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Exogenous Melatonin Improves Tolerance to Water Deficit by Promoting Cuticle Formation in Tomato Plants

机译:外源褪黑激素通过促进番茄植物中的角质层形成改善了水缺损的耐受性

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摘要

The plant cuticle, composed of cutin and waxes, is a hydrophobic layer coating the aerial organs of terrestrial plants and playing a critical role in limiting water loss. While melatonin has been recently demonstrated to be involved in responses to drought stress in plants, its relationship with cuticle formation is not known. In the present work, we report the effects of melatonin on the formation of cuticle in tomato leaves subjected to water deficit. Preliminary analysis by light microscope showed that tomato leaves pretreated with exogenous melatonin might have thicker cutin than tomato leaves without melatonin pretreatment under water deficit condition. Chemical characterization showed that exogenous application of melatonin increased the level of cuticular waxes in tomato leaves under water deficit. Consistent with the change in cuticular waxes was the increased abundance of wax-associated gene transcripts. Further, assessment of water loss and chlorophyll leaching in tomato leaves revealed the association of cuticle deposition with reduced leaf permeability, which is important in restricting water loss in water deficit-stressed tomato plants. These results suggest a role for melatonin in regulating leaf cuticle formation and non-stomatal water loss in leaves.
机译:由Cutin和蜡组成的植物角质层是一种疏水层,涂覆陆地植物的空中器官并在限制水分中发挥关键作用。虽然最近褪黑素已被证明参与植物中干旱胁迫的反应,但其与角质层形成的关系尚不清楚。在目前的工作中,我们报告了褪黑激素对番茄叶片中球蛋白的形成的影响。光学显微镜初步分析表明,随着外源褪黑素预处理的番茄叶可能比番茄叶,没有褪黑素在水缺陷条件下预处理。化学表征表明,褪黑素的外源性应用增加了水缺陷下番茄叶中的蜡状蜡水平。与切蜡的变化一致是蜡相关基因转录物的增加。此外,番茄叶中浸出水分和叶绿素浸出的评估显示,叶片沉积与降低叶片渗透性的关系,这对于限制水缺陷胁迫番茄植物中的水损失是重要的。这些结果表明了褪黑激素在调节叶片角质形成和叶片中的非气孔损失方面的作用。

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