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首页> 外文期刊>Annals of Botany >Polyphyly of Arundinoideae (Poaceae) and evolution of the twisted geniculate lemma awn
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Polyphyly of Arundinoideae (Poaceae) and evolution of the twisted geniculate lemma awn

机译:Arundinoideae(Poaceae)的多重性和扭曲的胰腺引理的演化

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摘要

Background and Aims Subfamily Arundinoideae represents one of the last unsolved taxonomic mysteries in the grass family (Poaceae) due to the narrow and remote distributions of many of its 19 morphologically and ecologically heterogeneous genera. Resolving the phylogenetic relationships of these genera could have substantial implications for understanding character evolution in the grasses, for example the twisted geniculate awn – a hygroscopic awn that has been shown to be important in seed germination for some grass species. In this study, the phylogenetic positions of most arundinoid genera were determined using DNA from herbarium specimens, and their placement affects interpretation of this ecologically important trait.Methods A phylogenetic analysis was conducted on a matrix of full-plastome sequences from 123 species in 107 genera representing all grass subfamilies, with 15 of the 19 genera in subfamily Arundinoideae. Parsimony and maximum likelihood mapping approaches were used to estimate ancestral states for presence of a geniculate lemma awn with a twisted column across Poaceae. Lastly, anatomical characters were examined for former arundinoid taxa using light microscopy and scanning electron microscopy.Key Results Four genera traditionally included in Arundinoideae fell outside the subfamily in the plastome phylogeny, with the remaining 11 genera forming Arundinoideae sensu stricto. The twisted geniculate awn has originated independently at least five times in the PACMAD grasses, in the subfamilies Panicoideae, Danthonioideae/Chloridoideae and Arundinoideae. Morphological and anatomical characters support the new positions of the misplaced arundinoid genera in the phylogeny, but also highlight convergent and parallel evolution in the grasses.Conclusions In placing the majority of arundinoid genera in a phylogenetic framework, our study answers one of the last remaining big questions in grass taxonomy while highlighting examples of convergent evolution in an ecologically important trait, the hygroscopic, twisted geniculate awn.
机译:背景和AIMS亚家族arundinoideae代表了由于其在形态学和生态异质的狭窄和生态异质的狭窄和远离分布的草地(Poaceae)中的最后一个未解决的分类学神秘之一。解决这些属的系统发育关系可能对理解草中的角色演化的影响,例如扭曲的胰腺AWN - 一种吸湿的AWN,已被证明在一些草种的种子萌发中是重要的。在这项研究中,使用来自Herbarium标本的DNA测定大多数雄激素属的系统发育位置,它们的放置影响了这种生态学重要的特征的解释。方法在107个属的123种的全塑性序列的基质上进行系统发育分析代表所有草属亚属,其中15属亚豚阿鲁尼德西省的19个属。定义和最大似然映射方法用于估算祖先状态的祖先脉状物的存在,以跨痘皮的扭曲柱。最后,使用光学显微镜和扫描电子显微镜检查前雄蛋白毒征的解剖结构.Key结果传统上包括在亚鲁尼单侧藻中的四个属在血糖中落在塑性系统中,其余11属形成arundinoideae sensu stricto。扭曲的果皮AWN在帕米德草地,帕里西亚州帕里西亚岛,黄山诺伊科/氯多水藻藻和雄藤藻藻岛的独立起源于Pacmad Grasses。形态学和解剖结构支持在系统发育中出现错位的雄曲霉属属的新位置,而且还突出了草丛中的会聚和平行进化。结论在系统发育框架中将大多数雄曲霉属属的结论,我们的研究回答了最后的剩余大大的大草分类中的问题,同时突出了生态重要性特征的收敛演变的例子,吸湿性扭曲的胰腺AWN。

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