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首页> 外文期刊>Kew Bulletin >Molecular and morphological phylogenetics of the digitate-tubered clade within subtribe Orchidinae s.s. (Orchidaceae: Orchideae)
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Molecular and morphological phylogenetics of the digitate-tubered clade within subtribe Orchidinae s.s. (Orchidaceae: Orchideae)

机译:子系统植物中的分子和形态学介性分子和形态学瘤。 (Orchidaceae:Orchideae)

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摘要

The digitate-tubered clade (Dactylorhiza s.l. plus Gymnadenia s.l.) within subtribe Orchidinae is an important element of the North-temperate orchid flora and has become a model system for studying the genetic and epigenetic consequences of organism-wide ploidy change. Here, we integrate morphological phylogenetics with Sanger sequencing of nrITS and the plastid region trnL-F in order to explore phylogenetic relationships and phenotypic character evolution within the clade. The resulting morphological phylogenies are strongly incongruent with the molecular phylogenies, instead reconstructing through parsimony the genus-level boundaries recognised by traditional 20th Century taxonomy. They raise fresh doubts concerning whether Pseudorchis is sister to Platanthera or to Dactylorhiza plus Gymnadenia. Constraining the morphological matrix to the topology derived from ITS sequences increased tree length by 20%, adding considerably to the already exceptional level of phenotypic homoplasy. Both molecular and morphological trees agree that D. viridis and D. iberica are the earliest-diverging species within Dactylorhiza (emphasising the redundancy of the former genus Coeloglossum). Morphology and ITS both suggest that the former genus Nigritella is nested within (and thus part of) Gymnadenia, the Pyrenean endemic 'N.' gabasiana apparently forming a molecular bridge between the two radically contrasting core phenotypes. Comparatively short subtending molecular branches plus widespread (though sporadic) hybridisation indicate that Dactylorhiza and Gymnadenia approximate the minimum level of molecular divergence acceptable in sister genera. They share similar tuber morphologies and base chromosome numbers, and both genera are unusually prone to polyploid speciation. Another prominent feature of multiple speciation events within Gymnadenia is floral paedomorphosis. The 'traditional' morphological and candidate-gene approaches to phylogeny reconstruction are critically appraised.
机译:Digiting-uTactibe orchidinae(Dactylorhiza s.l.plus gymnadenia s.l.)在亚洲植物中是九植物兰花植物的重要因素,已成为研究生物体倍率变化的遗传和表观遗传后果的模型系统。在这里,我们将形态学系统源与NRITS的Sanger测序和体积区域TRNL-F一体化,以探讨疏水内部的系统发育关系和表型特征演化。由此产生的形态学文学与分子系统强烈不一致,而是通过传统20世纪分类法认可的判断律师级界限重建。他们提出了伪装是伪装是Platanthera的姐妹还是Dactylorhiza加上体育馆的新鲜怀疑。将形态学基质限制在其序列中源自其序列的晶体,从而增加了20%,相当于现有的表型同性化水平增加。分子和形态学树都同意D. Viridis和D.Iberica是Dactylerhiza中最早发散的物种(强调前属Coeloglossum的冗余)。形态学及其既表明,前尼格里特氏菌在栖息地嵌套(并因此的一部分)栖息地,Pyreaneyey'n.' Gabasiana显然在两个从根本上对比的核型表型之间形成了分子桥。相对较短的细节分子分支加上广泛的(虽然散发性)杂交表明,Dactylerhiza和Gymnadenia近似于姐妹属的最低水平的分子差异。它们共享相似的块茎形态和基染色体数,并且两种完全易于多倍体形态。体育腺炎内多种物种事件的另一个突出特征是花包障碍。 “传统”形态学和候选基因对系统发育重建的方法是至关重要的。

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