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植物对昆虫取食的感知。

Perception of insect feeding by plants.

机构信息

Department of Molecular Ecology, Max Planck Institute of Chemical Ecology, Jena, Germany.

出版信息

Plant Biol (Stuttg). 2012 Nov;14(6):872-80. doi: 10.1111/j.1438-8677.2012.00650.x. Epub 2012 Sep 7.

DOI:10.1111/j.1438-8677.2012.00650.x
PMID:22957774
Abstract

The recognition of phytophagous insects by plants induces a set of very specific responses aimed at deterring tissue consumption and reprogramming metabolism and development of the plant to tolerate the herbivore. The recognition of insects by plants requires the plant's ability to perceive chemical cues generated by the insects and to distinguish a particular pattern of tissue disruption. Relatively little is known about the molecular basis of insect perception by plants and the signalling mechanisms directly associated with this perception. Importantly, the insect feeding behaviour (piercing-sucking versus chewing) is a decisive determinant of the plant's defence response, and the mechanisms used to perceive insects from different feeding guilds may be distinct. During insect feeding, components of the saliva of chewing or piercing-sucking insects come into contact with plant cells, and elicitors or effectors present in this insect-derived fluid are perceived by plant cells to initiate the activation of specific signalling cascades. Although receptor-ligand interactions controlling insect perception have yet not been molecularly described, a significant number of regulatory components acting downstream of receptors and involved in the activation of defence responses against insects has been reported. Some of these regulators mediate changes in the phytohormone network, while others directly control gene expression or the redox state of the cell. These processes are central in the orchestration of plant defence responses against insects.

摘要

植物对植食性昆虫的识别会引发一系列非常特殊的反应,旨在阻止组织被消耗,并重新规划植物的代谢和发育,以耐受食草动物。植物对昆虫的识别需要植物感知昆虫产生的化学线索的能力,以及区分特定的组织破坏模式的能力。关于植物对昆虫的感知的分子基础以及与这种感知直接相关的信号机制,人们知之甚少。重要的是,昆虫的取食行为(刺吸式与咀嚼式)是植物防御反应的决定性决定因素,用于感知不同取食类群昆虫的机制可能不同。在昆虫取食过程中,咀嚼或刺吸式昆虫的唾液成分会与植物细胞接触,而这种昆虫衍生液中存在的激发子或效应子会被植物细胞感知,从而启动特定信号级联的激活。尽管控制昆虫感知的受体-配体相互作用尚未在分子水平上描述,但已经报道了大量作用于受体下游并参与激活针对昆虫的防御反应的调节成分。其中一些调节剂介导植物激素网络的变化,而另一些调节剂则直接控制基因表达或细胞的氧化还原状态。这些过程是协调植物对昆虫防御反应的核心。

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