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核糖体RNA中的配对序列差异:进化及系统发育意义

Paired sequence difference in ribosomal RNAs: evolutionary and phylogenetic implications.

作者信息

Wheeler W C, Honeycutt R L

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Mol Biol Evol. 1988 Jan;5(1):90-6. doi: 10.1093/oxfordjournals.molbev.a040480.

Abstract

Ribosomal RNAs have secondary structures that are maintained by internal Watson-Crick pairing. Through analysis of chordate, arthropod, and plant 5S ribosomal RNA sequences, we show that Darwinian selection operates on these nucleotide sequences to maintain functionally important secondary structure. Insect phylogenies based on nucleotide positions involved in pairing and the production of secondary structure are incongruent with those constructed on the basis of positions that are not. Furthermore, phylogeny reconstruction using these nonpairing bases is concordant with other, morphological data.

摘要

核糖体RNA具有通过内部沃森-克里克碱基配对得以维持的二级结构。通过对脊索动物、节肢动物和植物5S核糖体RNA序列的分析,我们发现达尔文选择作用于这些核苷酸序列,以维持功能上重要的二级结构。基于参与配对和二级结构形成的核苷酸位置构建的昆虫系统发育树,与基于不参与配对的位置构建的系统发育树不一致。此外,使用这些非配对碱基进行的系统发育重建与其他形态学数据一致。

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