Westfall J A, Kinnamon J C, Sims D E
J Neurocytol. 1980 Dec;9(6):725-32. doi: 10.1007/BF01205015.
Gap junctions have been described ultrastructurally between neurons and epitheliomuscular cells and between neurons and their processes in the hypostome, peduncle and basal disc of Hydra. All gap junctions examined in Hydra exhibit two apposed plasma membranes having a 2-4 nm gap continuous with the extracellular space. The gap junctions are variable in length from 0.1-1.6 micrometers and appear linear or V-shaped in section. Neuronal gap junctions in Hydra occur infrequently as compared to chemical synapses. Electron microscopy of serial sections has demonstrated the presence of adjacent electrical and chemical synapses (neuromuscular junctions) formed by the same neuron. In addition, multiple gap junctions were present between two neurons. This is the first ultrastructural demonstration of electrical synapses in the nervous system of Hydra. Such synapses occur in neurons previously characterized as sensory-motor-interneurons on the basis of their chemical synapses; these neurons appear to represent a type of stem cell characterized by having both electrical and chemical synapses.
在水螅的口下叶、柄部和基盘的神经元与上皮肌细胞之间以及神经元与其突起之间,已通过超微结构描述了间隙连接。在水螅中检查的所有间隙连接都显示出两个相对的质膜,它们之间有一个2 - 4纳米的间隙,与细胞外空间相连。间隙连接的长度在0.1 - 1.6微米之间变化,在切片中呈线性或V形。与化学突触相比,水螅中的神经元间隙连接很少见。连续切片的电子显微镜检查表明,同一神经元形成了相邻的电突触和化学突触(神经肌肉接头)。此外,两个神经元之间存在多个间隙连接。这是水螅神经系统中电突触的首次超微结构证明。这种突触出现在以前根据其化学突触被表征为感觉运动中间神经元的神经元中;这些神经元似乎代表了一种以同时具有电突触和化学突触为特征的干细胞类型。