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了解植物对草食性攻击的防御反应:是朝着开发可持续性抗虫害能力迈出的至关重要的第一步。

Understanding plant defence responses against herbivore attacks: an essential first step towards the development of sustainable resistance against pests.

机构信息

Centro de Biotecnología y Genómica de Plantas UPM-INIA, Universidad Politécnica de Madrid, Campus Montegancedo, 28223, Pozuelo de Alarcón, Madrid, Spain.

出版信息

Transgenic Res. 2013 Aug;22(4):697-708. doi: 10.1007/s11248-013-9725-4. Epub 2013 Jun 21.

Abstract

Plant-herbivore relationships are complex interactions encompassing elaborate networks of molecules, signals and strategies used to overcome defences developed by each other. Herbivores use multiple feeding strategies to obtain nutrients from host plants. In turn, plants respond by triggering defence mechanisms to inhibit, block or modify the metabolism of the pest. As part of these defences, herbivore-challenged plants emit volatiles to attract natural enemies and warn neighbouring plants of the imminent threat. In response, herbivores develop a variety of strategies to suppress plant-induced protection. Our understanding of the plant-herbivore interphase is limited, although recent molecular approaches have revealed the participation of a battery of genes, proteins and volatile metabolites in attack-defence processes. This review describes the intricate and dynamic defence systems governing plant-herbivore interactions by examining the diverse strategies plants employ to deny phytophagous arthropods the ability to breach newly developed mechanisms of plant resistance. A cornerstone of this understanding is the use of transgenic tools to unravel the complex networks that control these interactions.

摘要

植物-植食性动物的关系是一种复杂的相互作用,其中包括了分子、信号和策略的复杂网络,这些分子、信号和策略被用来克服彼此发展起来的防御机制。植食性动物使用多种取食策略从宿主植物中获取营养。反过来,植物通过触发防御机制来抑制、阻止或改变害虫的新陈代谢来做出反应。作为这些防御机制的一部分,受到植食性动物挑战的植物会释放挥发性物质来吸引天敌,并警告邻近的植物即将面临威胁。作为回应,植食性动物会发展出各种策略来抑制植物诱导的保护。尽管最近的分子方法已经揭示了一系列基因、蛋白质和挥发性代谢物参与了攻击-防御过程,但我们对植物-植食性动物相互作用的理解是有限的。本综述通过研究植物用来阻止植食性节肢动物破坏新形成的植物抗性机制的能力的各种策略,描述了控制植物-植食性动物相互作用的复杂和动态防御系统。理解这一点的一个基石是使用转基因工具来揭示控制这些相互作用的复杂网络。

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