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New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae)

机译:绿藻属(鞘翅目,绿藻科,绿藻科)对分子系统学和寄主植物结合进化的新贡献

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The taxonomic circumscription of the large and diverse leaf beetle genus Chrysolina Motschulsky is not clear, and its discrimination from the closely related genus Oreina Chevrolat has classically been controversial. In addition, the subgeneric arrangement of the species is unstable, and proposals segregating Chrysolina species into new genera have been recently suggested. In this context, the availability of a phylogenetic framework would provide the basis for a stable taxonomic system, but the existing phylogenies are based on few taxa and have low resolution. In the present study we perform a phylogenetic analysis based on mitochondrial (cox1 and rrnL) and nuclear (H3) DNA sequences from a sample of fifty-two Chrysolina species representing almost half of the subgeneric diversity of the group (thirty out of sixty-five subgenera) and most of the morphological, ecological and karyological variation in the genus. In addition, five Oreina species from two subgenera have also been analysed. The resulting phylogeny is used to evaluate some of the most relevant taxonomic hypotheses for Chrysolina, and also to reconstruct its ancestral host plant associations in a Bayesian framework. Our findings support the paraphyly of Chrysolina as currently defined due to the inclusion of Oreina, the monophyly of the Chrysolina (plus Oreina) species including the divergent Chrysolina (Polysticta) vigintimaculata (Clark, 1864), and enable inferences of deep-level evolutionary relationships among the studied subgenera. The plant family Lamiaceae is inferred as the ancestral host of the study group, whose evolution is characterized by continuous host-shifting among pre-existing host plant families. Some Chrysolina clades include mixtures of species with different levels of diet breadth, indicating that niche width has varied through time.
机译:大型和多样的叶甲虫属Chrysolina Motschulsky的分类学界限尚不清楚,其与密切相关的Oreina Chevrolat属的区别在经典上一直存在争议。另外,该物种的亚属安排是不稳定的,最近提出了将绿藻科物种分成新属的提议。在这种情况下,系统发育框架的可用性将为稳定的分类系统提供基础,但是现有的系统发育基于很少的分类单元并且分辨率较低。在本研究中,我们基于线粒体(cox1和rrnL)和核(H3)DNA序列进行了系统发育分析,该序列来自五十二种Ch类物种的样本,这些物种几乎代表了该亚种的一半(六十五种中的三十种)亚属)和该属的大多数形态,生态和核学变异。此外,还分析了来自两个亚属的五个Oreina物种。由此产生的系统发育被用于评估金藻的一些最相关的分类学假说,并在贝叶斯框架中重建其祖先的宿主植物协会。我们的研究结果支持了目前定义的Chrysolina属植物,因为包含了Oreina,包括分散的Chrysolina(Polysticta)vigintimaculata(Clark,1864)在内的Chrysolina(加上Oreina)物种的单属植物,并能够推断出深层次的进化关系在所研究的子属中。植物科唇形科被认为是该研究组的祖先寄主,其进化的特征是在已有的寄主植物科之间不断发生寄主转移。某些藻类进化枝包含不同饮食宽度水平的物种混合物,表明生态位宽度随时间变化。

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