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Structural partitioning, paired-sites models and evolution of the ITS transcript in Syzygium and Myrtaceae

机译:桃金娘科和桃金娘科的结构分区,配对位点模型和ITS转录本的进化

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摘要

The internal transcribed spacers (ITS) of nuclear ribosomal DNA are widely used for phylogenetic inference. Several characteristics, including the influence of RNA secondary structure on the mutational dynamics of ITS, may impact on the accuracy of phylogenies estimated from these regions. Here, we develop RNA secondary structure predictions for representatives of the angiosperm family Myrtaceae. On this basis, we assess the utility of structural (stem vs. loop) partitioning, and RNA-specific (paired-sites) models for a 76 taxon Syzygium alignment, and for a broader, family-wide Myrtaceae ITS data set. We use a permutation approach to demonstrate that structural partitioning significantly improves the likelihood of the data. Similarly, models that account for the non-independence of stem-pairs in RNA structure have a higher likelihood than those that do not. The best-fit RNA models for ITS are those that exclude simultaneous double substitutions in stem-pairs, which suggests an absence of strong selection against non-canonical (G.U/U.G) base-pairs at a high proportion of stem-paired sites. We apply the RNA-specific models to the phylogeny of Syzygium and Myrtaceae and contrast these with hypotheses derived using standard 4-state models. There is little practical difference amongst relationships inferred for Syzygium although for Myrtaceae, there are several differences. The RNA-specific approach finds topologies that are less resolved but are more consistent with conventional views of myrtaceous relationships, compared with the 4-state models. (c) 2006 Elsevier Inc. All rights reserved.
机译:核糖体DNA的内部转录间隔子(ITS)被广泛用于系统发育推断。一些特征,包括RNA二级结构对ITS突变动力学的影响,可能会影响从这些区域估计的系统发育的准确性。在这里,我们为被子植物桃金娘科的代表开发了RNA二级结构预测。在此基础上,我们评估了76个分类群Syzygium比对以及更广泛的全家族桃金娘ITS数据集的结构(茎与环)分区和RNA特异性(配对位点)模型的实用性。我们使用置换方法来证明结构分区显着提高了数据的可能性。类似地,考虑到RNA结构中茎对非独立性的模型比没有模型的模型具有更高的可能性。 ITS的最佳拟合RNA模型是排除茎对中同时发生双取代的模型,这表明在茎对的高比例位点缺乏针对非经典(G.U / U.G)碱基对的强选择。我们将RNA特异性模型应用于Syzygium和桃金娘科的系统发育,并将其与使用标准4态模型得出的假设进行对比。尽管对于桃金娘科而言,在推断出的蒲桃属之间的关系之间几乎没有实际的差异。与4态模型相比,RNA特异性方法发现的拓扑结构解析性较差,但与传统的近曲体关系视图更为一致。 (c)2006 Elsevier Inc.保留所有权利。

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