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栉蚕和缓步动物的神经系统与视觉系统:从它们的近亲了解节肢动物的进化

The nervous and visual systems of onychophorans and tardigrades: learning about arthropod evolution from their closest relatives.

作者信息

Martin Christine, Gross Vladimir, Hering Lars, Tepper Benjamin, Jahn Henry, de Sena Oliveira Ivo, Stevenson Paul Anthony, Mayer Georg

机构信息

Department of Zoology, University of Kassel, Heinrich-Plett-Str. 40, 34132, Kassel, Germany.

Departamento de Zoologia, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Av. Antônio Carlos 6627, Belo Horizonte, 31270-901, Brazil.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Aug;203(8):565-590. doi: 10.1007/s00359-017-1186-4. Epub 2017 Jun 9.

Abstract

Understanding the origin and evolution of arthropods requires examining their closest outgroups, the tardigrades (water bears) and onychophorans (velvet worms). Despite the rise of molecular techniques, the phylogenetic positions of tardigrades and onychophorans in the panarthropod tree (onychophorans + tardigrades + arthropods) remain unresolved. Hence, these methods alone are currently insufficient for clarifying the panarthropod topology. Therefore, the evolution of different morphological traits, such as one of the most intriguing features of panarthropods-their nervous system-becomes essential for shedding light on the origin and evolution of arthropods and their relatives within the Panarthropoda. In this review, we summarise current knowledge of the evolution of panarthropod nervous and visual systems. In particular, we focus on the evolution of segmental ganglia, the segmental identity of brain regions, and the visual system from morphological and developmental perspectives. In so doing, we address some of the many controversies surrounding these topics, such as the homology of the onychophoran eyes to those of arthropods as well as the segmentation of the tardigrade brain. Finally, we attempt to reconstruct the most likely state of these systems in the last common ancestors of arthropods and panarthropods based on what is currently known about tardigrades and onychophorans.

摘要

了解节肢动物的起源和演化需要研究它们关系最近的外类群,即缓步动物(水熊虫)和有爪动物(天鹅绒虫)。尽管分子技术不断发展,但缓步动物和有爪动物在泛节肢动物谱系(有爪动物 + 缓步动物 + 节肢动物)中的系统发育位置仍未确定。因此,仅靠这些方法目前不足以阐明泛节肢动物的拓扑结构。所以,不同形态特征的演化,比如泛节肢动物最引人关注的特征之一——它们的神经系统,对于揭示节肢动物及其在泛节肢动物门内的亲属的起源和演化至关重要。在这篇综述中,我们总结了当前关于泛节肢动物神经和视觉系统演化的知识。特别地,我们从形态学和发育学的角度,聚焦于节段神经节的演化、脑区的节段身份以及视觉系统。通过这样做,我们解决了围绕这些主题的诸多争议中的一些,比如有爪动物的眼睛与节肢动物眼睛的同源性,以及缓步动物大脑的分段问题。最后,我们基于目前对缓步动物和有爪动物的了解,尝试重建节肢动物和泛节肢动物的最后共同祖先中这些系统最可能的状态。

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