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所选旋吻绦虫的脑结构。

The brain structure of selected trypanorhynch tapeworms.

作者信息

Biserova Natalia M, Korneva Janetta V, Polyakova Tatiana A

机构信息

Department of Invertebrate Zoology, Faculty of Biology, Moscow State University, Moscow, Russia.

IBIW RAS, Borok, Russia.

出版信息

J Morphol. 2020 Aug;281(8):893-913. doi: 10.1002/jmor.21145. Epub 2020 Jun 30.

Abstract

The brain architecture in four species of tapeworms from the order Trypanorhyncha has been studied. In all species, the brain consists of paired anterior and lateral lobes, and an unpaired central lobe. The anterior lobes connect by dorsal and ventral semicircular commissures; the central and lateral lobes connect by a median and an X-shaped crisscross commissure. In the center of the brain, five well-developed compact neuropils are present. The brain occupies a medial position in the scolex pars bothrialis. The ventral excretory vessels are situated outside the lateral lobes of the brain; the dorsal excretory vessels are located inside the brain and dorsal to the median commissure. The brain gives rize four anterior proboscis nerves and four posterior bulbar nerves with myelinated giant axons (GAs). The cell bodies of the GAs are located within the X-commissure and in the bulbar nerves. Highly developed serotonergic neuropils are present in the anterior and lateral lobes; numerous 5-HT neurons are found in the brain lobes including the central unpaired lobe. The X-cross commissure consists of the α-tub-immunoreactive and 5-HT-IR neurites. Eight ultrastructural types of neurons were found in the brain of the three species investigated. In addition, different types of synapses were present in the neuropils. Glial cells ensheath the brain lobes, the neuropils, the GAs, and the bulbar nerves. Glia cell processes form complex branching patterns of thin cytoplasmic sheets sandwiched between adjacent neural processes and filling the space between neurons. Multilayer myelin-like envelopes and a mesaxon-like structure have been found in Trypanorhyncha nervous system. We compared the brain architecture of Trypanorhyncha with that of an early basal cestode taxon, that is, Diphyllobothriidea, and present a hypothesis about the homology of the anterior brain lobes in order Trypanorhyncha; and the lateral lobes and median commissure are homologous brain structures within Eucestoda.

摘要

对来自锥吻目(Trypanorhyncha)的四种绦虫的脑结构进行了研究。在所有物种中,脑由成对的前叶和侧叶以及不成对的中央叶组成。前叶通过背侧和腹侧半圆形连合相连;中央叶和侧叶通过一条正中连合和一条X形交叉连合相连。在脑的中央,有五个发育良好的紧密神经纤维网。脑位于头节双叶部的内侧位置。腹侧排泄管位于脑侧叶的外侧;背侧排泄管位于脑内且在正中连合的背侧。脑发出四条前吻神经和四条后球茎神经,这些神经带有有髓鞘的巨大轴突(GAs)。巨大轴突的细胞体位于X连合内和球茎神经中。在前叶和侧叶中有高度发达的5-羟色胺能神经纤维网;在包括不成对的中央叶在内的脑叶中发现了大量5-羟色胺(5-HT)神经元。X形交叉连合由α-微管免疫反应性和5-HT免疫反应性神经突组成。在所研究的三个物种的脑中发现了八种超微结构类型的神经元。此外,在神经纤维网中存在不同类型的突触。神经胶质细胞包裹着脑叶、神经纤维网、巨大轴突和球茎神经。神经胶质细胞的突起形成了复杂的分支模式,即薄的细胞质片夹在相邻神经突起之间并填充神经元之间的空间。在锥吻目神经系统中发现了多层髓鞘样包膜和中轴样结构。我们将锥吻目的脑结构与早期基础绦虫类群,即双叶目(Diphyllobothriidea)的脑结构进行了比较,并提出了一个关于锥吻目前脑叶同源性的假说;在真绦虫纲(Eucestoda)中,侧叶和正中连合是同源的脑结构。

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