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首页> 外文期刊>Annals of Botany >Phylogeny of the ‘orchid-like’ bladderworts (gen. Utricularia sect. Orchidioides and Iperua: Lentibulariaceae) with remarks on the stolon–tuber system
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Phylogeny of the ‘orchid-like’ bladderworts (gen. Utricularia sect. Orchidioides and Iperua: Lentibulariaceae) with remarks on the stolon–tuber system

机译:“兰花”血管生成的植物(Gen.utricularia sect。orchidioides和Iperua:Lentibulariaceae)关于Stolon-Tuber系统的言论

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摘要

Background and Aims The ‘orchid-like’ bladderworts (Utricularia) comprise 15 species separated into two sections: Orchidioides and Iperua. These robust and mostly epiphytic species were originally grouped within the section Orchidioides by the first taxonomical systems. These species were later split into two sections when sect. Iperua was proposed. Due to the lack of strong evidence based on a robust phylogenetic perspective, this study presents a phylogenetic proposal based on four different DNA sequences (plastid and nuclear) and morphology to test the monophyly of the two sections.Methods In comparison with all previous phylogenetic studies, the largest number of species across the sections was covered: 11 species from sections Orchidioides and Iperua with 14 species as an external group. Maximum likelihood and Bayesian inferences were applied to DNA sequences of rps16, trnL-F, matK, the internal transcribed spacer (ITS) and three morphological characters: (1) the crest of the corolla; (2) the primary organs in the embryo; and (3) tubers. Additionally, a histochemical analysis of the stolons and tubers is presented from an evolutionary perspective.Key Results The analyses showed the paraphyly of sect. Iperua, since Utricularia humboldtii is more related to the clade of sect. Orchidioides. Utricularia cornigera is grouped in the sect. Iperua clade based on chloroplast DNA sequences, but it is nested to sect. Orchidioides according to ITS dataset. Morphological characters do not support the breaking up of the ‘orchid-like’ species into two sections, either. Moreover, the stolon–tuber systems of both sections serve exclusively for water storage, according to histological analyses.Conclusions This study provides strong evidence, based on DNA sequences from two genomic compartments (plastid and nucleus) and morphology to group the Utricularia sect. Orchidioides into the sect. Iperua. The tubers are important adaptations for water storage and have been derived from stolons at least twice in the phylogenetic history of ‘orchid-like’ bladderworts.
机译:背景和瞄准“兰花”血管包围(Utricularia)包含15种分为两部分:甲酰胺和IPerua。这些稳健且大多数果皮物种最初由第一个分类系统在植物果酰亚胺部分内进行分组。当宗教时,这些物种后来被分成了两个部分。 IPerua是提出的。由于基于稳健的系统发育的角度缺乏有力的证据,本研究提出了一种基于四种不同的DNA序列(塑性和核)和形态学的系统发育提案,以测试两部分的单层。与前一个系统发育研究相比,方法,涵盖了各部分中最大的物种数量:11种来自植物果实和14种作为外部组的IPerua。最大可能性和贝叶斯推论被应用于RPS16,TRNL-F,MATK,内部转录间隔(其)和三种形态特征的DNA序列:(1)花冠的嵴; (2)胚胎中的主要器官;和(3)块茎。另外,从进化的透视中提出了Stolons和Tubers的组织化学分析。根据结果,分析显示了派对的令人烦恼。 IPerua,因为Utricularia Humboldtii更与派系的思考有关。植物。 Utricularia cornigera被分组在派别中。基于叶绿体DNA序列的IPerua思考,但它嵌套在派系上。根据其数据集的植物。形态学特征不支持将“兰花”种类分解为两部分。此外,根据组织学分析,两个部分的斯托隆 - 块茎系统仅用于储水。该研究提供了强大的证据,基于来自两个基因组隔室(塑性和核)的DNA序列和对Utricularia派对组的形态。果实进入派生。 IPerua。块茎是储水的重要适应性,并且在“兰花样”Bladderworts的系统发育史上至少两次衍生自毒素。

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