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食草动物诱导的植物挥发物用于加强农业生物防治。

Herbivore-induced plant volatiles to enhance biological control in agriculture.

作者信息

Peñaflor M F G V, Bento J M S

机构信息

Depto de Entomologia e Acarologia, Univ de São Paulo, ESALQ/USP, Av. Pádua Dias, 11, CP 9, 13418-900, Piracicaba, SP, Brasil.

出版信息

Neotrop Entomol. 2013 Aug;42(4):331-43. doi: 10.1007/s13744-013-0147-z. Epub 2013 Jul 10.

Abstract

Plants under herbivore attack synthetize defensive organic compounds that directly or indirectly affect herbivore performance and mediate other interactions with the community. The so-called herbivore-induced plant volatiles (HIPVs) consist of odors released by attacked plants that serve as important cues for parasitoids and predators to locate their host/prey. The understanding that has been gained on the ecological role and mechanisms of HIPV emission opens up paths for developing novel strategies integrated with biological control programs with the aim of enhancing the efficacy of natural enemies in suppressing pest populations in crops. Tactics using synthetic HIPVs or chemically/genetically manipulating plant defenses have been suggested in order to recruit natural enemies to plantations or help guiding them to their host more quickly, working as a "synergistic" agent of biological control. This review discusses strategies using HIPVs to enhance biological control that have been proposed in the literature and were categorized here as: (a) exogenous application of elicitors on plants, (b) use of plant varieties that emit attractive HIPVs to natural enemies, (c) release of synthetic HIPVs, and (d) genetic manipulation targeting genes that optimize HIPV emission. We discuss the feasibility, benefits, and downsides of each strategy by considering not only field studies but also comprehensive laboratory assays that present an applied approach for HIPVs or show the potential of employing them in the field.

摘要

遭受食草动物攻击的植物会合成防御性有机化合物,这些化合物直接或间接地影响食草动物的生长性能,并介导与群落的其他相互作用。所谓的食草动物诱导植物挥发物(HIPVs)由受攻击植物释放的气味组成,这些气味是寄生蜂和捕食者定位其寄主/猎物的重要线索。对HIPV排放的生态作用和机制的了解为开发与生物防治计划相结合的新策略开辟了道路,目的是提高天敌在抑制作物害虫种群方面的功效。有人建议采用使用合成HIPV或化学/基因操纵植物防御的策略,以便将天敌吸引到种植园或帮助它们更快地找到寄主,作为生物防治的“协同”剂。本综述讨论了文献中提出的利用HIPV增强生物防治的策略,在此将其分类为:(a)在植物上外源施用诱导剂,(b)使用向天敌释放有吸引力的HIPV的植物品种,(c)释放合成HIPV,以及(d)针对优化HIPV排放的基因进行基因操纵。我们不仅通过实地研究,还通过全面的实验室分析来讨论每种策略的可行性、益处和缺点,这些分析展示了一种针对HIPV的应用方法或显示了在实地应用它们的潜力。

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