系统发生组数据解析了裸子植物(Selaginellaceae)的深层关系

Jing Zhao, Zhao‐Rong He, Shao-Li Fang, Xu-Ke Han, Lu-Yao Jiang, Yu-Ping Hu, Hong Yu, Li-Bing Zhang, Xin‐Mao Zhou
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引用次数: 0

摘要

糙叶芹亚科(Gymnogynoideae)(约 130 种)的系统发育框架尚未解决,这阻碍了我们对糙叶芹科(陆生植物进化中最重要的科系之一)的多样性和进化的理解。在此,我们基于对除裸子植物门中两个属以外的所有属中超过 90% 的物种进行基因组测序所提取的质体和核数据,开展了一项系统发生组学研究,重点关注裸子植物门中各属之间存在争议的关系。主要结果如下(1)在维管束植物中首次发现Afroselaginella只有单拷贝区(命名为NR)和一个核糖体操作子,Gymnogynoideae的质体结构在6个属中具有多样性,推断直接重复(DR)类型是该亚科的祖先状态;(2)首次发现强有力的证据支持Afroselaginella是Megaloselaginella的姊妹属。发现了 Ericetorum 和 Gymnogynum 的其他位置,并通过分析系统发生信号的变化研究了它们之间的关系;(3) Gymnogynoideae 中最可能的属级关系可能是(基于质体数据集的最大似然系统发育、基于 SCG 数据集的最大似然和贝叶斯推断以及基于核与质体数据集的贝叶斯推断均支持该关系,且质体基因的系统发育信号比例最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phylogenomic data resolved the deep relationships of Gymnogynoideae (Selaginellaceae)
The unresolved phylogenetic framework within the Selaginellaceae subfamily Gymnogynoideae (ca. 130 species) has hindered our comprehension of the diversification and evolution of Selaginellaceae, one of the most important lineages in land plant evolution. Here, based on plastid and nuclear data extracted from genomic sequencing of more than 90% species of all genera except two in Gymnogynoideae, a phylogenomic study focusing on the contentious relationships among the genera in Gymnogynoideae was conducted. Our major results included the following: (1) Only single-copy region (named NR) and only one ribosomal operon was firstly found in Afroselaginella among vascular plants, the plastome structure of Gymnogynoideae is diverse among the six genera, and the direct repeats (DR) type is inferred as the ancestral state in the subfamily; (2) The first strong evidence was found to support Afroselaginella as a sister to Megaloselaginella. Alternative placements of Ericetorum and Gymnogynum were detected, and their relationships were investigated by analyzing the variation of phylogenetic signals; and (3) The most likely genus-level relationships in Gymnogynoideae might be: ((Bryodesma, Lepidoselaginella), (((Megaloselaginella, Afroselaginella), Ericetorum), Gymnogynum)), which was supported by maximum likelihood phylogeny based on plastid datasets, maximum likelihood, and Bayesian inference based on SCG dataset and concatenated nuclear and plastid datasets and the highest proportion of phylogenetic signals of plastid genes.
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