College of Environmental Science and Forestry, State University of New York, 13210, Syracuse, NY, USA.
Planta. 1977 Jan;133(2):145-8. doi: 10.1007/BF00391912.
Leaf water potentials of Phaseolus vulgaris L. plants exposed to a -3.0 bar root medium were reduced to between -7 and -9 bars within 25 min and remained constant for the next several hours. This treatment led to considerable variation between leaves in both abscisic-acid (ABA) content and Rs, although the two were well correlated after a 5-h treatment. There was an apparent 7-fold increase in leaf ABA levels necessary to initiate stomatal closure when plants were exposed to a -3.0 bar treatment, but when plants were exposed to a -5.0 bar stress Rs values increased prior to any detectable rise in ABA levels. To explain these seemingly contradictory results, we suggest that the rate of ABA synthesis in the leaf, rather than the total ABA content, determines the status of the stomatal aperture.
将菜豆植株暴露在-3.0 巴的根介质中,其叶片水势在 25 分钟内降低到-7 到-9 巴之间,并在接下来的几个小时内保持稳定。这种处理导致叶片之间的脱落酸(ABA)含量和 Rs 有很大差异,尽管在 5 小时的处理后两者相关性很好。当植物暴露在-3.0 巴的处理中时,需要明显增加 7 倍的叶片 ABA 水平才能启动气孔关闭,但当植物暴露在-5.0 巴的胁迫下时,Rs 值会在 ABA 水平任何可检测到的升高之前增加。为了解释这些看似矛盾的结果,我们认为叶片中 ABA 合成的速度而不是 ABA 的总量决定了气孔开度的状态。