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Phylogenetic analysis of 83 plastid genes further resolves the early diversification of eudicots

机译:系统发育分析的83个质体基因进一步解决了双子叶植物的早期多样化

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摘要

Although Pentapetalae (comprising all core eudicots except Gunnerales) include ≈70% of all angiosperms, the origin of and relationships among the major lineages of this clade have remained largely unresolved. Phylogenetic analyses of 83 protein-coding and rRNA genes from the plastid genome for 86 species of seed plants, including new sequences from 25 eudicots, indicate that soon after its origin, Pentapetalae diverged into three clades: (i) a “superrosid” clade consisting of Rosidae, Vitaceae, and Saxifragales; (ii) a “superasterid” clade consisting of Berberidopsidales, Santalales, Caryophyllales, and Asteridae; and (iii) Dilleniaceae. Maximum-likelihood analyses support the position of Dilleniaceae as sister to superrosids, but topology tests did not reject alternative positions of Dilleniaceae as sister to Asteridae or all remaining Pentapetalae. Molecular dating analyses suggest that the major lineages within both superrosids and superasterids arose in as little as 5 million years. This phylogenetic hypothesis provides a crucial historical framework for future studies aimed at elucidating the underlying causes of the morphological and species diversity in Pentapetalae.
机译:尽管五瓣蓬(包括除枪虫草以外的所有核心雌性双子叶植物)占所有被子植物的约70%,但该进化枝的主要血统的起源和相互之间的关系仍悬而未决。对86种种子植物的质体基因组中的83种蛋白质编码和rRNA基因进行了系统进化分析,包括来自25个双子叶植物的新序列,表明五倍体起源后很快分成了三个进化枝:(i)由蔷薇科,蔷薇科和虎耳草科; (ii)由黄柏,桑塔拉莱斯,石竹科和菊科组成的“超级星系”进化枝; (iii)杜鹃花科。最大似然分析支持Dilleniaceae作为超硬体姐妹的位置,但是拓扑测试并未拒绝Dilleniaceae作为Asteridae或所有其余的Pentapetalae姐妹的替代位置。分子测年分析表明,超类和超类星体中的主要谱系在短短五百万年内就出现了。这种系统发育假说为今后的研究提供了至关重要的历史框架,旨在阐明五角莲的形态和物种多样性的根本原因。

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