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首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >Morphological and molecular evidence converge upon a robust phylogeny of the megadiverse Holometabola
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Morphological and molecular evidence converge upon a robust phylogeny of the megadiverse Holometabola

机译:形态学和分子证据都集中在巨型多样的系统进化树上

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摘要

We present the largest morphological character set ever compiled for Holometabola. This was made possible through an optimized acquisition of data. Based on our analyses and recently published hypotheses based on molecular data, we discuss higher-level phylogeny and evolutionary changes. We comment on the information content of different character systems and discuss the role of morphology in the age of phylogenomics. Microcomputer tomography in combination with other techniques proved highly efficient for acquiring and documenting morphological data. Detailed anatomical information (356 characters) is now available for 30 representatives of all holometabolan orders. A combination of traditional and novel techniques complemented each other and rapidly provided reliable data. In addition, our approach facilitates documenting the anatomy of model organisms. Our results show little congruence with studies based on rRNA, but confirm most clades retrieved in a recent study based on nuclear genes: Holometabola excluding Hymenoptera, Coleopterida (= Strepsiptera + Coleoptera), Neuropterida excl. Neuroptera, and Mecoptera. Mecopterida (= Antliophora + Amphiesmenoptera) was retrieved only in Bayesian analyses. All orders except Megaloptera are monophyletic. Problems in the analyses are caused by taxa with numerous autapomorphies and/or inapplicable character states due to the loss of major structures (such as wings). Different factors have contributed to the evolutionary success of various holometabolan lineages. It is likely that good flying performance, the ability to occupy different habitats as larvae and adults, parasitism, liquid feeding, and co-evolution with flowering plants have played important roles. We argue that even in the "age of phylogenomics", comparative morphology will still play a vital role. In addition, morphology is essential for reconstructing major evolutionary transformations at the phenotypic level, for testing evolutionary scenarios, and for placing fossil taxa
机译:我们介绍了为Holometabola编写的最大的形态特征集。通过优化数据采集,使之成为可能。根据我们的分析和最近基于分子数据发表的假设,我们讨论了更高层次的系统发育和进化变化。我们评论了不同字符系统的信息内容,并讨论了形态学在系统基因组学时代的作用。事实证明,微计算机断层扫描与其他技术相结合可高效地获取和记录形态数据。现在可以为所有全息图目的30位代表提供详细的解剖信息(356个字符)。传统技术与新颖技术的组合相互补充,并迅速提供了可靠的数据。此外,我们的方法有助于记录模型生物的解剖结构。我们的结果与基于rRNA的研究几乎没有一致性,但证实了最近一项基于核基因的研究中检索到的大多数进化枝:不包括膜翅目,鞘翅目(鞘翅目+鞘翅目),Neuropterida除外的全翅目。 Neuroptera和Mecoptera。 Mecopterida(= Antliophora + Amphiesmenoptera)仅在贝叶斯分析中得到。除Megaloptera以外的所有订单都是单系的。分析中的问题是由于失去主要结构(如机翼)而导致具有许多自发形态和/或不适用特征状态的类群引起的。不同的因素促成各种全血红素谱系的进化成功。良好的飞行性能,在幼虫和成虫中占据不同栖息地的能力,寄生性,摄食性以及与开花植物的共同进化可能发挥了重要作用。我们认为,即使在“系统发育时代”,比较形态学仍将发挥至关重要的作用。此外,形态对于在表型水平上重构主要的进化转化,测试进化场景以及放置化石分类群至关重要。

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