出版信息

Mol Biol Evol. 1993 Jan;10(1):256-67. doi: 10.1093/oxfordjournals.molbev.a039998.

Abstract

Using sequence data from the 28S ribosomal RNA (rRNA) genes of selected vertebrates, we investigated the effects that constraints imposed by secondary structure have on the phylogenetic analysis of rRNA sequence data. Our analysis indicates that characters from both base-pairing regions (stems) and non-base-pairing regions (loops) contain phylogenetic information, as judged by the level of support of the phylogenetic results compared with a well-established tree based on both morphological and molecular data. The best results (the greatest level of support of well-accepted nodes) were obtained when the complete data set was used. However, some previously supported nodes were resolved using either the stem or loop bases alone. Stem bases sustain a greater number of compensatory mutations than would be expected at random, but the number is < 40% of that expected under a hypothesis of perfect compensation to maintain secondary structure. Therefore, we suggest that in phylogenetic analyses, the weighting of stem characters be reduced by no more than 20%, relative to that of loop characters. In contrast to previous suggestions, we do not recommend weighting of stem positions by one-half, compared with that of loop positions, because this overcompensates for the constraints that selection imposes on the secondary structure of rRNA.

摘要

利用选定脊椎动物的28S核糖体RNA(rRNA)基因的序列数据,我们研究了二级结构所施加的限制对rRNA序列数据系统发育分析的影响。我们的分析表明,根据与基于形态学和分子数据的成熟树相比的系统发育结果的支持水平判断,来自碱基配对区域(茎)和非碱基配对区域(环)的特征都包含系统发育信息。使用完整数据集时获得了最佳结果(对公认节点的支持程度最高)。然而,一些先前得到支持的节点仅使用茎或环碱基就得到了解决。茎碱基维持的补偿性突变数量比随机预期的要多,但该数量小于在完美补偿以维持二级结构的假设下预期数量的40%。因此,我们建议在系统发育分析中,相对于环特征,茎特征的权重降低不超过20%。与先前的建议相反,我们不建议将茎位置的权重设置为环位置的一半,因为这会过度补偿选择对rRNA二级结构施加的限制。

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