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Stomatal Response of Cotton to Water Stress and Abscisic Acid as Affected by Water Stress History

机译:水分胁迫史对棉花对水分胁迫和脱落酸的气孔响应

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摘要

The threshold leaf water potential required to initiate stomatal closure in cotton (Stoneville 213) became progressively more negative when plants were subjected to a series of water stress cycles. The shift in the threshold water potential required for induction of stomatal closure was dependent on the number of previous stress cycles and leaf age. The basal level of endogenous abscisic acid (ABA) in fully turgid leaves increased in response to the stress treatments, whereas the amount accumulated in response to a subsequent stress did not differ greatly among plants that had experienced different degrees of stress conditioning.Stomatal sensitivity to (±)-ABA fed through the transpiration stream was enhanced in detached leaves of plants which had experienced repetitive water stresses. The increased sensitivity was apparently the result of ABA synthesized during the stress periods since foliar applications of ABA sensitized stomata in an analogous manner. Furthermore, the amount of (+)-ABA required to initiate stomatal closure in leaves from the various stress treatments was not related to the amounts accumulated during wilting.
机译:当植物遭受一系列水分胁迫循环时,启动棉花气孔关闭所需的阈值叶片水势(Stoneville 213)变得越来越负。诱导气孔关闭所需的阈值水势的变化取决于先前的胁迫周期数和叶片年龄。完全干旱的叶片中内源脱落酸(ABA)的基础水平响应于胁迫处理而增加,而在经历了不同程度的胁迫调节的植物中,响应于随后的胁迫而积累的量没有很大差异。通过蒸腾流进料的(±)-ABA在经历反复水分胁迫的植物离体叶片中得到增强。敏感性的提高显然是在胁迫期间ABA合成的结果,因为以类似方式叶面施用ABA致敏气孔。此外,通过各种胁迫处理在叶片中启动气孔关闭所需的(+)-ABA量与萎过程中积累的量无关。

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