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间隙连接使果蝇第一视觉神经节中的光感受器轴突相互耦合。

Gap junctions coupling photoreceptor axons in the first optic ganglion of the fly.

作者信息

Ribi W A

出版信息

Cell Tissue Res. 1978 Dec 28;195(2):299-308. doi: 10.1007/BF00236726.

Abstract

The first optic ganglion of the fly, the lamina ganglionaris, was investigated with the transmission electron microscope for the purpose of demonstrating possible electronic junctions. Within a cartridge, the six short receptor cell axons R1--R6 are extensively coupled by symmetrical gap junctions. This is mainly seen in the distal third of the first synaptic region where none or only a few lateral branches of the centrally lying L-fibres (L1, L2) penetrate the ring of six short receptor fibre endings. Gap junctions as found between R1--R6 are distinguished morphologically from chemically-mediated synapses by the closely apposed cell membranes. They exhibit only a 2--4 nm extracellular cleft. Unlike the chemical synapse the gap junction in the neuropile of the fly appears structurally symmetrical. No such gap junctions are found either between R-fibres and glial cells, interneurons and glial cells, between glial cells and between interneurones themselves, nor between the parallel long receptor axons R7/8, which bypass the lamina outside the cartridge. In accordance with electrophysiological data, it can now be argued that the six short receptor axons R1--R6 are electrically interconnected by symmetrical gap junctions.

摘要

为了证明可能存在的电连接,利用透射电子显微镜对果蝇的第一视觉神经节即视神经节进行了研究。在一个神经纤维束内,六条短受体细胞轴突R1 - R6通过对称的缝隙连接广泛地相互连接。这主要见于第一个突触区域的远端三分之一处,此处位于中央的L纤维(L1、L2)的侧支很少或没有穿透由六条短受体纤维末端形成的环。R1 - R6之间发现的缝隙连接在形态上与化学介导的突触不同,其细胞膜紧密相邻。它们仅表现出2 - 4纳米的细胞外间隙。与化学突触不同,果蝇神经纤维网中的缝隙连接在结构上是对称的。在R纤维与神经胶质细胞之间、中间神经元与神经胶质细胞之间、神经胶质细胞之间以及中间神经元自身之间,或者在绕过神经纤维束外部的视神经节的平行长受体轴突R7/8之间,均未发现这种缝隙连接。根据电生理数据,现在可以认为六条短受体轴突R1 - R6通过对称的缝隙连接实现电互连。

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