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Electric signaling and Pin2 gene expression on different abiotic stimuli depend on a distinct threshold level of endogenous abscisic acid in several abscisic acid-deficient tomato mutants

机译:不同非生物刺激物上的电信号传导和Pin2基因表达取决于几种脱落酸缺乏型番茄突变体中内源脱落酸的不同阈值水平

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Experiments were performed on three abscisic acid (ABA)deficient tomato (Lycopersicon esculentum Mill.) mutants, notabilis, flacca, and sitiens, to investigate the role of ABA and jasmonic acid (JA) in the generation of electrical signals and Pin2 (proteinase inhibitor II) gene expression. We selected these mutants because they contain different levels of endogenous ABA. ABA levels in the mutant sitiens were reduced to 8% of the wild type, in notabilis they were reduced to 47%, and in flacca they were reduced to 21%. In wild-type and notabilis tomato plants the induction of Pin2 gene expression could be elicited by heat treatment, current application, or mechanical wounding. In flacca and sitiens only heat stimulation induced Pin2 gene expression. IA levels in flacca and sitiens plants also accumulated strongly upon heat stimulation but not upon mechanical wounding or current application. Characteristic electrical signals evolved in the wild type and in the notabilis and flacca mutants consisting of a fast action potential and a slow variation potential. However, in sitiens only heat evoked electrical signals; mechanical wounding and current application did not change the membrane potential. In addition, exogenous application of ABA to wild-type tomato plants induced transient changes in membrane potentials, indicating the involvement of ABA in the generation of electrical signals. Our data strongly suggest the presence of a minimum threshold value of ABA within the plant that is essential for the early events in electrical signaling and mediation of Pin2 gene expression upon wounding. In contrast, heat-induced Pin2 gene expression and membrane potential changes were not dependent on the ABA level but, rather, on the accumulation of JA.
机译:对三种脱落酸(ABA)缺陷型番茄(Lycopersicon esculentum Mill。)突变体,芥末,黄花菜和西提恩素进行了实验,以研究ABA和茉莉酸(JA)在产生电信号和Pin2(蛋白酶抑制剂)中的作用II)基因表达。我们选择这些突变体是因为它们包含不同水平的内源ABA。突变位点中的ABA水平降低至野生型的8%,Notabilis中的ABA水平降低至47%,而flacca的水平降低至21%。在野生型和芥末型番茄植株中,Pin2基因表达的诱导可通过热处理,当前应用或机械性损伤引发。在flacca和sitiens,只有热刺激才能诱导Pin2基因表达。在热刺激下,弗拉卡(Flacca)和西提恩斯(sitiiens)植物中的IA水平也强烈积累,而机械伤或当前应用却没有。特征性电信号在野生型以及Notabilis和flacca突变体中进化,包括快速动作电位和缓慢变异电位。但是,在情景中,只有热诱发电信号。机械伤和电流施加并没有改变膜电位。此外,将ABA应用于野生型番茄植株会引起膜电位的瞬时变化,表明ABA参与了电信号的产生。我们的数据强烈暗示植物中存在ABA的最低阈值,这对于受伤时电信号传递和Pin2基因表达的介导的早期事件至关重要。相反,热诱导的Pin2基因表达和膜电位变化不取决于ABA水平,而是取决于JA的积累。

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