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首页> 外文期刊>Frontiers in Plant Science >Plastid Genome Comparative and Phylogenetic Analyses of the Key Genera in Fagaceae: Highlighting the Effect of Codon Composition Bias in Phylogenetic Inference
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Plastid Genome Comparative and Phylogenetic Analyses of the Key Genera in Fagaceae: Highlighting the Effect of Codon Composition Bias in Phylogenetic Inference

机译:菊科关键属的质体基因组比较和系统发育分析:突出密码子组成偏见在系统发生推断中的作用。

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摘要

Fagaceae is one of the largest and economically important taxa within Fagales. Considering the incongruence among inferences from plastid and nuclear genes in the previous Fagaceae phylogeny studies, we assess the performance of plastid phylogenomics in this complex family. We sequenced and assembled four complete plastid genomes ( Fagus engleriana, Quercus spinosa, Quercus aquifolioides , and Quercus glauca ) using reference-guided assembly approach. All of the other 12 published plastid genomes in Fagaceae were retrieved for genomic analyses (including repeats, sequence divergence and codon usage) and phylogenetic inference. The genomic analyses reveal that plastid genomes in Fagaceae are conserved. Comparing the phylogenetic relationships of the key genera in Fagaceae inferred from different codon positions and gene function datasets, we found that the first two codon sites dataset recovered nearly all relationships and received high support. Thus, the result suggested that codon composition bias had great influence on Fagaceae phylogenetic inference. Our study not only provides basic understanding of Fagaceae plastid genomes, but also illuminates the effectiveness of plastid phylogenomics in resolving relationships of this intractable family.
机译:菊科是Fagales中最大的,经济上重要的生物分类之一。考虑到以前的菊科系统发育研究中质体和核基因推论之间的不一致,我们评估了这个复杂家族中质体系统学的性能。我们使用参考引导的组装方法对四个完整的质体基因组进行了测序和组装(英国青冈(Fabus engleriana),棘栎(Quercus spinosa),无盖栎(Quercus aquifolioides)和栎(Quercus glauca))。检索了菊科的其他所有12个质体基因组,以进行基因组分析(包括重复,序列差异和密码子使用)和系统发育推断。基因组分析表明,菊科的质体基因组是保守的。比较从不同密码子位置和基因功能数据集推断出的菊科关键属的系统发育关系,我们发现前两个密码子位点数据集几乎恢复了所有关系并获得了高度支持。因此,该结果表明密码子组成偏向对菊科的系统发育推断有很大的影响。我们的研究不仅提供了茄属植物质体基因组的基本理解,而且阐明了质体系统发育组学在解决这一顽固家族关系方面的有效性。

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