绿叶挥发物——植物应对生物攻击的前沿。

Kenji Matsui, Jurgen Engelberth
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引用次数: 11

摘要

绿叶挥发物(GLVs)是维管植物中普遍存在的六碳挥发物。GLVs由生物膜上的酰基通过途径特异性脂氧合酶(LOX)的氧化和随后的过氧化氢裂解酶的裂解反应产生。由于glv的普遍分布和形成能力,它们被认为在维管植物中发挥着共同的作用。虽然完整植物组织的静止水平很低,但glv会立即重新合成,以应对压力,如昆虫食草,破坏细胞结构。这种快速的GLV爆发是植物对细胞损伤胁迫的最快反应之一;因此,glv是生物与植物相互作用时首先遇到的植物源化合物,无论这种相互作用是竞争性的还是友好的。因此,glv应被认为是植物和与其相互作用的生物之间的重要介质。glv可以通过阻止食草动物和病原体产生直接影响,也可以通过吸引食草动物的捕食者产生间接影响,而其他植物可以在一个称为启动的过程中招募它们来准备防御。虽然glv对植物的有益作用通常不那么显著,甚至是互补的,但由于glv的多种功能,这些微小作用的积累可以累积到对植物非常有益的水平。本文综述了GLV生物合成的时空分辨率和GLV的功能,并概述了GLV如何支持植物的基本健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green Leaf Volatiles-The Forefront of Plant Responses Against Biotic Attack.

Green leaf volatiles (GLVs) are six-carbon volatile oxylipins ubiquitous in vascular plants. GLVs are produced from acyl groups in the biological membranes via oxygenation by a pathway-specific lipoxygenase (LOX) and a subsequent cleavage reaction by hydroperoxide lyase. Because of the universal distribution and ability to form GLVs, they have been anticipated to play a common role in vascular plants. While resting levels in intact plant tissues are low, GLVs are immediately synthesized de novo in response to stresses, such as insect herbivory, that disrupt the cell structure. This rapid GLV burst is one of the fastest responses of plants to cell-damaging stresses; therefore, GLVs are the first plant-derived compounds encountered by organisms that interact with plants irrespective of whether the interaction is competitive or friendly. GLVs should therefore be considered important mediators between plants and organisms that interact with them. GLVs can have direct effects by deterring herbivores and pathogens as well as indirect effects by attracting predators of herbivores, while other plants can recruit them to prepare their defenses in a process called priming. While the beneficial effects provided to plants by GLVs are often less dramatic and even complementary, the buildup of these tiny effects due to the multiple functions of GLVs can amass to levels that become substantially beneficial to plants. This review summarizes the current understanding of the spatiotemporal resolution of GLV biosynthesis and GLV functions and outlines how GLVs support the basic health of plants.

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