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蝾螈核糖体RNA的进化模式。

Patterns of ribosomal RNA evolution in salamanders.

作者信息

Larson A, Wilson A C

机构信息

Department of Biochemistry, University of California, Berkeley.

出版信息

Mol Biol Evol. 1989 Mar;6(2):131-54. doi: 10.1093/oxfordjournals.molbev.a040539.

Abstract

Sequence comparisons are presented for four segments of the large subunit of ribosomal RNA, including divergent domains D7a and D7b, portions of the large divergent domains D2, D3, and D8, and evolutionarily conservative sequences flanking divergent domains. These results resolve phylogenetic relationships among exemplars of seven families of salamanders and the three amphibian orders. Phylogenetic analysis confirms the prediction that divergent domains feature the highest relative rates of base substitution and length variation within the ribosome, but the divergent domains evolve more slowly than nuclear noncoding DNA and the silent sites of structural genes. Base substitutions demonstrate approximately twice as many transitions as transversions and an uneven distribution among sites within the divergent domains but no apparent bias in base composition. Length mutations are primarily small insertions and deletions, with deletions predominating. The divergent domains appear to be a good source of phylogenetic information for evolutionary events occurring approximately 100-200 million years ago.

摘要

本文展示了核糖体RNA大亚基四个片段的序列比较结果,包括分歧结构域D7a和D7b、大分歧结构域D2、D3和D8的部分区域,以及分歧结构域两侧的进化保守序列。这些结果解析了七个蝾螈科样本与三个两栖目之间的系统发育关系。系统发育分析证实了以下预测:分歧结构域在核糖体中具有最高的相对碱基替换率和长度变异率,但分歧结构域的进化速度比核非编码DNA和结构基因的沉默位点要慢。碱基替换中转换的数量大约是颠换的两倍,且在分歧结构域内的位点间分布不均,但碱基组成没有明显偏向。长度突变主要是小的插入和缺失,缺失占主导。分歧结构域似乎是大约1亿至2亿年前发生的进化事件的系统发育信息的良好来源。

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