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首页> 外文期刊>Flora >Inflorescence structure in the Eriocaulaceae Glade of Paepalanthus dimerous-flowered species and allied groups: tackling evolutionary and taxonomic questions
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Inflorescence structure in the Eriocaulaceae Glade of Paepalanthus dimerous-flowered species and allied groups: tackling evolutionary and taxonomic questions

机译:Paepalanthus缺口沼泽种类和盟友群体的花序结构:解决进化和分类问题

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Inflorescence morphology is regarded as a tool for the understanding and delimitation of natural groups despite historical confusion and misconceptions. In this manuscript we establish the branching patterns and the homologies of the inflorescences in the Glade of Paepalanthus species with dimerous flowers and allied species in order to evaluate their evolutionary and systematic significance. Inflorescences of P. subg. Thebcinoe, P. sect. Conodiscus, P. ser. Dimeri, P. sect. Diphyomene, and Actinocephalus were analyzed into characters and states within a comprehensive, descriptive system. Ancestral character state reconstructions using BayesTraits were performed for relevant characters over a pre-existing phylogeny. Varying from a first-order to a fourth-order structure, inflorescences appear to have an intricate evolutionary history with replication or loss of repetitive units and components, such as the basic units, scapes, and pherophylls. The inflorescence components and branching patterns were found to be highly variable among the species, but very conservative within each category of the current classification system. From a phylogenetic perspective, the characters and states described here, combined with detailed floral studies, are useful for tackling evolutionary and taxonomic concerns, such as the position of the species of P. ser. Dimeri and P. sect. Diphyomene. The approach used here is also appropriate for the family as a whole and is suggested as potentially useful for other angiosperm groups.
机译:尽管历史困惑和误解,但花序形态被认为是自然群体的理解和划界的工具。在本手稿中,我们建立了婴兔子沼泽种植体中花序的分支模式和同源性,以评估其进化和系统的意义。 P. Subg的花序。 TheBcinoe,P. Sect。 Conodiscus,P. Ser。 Dimeri,P. Sect。在全面的描述系统中分析了二维素和Actinocephalus和状态。使用Bayestraits的祖先性格状态重建用于预先存在的系统发育中的相关性状。从一流到第四阶结构的变化,花序似乎具有复杂的进化历史,重复或重复单元和组件的丧失,例如基本单元,切片和嗜啡孢子。在当前分类系统的每个类别中,发现花序分量和分支模式在物种之间具有高度可变的变量,而是非常保守。从系统发育的角度来看,这里描述的人物和状态与详细的花卉研究相结合,可用于解决进化和分类问题,例如P.Ser的物种的位置。 Dimeri和P. Sect。二维素。这里使用的方法也适用于整个家庭,并被建议对其他有神不痛的组有用。

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