首页> 外文期刊>Zoologischer Anzeiger >An unfinished speciation process revealed by geometric morphometrics, horn allometries and biomolecular analyses: The case of the fracticornis-similis-opacicollis species complex of the genus Onthophagus (Coleoptera: Scarabaeidae)
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An unfinished speciation process revealed by geometric morphometrics, horn allometries and biomolecular analyses: The case of the fracticornis-similis-opacicollis species complex of the genus Onthophagus (Coleoptera: Scarabaeidae)

机译:几何形态计量学,角形变构和生物分子分析揭示的未完成的物种形成过程:Onthophagus(鞘翅目:Scarabaeidae)属的fracticornis-similis-opacicollis物种复合物的情况

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摘要

Species complexes, composed by closely related species of difficult identification for their morphological similarity, provide unique opportunity to study the early phases of morphological and genetic differentiation and the microevolutionary dynamics promoting speciation.Within the genus Onthophagus the presence of many species complexes and sibling species testify to a recent impressive adaptive radiation. We focused on the debated species-complex Onthophagus (Palaeonthophagus) '. fracticornis-. similis-. opacicollis' as a model to study the evolution of morphology, the role of male polyphenism and the microevolutionary dynamics promoting speciation. Even if at present there is a general consensus that Onthophagus fracticornis is a good species, greater discrepancies arise on the taxonomic status of Onthophagus similis and Onthophagus opacicollis: according to some authors these are sibling species with a wide range of sympatry whilst others maintain they are morphotypes of a single, polymorphic species. To investigate the relationships within the complex and to study evolution of morphology and the dynamics of their differentiation, we studied together allopatric and sympatric populations integrating multiple approaches: the geometric morphometric analysis of the shapes of genital and non-genital morphological structures, the comparison of horn static allometries and the biomolecular analysis of a mitochondrial gene. The results provided a complex and often incongruent pattern of morphological and genetic evolution, consistent with a hypothesis of a still unfinished speciation process in sympatric areas and a fully realised speciation by means of ecological segregation in allopatry.
机译:物种复合物由形态相似的难以识别的密切相关物种组成,为研究形态学和遗传分化的早期阶段以及促进物种形成的微进化动力学提供了独特的机会。在On虫属中,许多物种复合物和同胞物种的存在证明了到最近令人印象深刻的自适应辐射。我们集中讨论了有争议的物种-复杂的Onthophagus(Palaeonthophagus)'。 fracticornis-。 similis-。 opacicollis”作为模型来研究形态演变,雄性多态性的作用以及促进物种形成的微进化动力学。即使目前人们普遍认为,Onthophagus fracticornis是一个好物种,但Onthophagus similis和Onthophagus opacicollis在分类学上的地位仍存在较大差异:据一些作者称,它们是具有广泛交感的同胞物种,而其他人则认为它们是单个多态物种的形态型。为了研究复合体之间的关系并研究形态学的演变及其分化动力学,我们一起研究了多种方法结合的异源性和同族人群:生殖器和非生殖器形态结构的几何形态分析,比较牛角静态同构异形体和线粒体基因的生物分子分析。结果提供了形态学和遗传进化的复杂且常常不一致的模式,这与关于同胞地区物种形成过程尚未完成以及通过异农学中的生态隔离完全实现物种形成的假设相一致。

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