首页> 外文期刊>American Journal of Botany >Molecular systematics of Apiaceae subfamily Apioideae: phylogenetic analyses of nuclear ribosomal DNA internal transcribed spacer and plastid RPO C1 intron sequences
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Molecular systematics of Apiaceae subfamily Apioideae: phylogenetic analyses of nuclear ribosomal DNA internal transcribed spacer and plastid RPO C1 intron sequences

机译:伞形科亚科的分子系统:核糖体DNA内部转录间隔区和质体RPO C1内含子序列的系统发育分析

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Evolutionary relationships among representatives of Apiaceae (Umbelliferae) subfamily Apioideae have been inferred from phylogenetic analyses of nuclear ribosomal DNA internal transcribed spacer (ITS 1 and ITS 2) and plastid rpoC1 intron sequences. High levels of nucleotide sequence variation preclude the use of the ITS region for examining relationships across subfamilial boundaries in Apiaceae, whereas the rpoC1 intron is more suitably conserved for family-wide phylogenetic study but is too conserved for examining relationships among closely related taxa. In total, 126 ITS sequences from subfamily Apioideae and 100 rpoC1 intron sequences from Apiaceae (all three subfamilies) and outgroups Araliaceae and Pittosporaceae were examined. Phylogenies estimated using parsimony, neighbor-joining, and maximum likelihood methods reveal that: (1) Apiaceae subfamily Apioideae is monophyletic and is sister group to Apiaceae subfamily Saniculoideae; (2) Apiaceae subfamily Hydrocotyloideae is not monophyletic, with some members strongly allied to Araliaceae and others to Apioideae + Saniculoideae; and (3) Apiaceae subfamily Apioideae comprises several well-supported subclades, but none of these coincide with previously recognized tribal divisions based largely on morphological and anatomical characters of the fruit. Four major clades in Apioideae are provisionally recognized and provide the framework for future lower level phylogenetic analyses. A putative secondary structure model of the Daucus carota (carrot) rpoC1 group II intron is presented. Of its six major structural domains, domains II and III are the most, and domains V and VI the least, variable.
机译:通过对核糖体DNA内部转录间隔子(ITS 1和 ITS)的系统发育 分析,推断了伞形科(伞形科) 亚科的代表之间的进化关系。 2)和质体rpoC1内含子序列。高水平的核苷酸 序列变异排除了使用ITS区域检查蚜科亚家族边界的 关系的方法,而rpoC1 内含子更合适保留用于整个家庭的系统发育研究,但 仍然非常保守,无法检查密切相关的类群之间的关系。在 总数中,检查了蚜虫科亚科的126条ITS序列和伞形科(全部三个亚科)以及伞形科 和斑竹科的100个rpoC1内含子 序列。使用简约, 邻居联接和最大似然方法估计的系统发育揭示:(1)pi科 亚科Apioideae是单系的,是A科 Saniculoideae亚科; (2)伞形科亚科Hypercotyloideae不是单系的,有些成员与Araliaceae有密切的联系,而另一些则与Apioideae + Saniculoideae有密切的联系; (3)伞形科亚科Apioideae包含几个支撑良好的子分支,但这些子分支均与 先前公认的部落划分相吻合,后者主要基于形态学和 水果的解剖特征。暂时认识了蚜虫科中的四个主要进化枝,并为以后的较低水平的系统发育分析提供了框架。提出了Daucus 胡萝卜(胡萝卜)rpoC1 II组内含子的二级结构模型。在六个主要的 结构域中,域II和III最多,而域V和VI 最小。

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