Institut für Physikalische Chemie, Kernforschungsanlage Jülich, Postfach 1913, D-5170, Jülich, Federal Republic of Germany.
Planta. 1978 Jan;138(2):173-9. doi: 10.1007/BF00391175.
A depolarisation of the membrane potential difference (about-170 mV) of Chara corallina is observed in response to changes in cell turgor pressure using the pressure probe technique. The depolarisation occurs in phase with the pressure pulse (0.2 s duration) and is independent of the direction of the applied pressure gradient. This latter finding is in contradiction to results predicted on the basis of electro-kinetic phenomena. Pressure induced electrical leakages were ruled out by measuring the depolarisation in response to pressure in individual segments of the internode which were electrically isolated from one another. The changes in potential were recorded by external electrodes and an internal electrode which was positioned close to the micropipette of the pressure probe inserted through one of the electrically isolated nodes. The depolarisation in response to increasing positive or negative pressure gradients in the intact node region and in the intact middle segments was comparable to that monitored in the node region containing the pressure probe. Action potentials were initiated when the pressure gradients exceeded at least 2 bar. The action potentials were elicited at random in one of the two compartments adjacent to the node regions, but were never found to be initiated in the node regions themselves. The pressure-induced action potentials are explained in terms of an electro-mechanical compression (or expansion) of a local membrane area and discussed in their relevance to the propagation of pressure signals in response to water and salt stress in higher plants.
用压力探针技术观察到珊瑚藻细胞膜电位差(约-170 mV)在细胞膨压变化时发生去极化。去极化与压力脉冲(0.2 s 持续时间)相位同步,与施加的压力梯度方向无关。这一发现与基于电动现象预测的结果相矛盾。通过测量电隔离的节间段对压力的去极化来排除压力诱导的电泄漏,这些段间段彼此电隔离。通过外部电极和内部电极记录电位变化,内部电极靠近通过电隔离节点之一插入的压力探针的微管。在完整的节间区域和完整的中间段中,响应于正或负压梯度的去极化与在包含压力探针的节间区域中监测到的去极化相当。当压力梯度超过至少 2 巴时,引发动作电位。动作电位随机在与节间区相邻的两个隔室之一中引发,但从未在节间区本身中引发。压力诱导的动作电位根据局部膜面积的机电压缩(或膨胀)来解释,并讨论其与高等植物对水和盐胁迫的压力信号传播的相关性。