首页> 外文期刊>Zoologischer Anzeiger >The Malacostraca (Crustacea) from a neurophylogenetic perspective: New insights from brain architecture in Nebalia herbstii Leach, 1814 (Leptostraca, Phyllocarida)
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The Malacostraca (Crustacea) from a neurophylogenetic perspective: New insights from brain architecture in Nebalia herbstii Leach, 1814 (Leptostraca, Phyllocarida)

机译:从神经系统发育学角度看的Malacostraca(甲壳纲):Nebalia Herbstii Leach,1814年(Leptostraca,Phyllocarida)的大脑结构新发现

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In recent years, there has been a growing interest in synthesizing studies on the structure of the nervous systems with phylogenetic questions (" neurophylogeny"). However, in the discussion on the phylogeny of Malacostraca, and the question of their closest relatives, little attention has been paid to brain morphology in the basal representatives of this taxon. To close this gap in our knowledge, this study sets out to analyze the architecture of the brain of Nebalia herbstii (Leptostraca, Phyllocarida, Malacostraca) in a neurophylogenetic context. Most phylogenetic studies consider the Phyllocarida to be the sister group to the Eumalacostraca, together forming the taxon Malacostraca, so that the brain organization of N. herbstii may possess many ancestral features. Classical histological techniques and 3D reconstruction as well as immunostaining and confocal laser-scan imaging revealed that besides taxon specific characteristics, the brain organization of N. herbstii exhibits a strong eumalacostracan affinity. The four nested optic neuropils are connected by two successive chiasms. The olfactory globular tract, connecting the olfactory lobes with second order integration centers in the lateral protocerebrum, features a contralateral connection. The olfactory lobes are composed of a radial array of spherical/spheroid glomeruli but serotonergic innervations of the olfactory glomeruli are absent. These and other architectural features are discussed in comparison to the central nervous system of Eumalacostraca, Remipedia, non-malacostracan Crustacea and Hexapoda, and are synthesized into a ground pattern of the malacostracan brain that might serve as a basis for neurophylogenetic discussion of the evolutionary relationship of these taxa.
机译:近年来,对具有系统发育问题(“神经系统发育”)的神经系统结构的综合研究引起了越来越多的兴趣。但是,在关于马拉科斯特拉的系统发生及其近亲的问题的讨论中,该分类单元的基础代表对脑形态的关注很少。为了缩小我们在知识上的差距,本研究着手在神经系统发生背景下分析Nebalia herbstii(Leptostraca,Phyllocarida,Malacostraca)的大脑结构。大多数系统发育研究都认为毛状毛虫是Eumalacostraca的姐妹群,共同组成了分类群Malacostraca,因此N. Herbtii的大脑组织可能具有许多祖先特征。经典的组织学技术和3D重建以及免疫染色和共聚焦激光扫描成像显示,除分类群特有的特征外,中草药猪笼草的脑组织还表现出很强的eumalacostracan亲和力。四个嵌套的视神经桩通过两个连续的交叉连接。嗅球连接嗅球与外侧原脑的二阶整合中心,其特征是对侧连接。嗅球由球形/球形肾小球的放射状阵列组成,但不存在嗅球的血清素能神经支配。与Eumalacostraca,Remipedia,非Malacostracan甲壳纲和Hexapoda的中枢神经系统相比,对这些和其他结构特征进行了讨论,并将这些特征合成为malacostracan脑的基本模式,可作为神经进化论讨论进化关系的基础这些分类单元。

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