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Interaction of cytokinins and abscisic acid during regulation of stomatal opening in bean leaves

机译:细胞分裂素与脱落酸在豆叶气孔张开调控过程中的相互作用

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摘要

Effects of benzyladenine (BA) and abscisic acid (ABA) applied separately or simultaneously on parameters of gas exchange of Phaseolus vulgaris L. leaves were studied. In the first two experimental sets, 100 muM ABA and 10 muM BA were applied to plants sufficiently supplied with water. Spraying of leaves with ABA decreased stomatal conductance (g(s)) and in consequence transpiration rate (E) and net photosynthetic rate (P-N) already I h after application, but 24 h after application the effect almost disappeared. 10 muM BA slightly decreased gas exchange parameters, but in simultaneous application with ABA reversed the effect of ABA. Immersion of roots into the same solutions markedly decreased gas exchange parameters and 24 h after ABA application the stomata were completely closed. The effect of ABA was ameliorated by simultaneous BA application, particularly after 1-h treatment. In the third experimental set, plants were pretreated by immersing roots into Water, 1 muM BA, or 100 muM ABA for 24 h and then the halves of split root system were dipped into different combinations of 1 muM BA, 100 muM ABA, and water. In plants pre-treated with ABA all gas exchange parameters were small and they did not differ in plants treated with H2O+H2O, H2O+BA, or BA+BA. In plants pre-treated with BA or H2O, markedly lower values of P-N were found when both halves of roots were immersed in ABA. Further, the effects of pre-treatment of plants with water, 1 muM BA, 100 muM ABA, or ABA+BA on the development of water stress induced by cessation of watering and on the recovery after rehydration were followed. ABA markedly decreased gas exchange parameters at the beginning of the experiment, but in its later phase the effect was compensated by delay in development of water stress. BA also delayed development of water stress and increased P-N in water-stressed leaves. BA reversed the effect of ABA at mild water stress. Positive effects of BA and ABA pre-treatments were observed also after rehydration.
机译:研究了苄基腺嘌呤(BA)和脱落酸(ABA)分别施用或同时施用对菜豆叶片气体交换参数的影响。在前两个实验组中,将 100 μM ABA 和 10 μM BA 施用于充分供应水分的植物。施用ABA的叶片降低了气孔导度(g(s)),因此蒸腾速率(E)和净光合速率(P-N)在施用后已经降低了,但在施用后24小时,效果几乎消失了。10μM BA略微降低了气体交换参数,但与ABA同时应用可逆转ABA的作用。将根浸入相同的溶液中,气体交换参数显着降低,ABA施用后24小时气孔完全关闭。同时应用 BA 可改善 ABA 的效果,尤其是在 1 小时处理后。在第三个实验组中,将根浸入水中,1μM BA或100μM ABA中预处理24 h,然后将裂开的根系的一半浸入1μM BA,100μM ABA和水的不同组合中。在用ABA预处理的植物中,所有气体交换参数都很小,并且在用H2O+H2O、H2O+BA或BA+BA处理的植物中没有差异。在用BA或H2O预处理的植物中,当两半根浸入ABA中时,发现P-N值明显较低。此外,还跟踪了用水、1 μM BA、100 muM ABA 或 ABA+BA 对停止浇水引起的水分胁迫发展和补水后恢复的影响。ABA在实验开始时显著降低了气体交换参数,但在实验后期,这种影响通过延迟水分胁迫的发展得到了补偿。BA还延缓了水分胁迫的发展,并增加了水分胁迫叶片的P-N。BA逆转了ABA在轻度水分胁迫下的影响。再水化后也观察到 BA 和 ABA 预处理的积极作用。

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