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Molecular phylogenetics and character evolution of morphologically diverse groups, Dendrobium section Dendrobium and allies

机译:石D部分,石D和盟友的分子系统发育学和特征进化

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It is always difficult to construct coherent classification systems for plant lineages having diverse morphological characters. The genus Dendrobium, one of the largest genera in the Orchidaceae, includes ~1100 species, and enormous morphological diversification has hindered the establishment of consistent classification systems covering all major groups of this genus. Given the particular importance of species in Dendrobium section Dendrobium and allied groups as floriculture and crude drug genetic resources, there is an urgent need to establish a stable classification system. To clarify phylogenetic relationships in Dendrobium section Dendrobium and allied groups, we analysed the macromolecular characters of the group. Phylogenetic analyses of 210 taxa of Dendrobium were conducted on DNA sequences of internal transcribed spacer (ITS) regions of 18S–26S nuclear ribosomal DNA and the maturase-coding gene (matK) located in an intron of the plastid gene trnK using maximum parsimony and Bayesian methods. The parsimony and Bayesian analyses revealed 13 distinct clades in the group comprising section Dendrobium and its allied groups. Results also showed paraphyly or polyphyly of sections Amblyanthus, Aporum, Breviflores, Calcarifera, Crumenata, Dendrobium, Densiflora, Distichophyllae, Dolichocentrum, Holochrysa, Oxyglossum and Pedilonum. On the other hand, the monophyly of section Stachyobium was well supported. It was found that many of the morphological characters that have been believed to reflect phylogenetic relationships are, in fact, the result of convergence. As such, many of the sections that have been recognized up to this point were found to not be monophyletic, so recircumscription of sections is required.
机译:构造具有不同形态特征的植物谱系的连贯分类系统总是很困难。石end属是兰科最大的属之一,约有1100种,形态上的巨大多样性阻碍了建立涵盖该属所有主要类别的一致分类系统。鉴于铁皮石section科和铁皮石all及其相关群体中的物种作为花艺养殖和原料药遗传资源特别重要,因此迫切需要建立一个稳定的分类系统。为了弄清石D切片和其他石rob组的系统发育关系,我们分析了该组的大分子特征。利用最大简约度和贝叶斯数,对18S–26S核糖体DNA内部转录间隔区(ITS)区域和质体基因trnK内含子中成熟酶编码基因(matK)的DNA序列石210兰的210个分类群进行了系统发育分析。方法。简约和贝叶斯分析揭示了石section节及其盟友组中的13个不同进化枝。结果还显示了伞形科,门孢属,短花科,钙生植物,十字花科,石D兰,石竹科,木犀科,杜鹃科,Holochrysa,草皮和蝶形科的副生或复生。另一方面,很好的支持了水生金鱼草的单性。已经发现,实际上已经反映出系统发育关系的许多形态特征是收敛的结果。因此,到现在为止已被识别的许多切片都不是单系的,因此需要对切片进行重新划界。

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