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茉莉酸甲酯对光合特性和挥发性排放的剂量依赖性影响:双相动力学和气孔调节。

Dose-dependent methyl jasmonate effects on photosynthetic traits and volatile emissions: biphasic kinetics and stomatal regulation.

机构信息

Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Tartu, Estonia.

College of Horticulture, Nanjing Agricultural University, Nanjing China.

出版信息

Plant Signal Behav. 2021 Jul 3;16(7):1917169. doi: 10.1080/15592324.2021.1917169. Epub 2021 Apr 21.

Abstract

Exogenous application of methyl jasmonate (MeJA) has been extensively used to study jasmonate-dependent signaling events triggered by biotic stresses. MeJA application leads to complex jasmonate-dependent physiological responses, including changes in stomatal openness and induction of emissions of a multitude of volatile compounds. Whether the alterations in stomatal conductance and emissions of MeJA-induced volatiles are quantitatively associated with MeJA dose, and whether the induced volatile emissions are regulated by modifications in stomatal conductance had been poorly known until recently. Our latest studies highlighted a biphasic kinetics of jasmonate-dependent volatile emissions induced by MeJA treatment in the model species cucumber (), indicating induction of an immediate stress response and subsequent gene-expression level response. Both the immediate and delayed responses were MeJA dose-dependent. The studies further demonstrated that stomata modulated the kinetics of emissions of water-soluble volatiles in a MeJA dose-dependent manner. These studies contribute to understanding of plant short- and long-term responses to different biotic stress severities as simulated by treatments with a range of MeJA doses corresponding to mild to acute stress.

摘要

茉莉酸甲酯(MeJA)的外源应用已被广泛用于研究生物胁迫引发的茉莉酸依赖性信号事件。MeJA 的应用导致了复杂的茉莉酸依赖性生理反应,包括气孔开度的变化和多种挥发性化合物排放的诱导。直到最近,人们还不清楚气孔导度和 MeJA 诱导挥发物排放的变化是否与 MeJA 剂量呈定量相关,以及诱导的挥发物排放是否受到气孔导度变化的调节。我们的最新研究强调了模式物种黄瓜中 MeJA 处理诱导的茉莉酸依赖性挥发物排放的双相动力学,表明诱导了即时应激反应和随后的基因表达水平反应。即时和延迟反应均与 MeJA 剂量有关。研究还表明,气孔以 MeJA 剂量依赖性的方式调节水溶性挥发物排放的动力学。这些研究有助于理解植物对不同生物胁迫严重程度的短期和长期反应,这些反应是通过用一系列对应于轻度至急性胁迫的 MeJA 剂量处理来模拟的。

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