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首页> 外文期刊>American Journal of Botany >Molecular phylogenetics of the Espeletia complex (Asteraceae): evidence from nrDNA ITS sequences on the closest relatives of an Andean adaptive radiation
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Molecular phylogenetics of the Espeletia complex (Asteraceae): evidence from nrDNA ITS sequences on the closest relatives of an Andean adaptive radiation

机译:Espeletia复合体(菊科)的分子系统发育:来自安第斯适应性辐射的近亲的nrDNA ITS序列的证据

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摘要

The subtribe Espeletiinae (Asteraceae, Heliantheae) comprises morphologically and ecologically diverse plants endemic to the tropical montane paramos of the Andes of Venezuela, Colombia, and Ecuador. Though the ecophysiology and ecology of this adaptive radiation have been well studied, relationships among taxa in the subtribe and between the subtribe and other taxa in the Heliantheae are poorly known. In this study, sequences from the internal transcribed spacer (ITS) region of nuclear ribosomal DNA are used to test previous hypotheses about the phylogenetic position of the Espeletiinae within the Heliantheae and to determine which taxa are the subtribe's closest relatives. Gene phylogenies based on maximum parsimony analyses reveal that the Espeletiinae clade is nested well within the subtribe Melampodiinae and thus should be considered a monophyletic complex of species, not a separate subtribe. The most parsimonious gene trees suggest that the genus Ichthyothere may be the sister taxon to the Espeletia complex and that the genus Smallanthus and a species of Rumfordia are likely among the complex's other closest living relatives. These data offer preliminary insights into the origins of this adaptive radiation and the broader phylogenetic context in which it occurred.
机译:Espeletiinae亚科(菊科,Heliantheae)由 形态和生态多样的植物特有于委内瑞拉安第斯山脉的热带山地帕拉莫斯,哥伦比亚, 和厄瓜多尔尽管已经很好地研究了这种适应性 辐射的生态生理和生态学,但是 子部落中的分类单元之间以及 中的子部落与其他分类单元之间的关系。向日葵科鲜为人知。在这项研究中,来自核糖体 DNA的内部转录间隔区(ITS)区域的序列被用于检验先前关于RNA的系统发生 位置的假设。并确定 哪个类群是该部落的近亲。基于最大简约分析的基因系统发育 显示,Espeletiinae 进化枝很好地嵌套在黑猩猩亚部落中,因此 应被视为物种的单系复合体,不是 单独的子部落。最简约的基因树提示 Ichthyothere属可能是Espeletia 复合体的姊妹分类,而Smallanthus属和Rumfordia 该复合体的其他最接近的亲属中很可能是这些个体。 这些数据提供了对这种 适应辐射的起源以及更广泛的系统发育背景的初步见解。它发生了。

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