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首页> 外文期刊>Molecular phylogenetics and evolution >The phylogeny of the BEP clade in grasses revisited: Evidence from the whole-genome sequences of chloroplasts
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The phylogeny of the BEP clade in grasses revisited: Evidence from the whole-genome sequences of chloroplasts

机译:草地中BEP进化枝的系统发育:叶绿体全基因组序列的证据

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Despite the considerable efforts to reconstruct the phylogeny of grasses, the relationships among the subfamilies Bambusoideae, Pooideae and Ehrhartoideae in the BEP clade remain unresolved. Here we completely sequenced three chloroplast genomes of representative species from Bambusoideae and Ehrhartoideae and obtained 19 additional chloroplast genome sequences of other grasses from GenBank. Using sequences of 76 chloroplast protein-coding genes from the 22 grass species, we fully resolved the phylogeny of the BEP clade. Our results strongly supported the (B,P)E hypothesis, i.e., Bambusoideae and Pooideae are more closely related than Ehrhartoideae. This result was not biased by systematic or sampling errors and was impervious to phylogenetic methods or model specification. The divergence time estimate suggests that the initial diversification of the BEP clade into three subfamilies happened within a short time period (~4. MY). The presence of these short internal branches may explain the inability of previous studies to achieve a confident resolution of the BEP clade. The combination of the sequences of the entire chloroplast genomes provided sufficient phylogenetic information to resolve the BEP phylogeny fully. These results provide a valuable evolutionary framework for comparative and functional genomic studies using the grass family as a model system.
机译:尽管为重建草地的系统发育付出了巨大的努力,但BEP进化枝中的竹节亚科、,科和and科的亚科之间的关系仍未得到解决。在这里,我们完整地测序了来自棒杆菌科和拟杆菌科的代表性物种的三个叶绿体基因组,并从GenBank获得了其他草的19个其他叶绿体基因组序列。使用来自22种草的76个叶绿体蛋白编码基因的序列,我们完全解析了BEP进化枝的系统发育。我们的结果有力地支持了(B,P)E假说,即Bambusoideae和Pooideae比Ehrhartoideae更紧密相关。该结果不受系统误差或采样误差的影响,并且不受系统发育方法或模型规格的影响。分歧时间估计表明,BEP进化枝最初的分化为三个亚科是在短时间内(〜4。MY)发生的。这些短的内部分支的存在可能解释了以前的研究无法实现BEP进化论的可靠解决。整个叶绿体基因组序列的组合提供了足够的系统发育信息,可以完全解析BEP系统发育。这些结果为使用草科作为模型系统进行比较和功能基因组研究提供了有价值的进化框架。

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