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Plastomes of nine hornbeams and phylogenetic implications

机译:九个角树的质膜及其系统发育意义

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Poor phylogenetic resolution and inconsistency of gene trees are major complications when attempting to construct trees of life for various groups of organisms. In this study, we addressed these issues in analyses of the genus Carpinus (hornbeams) of the Betulaceae. We assembled and annotated the chloroplast (cp) genomes (plastomes) of nine hornbeams representing main clades previously distinguished in this genus. All nine plastomes are highly conserved, with four regions, and about 158–160?kb long, including 121–123 genes. Phylogenetic analyses of whole plastome sequences, noncoding sequences, and the well‐aligned coding genes resulted in high resolution of the sampled species in contrast to the failure based on a few cpDNA markers. Phylogenetic relationships in a few clades based only on the coding genes are slightly inconsistent with those based on the noncoding and total plastome datasets. Moreover, these plastome trees are highly incongruent with those based on bi‐parentally inherited internal transcribed spacer (ITS) sequence variations. Such high inconsistencies suggest widespread occurrence of incomplete lineage sorting and hybrid introgression during diversification of these hornbeams.
机译:当试图为各种生物体构建生命树时,不良的系统发育分辨率和基因树的不一致是主要的并发症。在这项研究中,我们在分析鲸科的Carpinus(角木)属时解决了这些问题。我们组装并注释了九个角树的叶绿体(cp)基因组(plastomes),这些角树代表以前在该属中区分的主要进化枝。所有九个质体组都高度保守,有四个区域,长约158-160?kb,包括121-123个基因。对整个质体组序列,非编码序列和排列良好的编码基因进行系统进化分析,与基于少数cpDNA标记的失败相比,可以使采样物种具有较高的分辨率。仅基于编码基因的少数进化枝中的系统发生关系与基于非编码和整个质体组数据集的系统发生关系略有不一致。此外,这些质体树与基于双亲遗传的内部转录间隔区(ITS)序列变异的树体高度不一致。如此高的不一致性表明,在这些角树的多样化过程中,普遍存在不完整的谱系分类和杂种渗入现象。

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