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高等植物细胞间的电偶联:细胞间通讯的直接证明。

Electrical coupling between cells of higher plants: A direct demonstration of intercellular communication.

机构信息

Section of Genetics, Development and Physiology, Division of Biological Sciences, Cornell University, Ithaca, New York.

出版信息

Planta. 1972 Sep;102(3):215-27. doi: 10.1007/BF00386892.

Abstract

Electrical coupling between adjacent cells of Elodea canadensis has been demonstrated using a microelectrode technique in which the membrane potentials were recorded during the passage of a current pulse from the vacuole of one cell to the external solution. The changes in membrane potential resulting from the passage of the current may be simulated by an equivalent circuit in which the tonoplast:plasmalemma:plasmodesmata resistances are in the ratio 1.0:5.6:2.2. On this basis, the specific resistances are 3.1 kΩ cm(2) for the plasmalemma, 1.0 kΩ cm(2) for the tonoplast and 0.051 kΩ cm(2) for the junction between the cells. Although the plasmodesmata permit the passage of current, it is estimated that they have a resistance about 60 times higher than would be the case if they were completely open channels. Electrical coupling has also been demonstrated between parenchymal cells in oat coleoptiles and between cortical cells in maize roots. The significance of these findings is discussed in relation to the symplastic transport of ions and other small molecules and in relation to the quantitative measurement of membrane resistance in multicellular tissue.

摘要

已采用微电极技术证明了加拿大眼子菜相邻细胞之间的电偶联,在此技术中,在将电流脉冲从一个细胞的液泡传递到外部溶液期间记录膜电位。电流通过引起的膜电位变化可以通过等效电路来模拟,其中液泡膜:质膜:胞间连丝的电阻比为 1.0:5.6:2.2。在此基础上,质膜的比电阻为 3.1 kΩ cm(2),液泡膜的比电阻为 1.0 kΩ cm(2),细胞之间的连接的比电阻为 0.051 kΩ cm(2)。尽管胞间连丝允许电流通过,但据估计,它们的电阻大约比完全开放的通道高 60 倍。在燕麦胚芽鞘的实质细胞之间以及在玉米根的皮层细胞之间也证明了电偶联。这些发现的意义在涉及离子和其他小分子的共质体运输以及涉及多细胞组织中膜电阻的定量测量方面进行了讨论。

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