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Reversal of Abscisic Acid-Induced Stomatal Closure by trans-Cinnamic and p-Coumaric Acid

机译:反肉桂酸和对香豆酸逆转脱落酸诱导的气孔关闭

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摘要

Abscisic acid (ABA)-induced increase in stomatal diffusive resistance (SDR) in excised leaves of bean (Phaseolus vulgaris L. cv Pencil Pod) and maize (Zea mays L. cv Golden Bantam) is inhibited by low concentrations of trans-cinnamic acid (TCA) (1 micromolar) and p-coumaric acid (PCA) (10 micromolar) when given together with ABA (10 micromolar) in the transpiration stream through the cut end of the petiole or leaf blade. A concentration effect is observed both in the ABA action and its reversal by phenolic acids. Leaves having attained a high diffusive resistance in ABA solution recover rapidly when transferred to water. ABA (10 micromolar) induced closure of the stomata in onion, Allium cepa L. and Vicia faba epidermal peels. This is associated with loss of K+ from guard cells. In the presence of TCA (10 micromolar) and PCA (10 micromolar) K+ is retained in the guard cells with open stomata. The dark closure of stomata is also inhibited by TCA and PCA. It is suggested that these phenolic acids may inhibit the ABA effect by competing with or acting on some ABA-specific site, probably located on the plasma membrane, regulating flux of K+ ions. A weak association of ABA with the plasma membrane is envisaged because of the rapid recovery obtained upon transferral of the leaves to water.
机译:低浓度的反式肉桂酸可抑制脱落酸(ABA)诱导的大豆(Phaseolus vulgaris L. cv Pencil Pod)和玉米(Zea mays L. cv Golden Bantam)切叶中气孔扩散阻力(SDR)的增加。 (TCA)(1微摩尔)和对香豆酸(PCA)(10微摩尔)当与ABA(10微摩尔)一起通过叶柄或叶片的切端蒸腾流时。在ABA作用及其被酚酸逆转中均观察到浓集作用。在ABA溶液中具有高扩散抗性的叶片转移到水中后会迅速恢复。 ABA(10微摩尔)诱导洋葱,葱属和蚕豆表皮的气孔闭合。这与保卫细胞损失K + 有关。在TCA(10微摩尔)和PCA(10微摩尔)存在下,K + 保留在具有开放气孔的保卫细胞中。 TCA和PCA也抑制了气孔的黑暗闭合。这些酚酸可能通过与某些可能位于质膜上的ABA特异性位点竞争或作用而抑制ABA效应,调节K + 离子的通量。由于将叶片转移到水中获得了快速的恢复,因此设想了ABA与质膜的弱结合。

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