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首页> 外文期刊>Molecular phylogenetics and evolution >Structure, molecular evolution, and phylogenetic utility of he 5' region of the external transcribed spacer of 18S-26S rDNA in Lessingia (Compositae, Astereae)
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Structure, molecular evolution, and phylogenetic utility of he 5' region of the external transcribed spacer of 18S-26S rDNA in Lessingia (Compositae, Astereae)

机译:莱辛西亚(菊科,菊科)18S-26S rDNA外部转录间隔区的5'区域的结构,分子进化和系统发育性

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The 18S-26S nuclear rDNA external transcribed spacer (ETS) has recently gained attention as a region that is valuable in phylogenetic analyses of angiosperms primarily because it can supplement nucleotide variation from the widely used and generally shorter internal transcribed spacers (ITS-1 and ITS-2) and thereby improve phylogenetic resolution and clade support in rDNA trees. Subrepeated ETS sequences (often occurring in the 5' region) can, however, create a challenge for systematists interested in using ETS sequence data for phylogeny reconstruction. We sequenced the 5'ETS for members of Lessingia (Compositae, Astereae) and close relatives (26 taxa total) to characterize the subrepeat variation across a group of closely related plat lineages and to gain improved understanding of the structure, molecular evolution, and phylogenetic utility of the region. The 5'ETS region of Lessingia and relatives varied in length from ~245 to 1009 bp due to the presence of a variable number of subrepeats (one to eight). We assessed homology of the subrepeats using phylogenetic analysis and concluded that only two of the subrepeats and a portion of a third (~282 bp in total) were orthologous across Lessingia and could be aligned with confidence and included in further analyses. When the partial 5'ETS data were combined with 3'ETS and ITS data in phylogenetic analyses, no additional resolution of relationships among taxa was obtained beyond that found from analysis of 3'ETS + ITS sequences. Inferred patterns of concerted evolution indicate that homogenization is occurring at a faster rate in the 3'ETS and ITS regions than in the 5'ETS region. Additionally, homogenization appears to be acting within but not among subrepeats of the same rDNA array. We conclude that challenges in assessing subrepeat orthology across taxa greatly limit the utility of the 5'ETS region for phylogenetic analyses among species of Lessingia.
机译:18S-26S核rDNA外部转录间隔子(ETS)作为一个在被子植物系统发育分析中有价值的区域最近受到关注,主要是因为它可以补充广泛使用的且通常较短的内部转录间隔子(ITS-1和ITS)的核苷酸变异-2),从而改善rDNA树的系统发育分辨率和进化枝支持。然而,亚重复的ETS序列(通常出现在5'区域)可能给有兴趣使用ETS序列数据进行系统发育重建的系统学家带来挑战。我们对Lessingia(菊科,菊科)和近亲(共26个分类单元)成员的5'ETS进行了测序,以表征一组紧密相关的谱系谱系的亚重复变异,并获得了对结构,分子进化和系统发育的更好的理解该地区的效用。由于存在可变数目的亚重复序列(1至8个),Lessingia及其亲属的5'ETS区长度在〜245至1009 bp之间变化。我们通过系统进化分析评估了亚重复序列的同源性,并得出结论,亚瑟尼亚的亚重复序列中只有两个亚重复序列和三分之一(总计约282 bp)是直系同源的,可以放心地进行排列并包括在进一步的分析中。当在系统发育分析中将部分5'ETS数据与3'ETS和ITS数据结合在一起时,除了从3'ETS + ITS序列分析中发现的分类单元之间的关系,其他分辨率都无法获得。推断的一致进化模式表明,在3'ETS和ITS区域中,均质化的速度比在5'ETS区域中均化的速度快。此外,同质化似乎在同一rDNA阵列的亚重复序列内起作用,但不起作用。我们得出的结论是,评估整个类群的亚重复拼写法的挑战极大地限制了5'ETS区域在莱辛西亚种之间进行系统发育分析的效用。

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