Volcani Center, Bet Dagan, Israel.
Plant Physiol. 1977 Jun;59(6):1169-73. doi: 10.1104/pp.59.6.1169.
The interrelationship between water deficiency and hormonal makeup in plants was investigated in detached leaves of romaine lettuce (Lactuca sativa L. cv. ;Hazera Yellow'). Water stress was imposed by desiccating the leaves for several hours in light or darkness at different air temperatures and relative humidity. In the course of desiccation, a rise in abscisic acid content and a decline in gibberellin and cytokinin activity were observed by gas-liquid chromatography, by both the barley endosperm bioassay and radioimmunoassay and by the soybean callus bioassay. Gibberellin activity began to decline in the stressed leaves before the rise in abscisic acid, the rate of this decline being positively correlated with the rate of increase in leaf water saturation deficit. Recovery from water stress was effected by immersing the leaf petioles in water while exposing the blades to high relative humidity. This resulted in a decrease in leaf water saturation deficit, a reduction in abscisic acid content, and an increase in gibberellin and cytokinin activity.Application of abscisic acid to the leaves caused partial stomatal closure in turgid lettuce leaves, whereas treatment with gibberellic acid and kinetin of such leaves had no effect on the stomatal aperture. In desiccating leaves, however, gibberellic acid and kinetin treatment considerably retarded stomatal closure, thus enhancing the increase in leaf water saturation deficit. These results suggest that the effect of desiccation in changing leaf hormonal make-up, i.e. a rapid increase in abscisic acid and a decrease in both cytokinin and gibberellin activity, is related to a mechanism designed to curtail water loss under conditions inducing water deficiency.
在生菜(Lactuca sativa L. cv.;Hazera Yellow')离体叶片中研究了水分亏缺与植物激素组成之间的关系。通过在不同的空气温度和相对湿度下将叶片在光下或黑暗中干燥数小时来施加水分胁迫。在干燥过程中,通过气液色谱、大麦胚乳生物测定和放射免疫测定以及大豆愈伤组织生物测定观察到脱落酸含量的升高和赤霉素和细胞分裂素活性的下降。在胁迫叶片中,赤霉素活性在脱落酸升高之前开始下降,这种下降的速度与叶片水分饱和亏缺的增加速度呈正相关。通过将叶柄浸入水中同时将叶片暴露在高相对湿度下,可以从水分胁迫中恢复。这导致叶片水分饱和亏缺减少,脱落酸含量降低,赤霉素和细胞分裂素活性增加。将脱落酸施用于膨胀的生菜叶片会导致部分气孔关闭,而用赤霉素和激动素处理这些叶片对气孔孔径没有影响。然而,在干燥的叶片中,赤霉素和激动素处理大大延缓了气孔关闭,从而增加了叶片水分饱和亏缺。这些结果表明,干燥对叶片激素组成的影响,即脱落酸迅速增加,细胞分裂素和赤霉素活性降低,与旨在在诱导水分亏缺的条件下减少水分损失的机制有关。