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海龟视网膜中填充辣根过氧化物酶(HRP)的光感受器的终末树突接触:光感受器耦合途径

Telodendrial contact of HRP-filled photoreceptors in the turtle retina: pathways of photoreceptor coupling.

作者信息

Ohtsuka T, Kawamata K

机构信息

Department of Information Physiology, National Institute for Physiological Sciences, Okazaki, Japan.

出版信息

J Comp Neurol. 1990 Feb 22;292(4):599-613. doi: 10.1002/cne.902920409.

Abstract

Synaptic contacts of photoreceptors in the turtle retina were studied by intracellular injection of horseradish peroxidase (HRP) and electron microscopy. Both cone and rod photoreceptors radiated basal processes (telodendria) from their terminal endings. These telodendria ran laterally in the outer plexiform layer. The telodendria of cones gave rise to many fine branches that penetrated synaptic cavities of several neighboring cones. Tips of these branches terminated near the walls of synaptic cavities. Some of the telodendrial contact formed two types of basal junction: symmetrical and punctate. The distribution of cones that made telodendrial contacts with the HRP-filled cone were quantitatively investigated. Green-sensitive cones (n = 3) made telodendrial contacts with neighboring red- and blue-sensitive cones, blue-sensitive cones (n = 4) with red- and green-sensitive cones, and red-sensitive cones (n = 9) with red- and green-sensitive cones. In contrast to these cone connections, rod telodendria did not penetrate neighboring photoreceptors. Direct synaptic contacts were not found between rods and cones. Our results clarify the variety of cone couplings in turtle retina: the three chromatic classes of cones are selectively coupled by the basal junctions at the ends of telodendrial processes.

摘要

通过向细胞内注射辣根过氧化物酶(HRP)并结合电子显微镜技术,对乌龟视网膜中光感受器的突触联系进行了研究。视锥细胞和视杆细胞都从其末端发出基部突起(终树突)。这些终树突在外网状层中横向延伸。视锥细胞的终树突产生许多细小分支,这些分支穿透几个相邻视锥细胞的突触腔。这些分支的末端在突触腔壁附近终止。一些终树突接触形成了两种类型的基部连接:对称型和点状型。对与充满HRP的视锥细胞形成终树突接触的视锥细胞分布进行了定量研究。绿色敏感视锥细胞(n = 3)与相邻的红色和蓝色敏感视锥细胞形成终树突接触,蓝色敏感视锥细胞(n = 4)与红色和绿色敏感视锥细胞形成接触,红色敏感视锥细胞(n = 9)与红色和绿色敏感视锥细胞形成接触。与这些视锥细胞连接不同,视杆细胞的终树突不穿透相邻的光感受器。视杆细胞和视锥细胞之间未发现直接的突触联系。我们的结果阐明了乌龟视网膜中视锥细胞耦合的多样性:三种颜色类型的视锥细胞通过终树突末端的基部连接进行选择性耦合。

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