Hershkovitz M A, Zimmer E A
Laboratory of Molecular Systematics, MRC534, Smithsonian Institution, Washington, DC 20560, USA.
Nucleic Acids Res. 1996 Aug 1;24(15):2857-67. doi: 10.1093/nar/24.15.2857.
The two internal transcribed spacers (ITS1 and ITS2) of nuclear ribosomal DNA have become commonly exploited sources of informative variation for interspecific-/intergeneric-level phylogenetic analyses among angiosperms and other eukaryotes. We present an alignment in which one-third to one-half of the ITS2 sequence is alignable above the family level in angiosperms and a phenetic analysis showing that ITS2 contains information sufficient to diagnose lineages at several hierarchical levels. Base compositional analysis shows that angiosperm ITS2 is inherently GC-rich, and that the proportion of T is much more variable than that for other bases. We propose a general model of angiosperm ITS2 secondary structure that shows common pairing relationships for most of the conserved sequence tracts. Variations in our secondary structure predictions for sequences from different taxa indicate that compensatory mutation is not limited to paired positions.
核糖体DNA的两个内部转录间隔区(ITS1和ITS2)已成为被子植物和其他真核生物种间/属间系统发育分析中常用的信息变异来源。我们展示了一个比对,其中在被子植物中,ITS2序列的三分之一到二分之一在科级以上水平是可比对的,并且一个表型分析表明ITS2包含足以在几个层次水平上诊断谱系的信息。碱基组成分析表明,被子植物ITS2本质上富含GC,并且T的比例比其他碱基的比例变化大得多。我们提出了一个被子植物ITS2二级结构的通用模型,该模型显示了大多数保守序列片段的常见配对关系。我们对不同分类群序列的二级结构预测中的变异表明,补偿性突变不限于配对位置。