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重温蹄盖蕨属(蹄盖蕨科)的系统发育:基于质体基因组和系统发育树空间分析解析骨干关系。

Phylogeny of Diplazium (Athyriaceae) revisited: Resolving the backbone relationships based on plastid genomes and phylogenetic tree space analysis.

机构信息

State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, The Chinese Academy of Sciences, Beijing 100093, China.

State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, The Chinese Academy of Sciences, Beijing 100093, China.

出版信息

Mol Phylogenet Evol. 2020 Feb;143:106699. doi: 10.1016/j.ympev.2019.106699. Epub 2019 Dec 4.

Abstract

Despite progress in resolving the phylogeny of twinsorus ferns (Diplazium) based on multilocus phylogenetic studies, uncertainty remains especially for deep, or backbone relationships among closely related clades, suggesting a classic case of rapid evolutionary radiation. Here, we investigated the deep phylogenetic relationships within Diplazium by sampling all major clades and using 51 plastid genomes (plastomes), of which 38 were newly sequenced with high-throughput sequencing technology, resulting more than 127,000 informative sites. Using parsimony, maximum likelihood and Bayesian analyses of plastome sequences, we largely resolved the backbone of the phylogeny of Diplazium with strong support. However, we also detected phylogenetic incongruence among different datasets and moderately to poorly supported relationships, particularly at several extremely short internal branches. By using phylogenetic tree space and topology-clustering analyses, we provide evidence that conflicting phylogenetic signals can be found across the trees estimated from individual chloroplast protein-coding genes, which may underlie the difficulty of systematics of Diplazium. Furthermore, our phylogenetic estimate offers more resolution over previous multilocus analyses, providing a framework for future taxonomic revisions of sectional classification of Diplazium. Our study demonstrates the advantage of a character-rich plastome dataset, combining the comparison of different phylogenetic methods, for resolving the recalcitrant lineages that have undergone rapid radiation and dramatic changes in evolutionary rates.

摘要

尽管基于多基因座系统发育研究已经在双胞胎蕨(Diplazium)的系统发育解析方面取得了进展,但仍存在不确定性,尤其是在密切相关分支之间的深层或骨干关系方面,这表明这是一个快速进化辐射的经典案例。在这里,我们通过采样所有主要分支并用 51 个质体基因组(质体基因组)来研究 Diplazium 内部的深层系统发育关系,其中 38 个是使用高通量测序技术新测序的,产生了超过 127000 个信息位点。使用简约法、最大似然法和贝叶斯分析质体序列,我们在很大程度上解决了 Diplazium 系统发育的骨干问题,支持力度很强。然而,我们也检测到不同数据集之间存在系统发育不一致性和中度至低度支持的关系,特别是在几个非常短的内部分支上。通过使用系统发育树空间和拓扑聚类分析,我们提供了证据表明,在从单个叶绿体蛋白编码基因估计的树上可以找到相互冲突的系统发育信号,这可能是 Diplazium 系统学困难的基础。此外,我们的系统发育估计比以前的多基因座分析提供了更高的分辨率,为未来 Diplazium 分类群的分类修订提供了框架。我们的研究表明,对于解决经历快速辐射和进化率剧烈变化的顽固谱系,富含特征的质体数据集与不同系统发育方法的比较相结合具有优势。

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