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长颌鱼电感觉侧线叶神经节层中间神经元:形态学、免疫组织化学及突触学

Interneurons of the ganglionic layer in the mormyrid electrosensory lateral line lobe: morphology, immunohistochemistry, and synaptology.

作者信息

Meek J, Grant K, Sugawara Y, Hafmans T G, Veron M, Denizot J P

机构信息

Department of Anatomy and Embryology, University of Nijmegen, The Netherlands.

出版信息

J Comp Neurol. 1996 Nov 4;375(1):43-65. doi: 10.1002/(SICI)1096-9861(19961104)375:1<43::AID-CNE3>3.0.CO;2-O.

Abstract

This is the second paper in a series that describes the morphology, immunohistochemistry, and synaptology of the mormyrid electrosensory lateral line lobe (ELL). The ELL is a highly laminated cerebellum-like structure in the rhombencephalon that subserves an active electric sense: Objects in the nearby environment of the fish are detected on the basis of changes in the reafferent electrosensory signals that are generated by the animal's own electric organ discharge. The present paper describes interneurons in the superficial (molecular, ganglionic, and plexiform) layers of the ELL cortex that were analyzed in the light and electron microscopes after Golgi impregnation, intracellular labeling, neuroanatomical tracing, and gamma-aminobutyric acid (GABA) immunohistochemistry. The most numerous interneurons in the ganglionic layer are GABAergic medium-sized ganglionic (MG) cells and small ganglionic (SG) cells. MG cells have 10-20 spiny apical dendrites in the molecular layer, a cell body of 10-12 microns diameter in the ganglionic layer, a single basal dendrite that gives rise to fine, beaded, axon-like branches in either the plexiform layer (MG1 subtype) or the deeper granular layer (MG2 subtype), and an axon that terminates in the plexiform layer. Their apical dendritic tree has 12,000-22,000 spines that are contacted by GABA-negative terminals, and it receives, 1,250-2,500 GABA-positive contacts on the smooth dendritic surface between the spines. The average ratio of GABA-negative to GABA-positive contacts on the interneuron apical dendrites (14:1) is significantly higher than that for the efferent projection cells that have been described previously (Grant et al. [1996] J. Comp. Neurol., this issue). The somata and basal dendrites of MG cells receive a low to moderate density of GABAergic synaptic input, and their axons make GABAergic synaptic contacts with the somata and cell bodies of MG as well as with large ganglionic (LG) cells. SG cells probably represent immature, growing MG cells. Other interneurons in the superficial ELL layers include GABAergic stellate cells in the molecular layer, two types of non-GABAergic cells with smooth dendrites in the deep molecular layer that are named thick-smooth dendrite cells and deep molecular layer cells, and horizontal cells that are encountered particularly in the plexiform layer. Comparison with the ELL of waveform gymnotiform fish, which is another group of active electrolocating teleosts that has been investigated thoroughly, shows striking differences. In these fish, no GABAergic interneurons are found in the ganglionic (pyramidal) layer of the ELL, and GABA-negative interneurons with smooth dendrites in the molecular layer also seem to be lacking. At present, the phylogenetic origin of the described superficial interneurons in the mormyrid ELL is uncertain.

摘要

这是系列论文中的第二篇,描述了长颌鱼电感觉侧线叶(ELL)的形态学、免疫组织化学和突触学。ELL是菱脑内一个高度分层的小脑样结构,它服务于主动电感觉:鱼类附近环境中的物体是根据动物自身发电器官放电所产生的再传入电感觉信号的变化来检测的。本文描述了ELL皮质浅层(分子层、神经节层和丛状层)中的中间神经元,这些神经元在高尔基浸染、细胞内标记、神经解剖追踪和γ-氨基丁酸(GABA)免疫组织化学后,通过光学显微镜和电子显微镜进行了分析。神经节层中数量最多的中间神经元是GABA能中型神经节(MG)细胞和小型神经节(SG)细胞。MG细胞在分子层有10 - 20根带棘的顶树突,在神经节层有直径为10 - 12微米的细胞体,有一根单一的基底树突,在丛状层(MG1亚型)或更深的颗粒层(MG2亚型)产生细的、串珠状的、轴突样分支,还有一根轴突终止于丛状层。它们的顶树突有12000 - 22000个棘,被GABA阴性终末所接触,并且在棘之间的光滑树突表面接收1250 - 2500个GABA阳性接触。中间神经元顶树突上GABA阴性与GABA阳性接触的平均比例(14:1)显著高于先前描述的传出投射细胞(Grant等人,[1996]《比较神经学杂志》,本期)。MG细胞的胞体和基底树突接受低到中等密度的GABA能突触输入,并且它们的轴突与MG细胞以及大型神经节(LG)细胞的胞体和细胞体形成GABA能突触接触。SG细胞可能代表未成熟的、正在生长的MG细胞。ELL浅层的其他中间神经元包括分子层中的GABA能星形细胞、深分子层中两种具有光滑树突的非GABA能细胞,分别称为粗光滑树突细胞和深分子层细胞,以及特别在丛状层中发现的水平细胞。与波形裸背电鳗的ELL(另一组已被深入研究的主动电定位硬骨鱼)进行比较,显示出显著差异。在这些鱼中,ELL的神经节(锥体)层中未发现GABA能中间神经元,分子层中似乎也缺乏具有光滑树突的GABA阴性中间神经元。目前,长颌鱼ELL中所描述的浅层中间神经元的系统发生起源尚不确定。

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