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脆壁嗜盐缓步动物(真缓步纲:高生熊虫科)的神经解剖学:缓步动物的脑结构支持泛节肢动物进化枝。

Neuroanatomy of Halobiotus crispae (Eutardigrada: Hypsibiidae): Tardigrade brain structure supports the clade Panarthropoda.

作者信息

Persson Dennis K, Halberg Kenneth A, Jørgensen Aslak, Møbjerg Nadja, Kristensen Reinhardt M

机构信息

Invertebrate Department, Natural History Museum of Denmark, University of Copenhagen, Universitetsparken 15, DK-2100 Copenhagen Ø, Denmark.

出版信息

J Morphol. 2012 Nov;273(11):1227-45. doi: 10.1002/jmor.20054. Epub 2012 Jul 18.

Abstract

The position of Tardigrada in the animal tree of life is a subject that has received much attention, but still remains controversial. Whereas some think tardigrades should be categorized as cycloneuralians, most authors argue in favor of a phylogenetic position within Panarthropoda as a sister group to Arthropoda or Arthropoda + Onychophora. Thus far, neither molecular nor morphological investigations have provided conclusive results as to the tardigrade sister group relationships. In this article, we present a detailed description of the nervous system of the eutardigrade Halobiotus crispae, using immunostainings, confocal laser scanning microscopy, and computer-aided three-dimensional reconstructions supported by transmission electron microscopy. We report details regarding the structure of the brain as well as the ganglia of the ventral nerve cord. In contrast to the newest investigation, we find transverse commissures in the ventral ganglia, and our data suggest that the brain is partitioned into at least three lobes. Additionally, we can confirm the existence of a subpharyngeal ganglion previously called subesophagal ganglion. According to our results, the original suggestion of a brain comprised of at least three parts cannot be rejected, and the data presented supports a sister group relationship of Tardigrada to 1) Arthropoda or 2) Onychophora or 3) Arthropoda + Onychophora.

摘要

缓步动物门在动物生命树中的位置是一个备受关注的主题,但仍存在争议。虽然有些人认为缓步动物应归类为环神经动物,但大多数作者主张其在泛节肢动物门中的系统发育位置,作为节肢动物或节肢动物+有爪动物的姐妹群。到目前为止,无论是分子研究还是形态学研究,都没有就缓步动物姐妹群关系得出确凿的结果。在本文中,我们利用免疫染色、共聚焦激光扫描显微镜以及由透射电子显微镜支持的计算机辅助三维重建,对真缓步动物脆壁嗜盐缓步虫的神经系统进行了详细描述。我们报告了关于脑以及腹神经索神经节结构的细节。与最新研究不同的是,我们在腹神经节中发现了横向连合,并且我们的数据表明脑至少被分为三个叶。此外,我们能够证实先前称为咽下神经节的咽下神经节的存在。根据我们的结果,关于脑由至少三个部分组成的最初建议不能被否定,并且所呈现的数据支持缓步动物门与1)节肢动物或2)有爪动物或3)节肢动物+有爪动物的姐妹群关系。

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