Desrosiers M F, Bandurski R S
Department of Botany and Plant Pathology, Michigan State University, East Lansing 48824.
Plant Physiol. 1988;87(4):874-7. doi: 10.1104/pp.87.4.874.
The electrical parameters that affect young seedling growth were investigated. Voltages ranging from 5 to 40 volts were applied longitudinally along the mesocotyl region of 4-day old Zea mays L. (cv Silver Queen) seedlings for periods of 3 or 4 hours. It was determined that: (a) making the tips of the seedlings electrically positive relative to the base strongly inhibited shoot growth at 5 volts, whereas the reverse polarity had no effect; (b) at higher voltages, making the tip of the seedlings negative caused less growth inhibition than the reverse polarity at each voltage level; (c) the higher the applied voltage the greater the degree of inhibition; and, (d) the more growth inhibition experienced by the plants the poorer, and slower, their recovery. Previous observations of a relationship between the amount of free indole-3-acetic acid in the mesocotyl cortex and the growth rate of the mesocotyl and of gravitropism-induced movement of labeled indole-3-acetic acid from the seed to the shoot lead to the prediction of a voltage-dependent gating of the movement of indole-3-acetic acid from the stele to the cortex. This provided the basis for attempting to alter the growth rate of seedlings by means of an applied voltage.
研究了影响幼苗生长的电参数。对4天大的玉米(品种为银皇后)幼苗的中胚轴区域纵向施加5至40伏的电压,持续3或4小时。结果表明:(a) 使幼苗尖端相对于基部呈电正性,在5伏时强烈抑制地上部生长,而相反极性则无影响;(b) 在较高电压下,使幼苗尖端呈负性,在每个电压水平下比相反极性引起的生长抑制更小;(c) 施加的电压越高,抑制程度越大;以及(d) 植物经历的生长抑制越多,其恢复越差且越慢。先前关于中胚轴皮层中游离吲哚 - 3 - 乙酸含量与中胚轴生长速率以及重力诱导的标记吲哚 - 3 - 乙酸从种子向地上部移动之间关系的观察结果,导致了对吲哚 - 3 - 乙酸从维管束到皮层移动的电压依赖性门控的预测。这为试图通过施加电压来改变幼苗生长速率提供了基础。