BLINKS L R, AIRTH R L
J Gen Physiol. 1957 Nov 20;41(2):383-96. doi: 10.1085/jgp.41.2.383.
The role of electroosmosis was studied directly in Nitella. The cells were mounted in a water-tight barrier between two chambers containing reversible electrodes for the application of potentials, and fitted with calibrated capillaries to measure water movement. No water movement was found when small existing bioelectric potentials were short-circuited through an external connection, nor when external potentials up to 1 or 2 volts were applied (producing currents up to 5 microa). Higher potentials (up to 10 volts) caused small movements of water, toward the negative pole. Larger and often irreversible water movements were produced by potentials up to 20 volts-sometimes persisting after current flow. A variety of evidence suggests that the effects are caused by injury at the cathodal end of the cell, allowing water to be attracted osmotically at the intact end and forced out at the injured end (transosmosis). This injury is reversible under small applied potentials, irreversible after large ones (100 to 200 times the natural bioelectric values). Such water flows persist in low salt concentrations (up to 0.09 M NaCl) but almost completely vanish in isotonic (0.26 M) mannitol. This confirms the osmotic, rather than the electroosmotic nature of the water movement. It is estimated that electroosmosis cannot account for more than 1 per cent of the water movement (or turgor) in Nitella cells. The dead cellulose walls display a small electroosmotic water flow at very high current densities (under 20 volts applied potential).
在丽藻中直接研究了电渗作用。将细胞安装在两个装有用于施加电势的可逆电极的腔室之间的水密屏障中,并配备校准过的毛细管以测量水的流动。当现有的小生物电势通过外部连接短路时,或者当施加高达1或2伏的外部电势(产生高达5微安的电流)时,均未发现水的流动。更高的电势(高达10伏)会导致水向负极发生小的移动。高达20伏的电势会产生更大且通常不可逆的水移动,有时在电流流动后仍会持续。各种证据表明,这些效应是由细胞阴极端的损伤引起的,使得水在完整端被渗透吸引,并在损伤端被挤出(反渗透)。在小的施加电势下,这种损伤是可逆的,在大的电势(天然生物电值的100至200倍)之后则是不可逆的。这种水流在低盐浓度(高达0.09 M氯化钠)下持续存在,但在等渗(0.26 M)甘露醇中几乎完全消失。这证实了水移动的渗透性质,而非电渗性质。据估计,电渗作用在丽藻细胞的水移动(或膨压)中所占比例不超过1%。死的纤维素壁在非常高的电流密度(在20伏的施加电势下)下显示出小的电渗水流。