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Prospects for management of whitefly using plant semiochemicals compared with related pests

机译:与相关害虫相比使用植物化学信息素防治粉虱的前景

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摘要

Whitefly (Hemiptera: Sternorrhyncha: Aleyrodidae) pests, including the tobacco whitefly, Bemisia tabaci, and the greenhouse whitefly, Trialeurodes vaporariorum, are important economically in agriculture. Whiteflies are controlled mainly by synthetic insecticides but resistance to these is evolving rapidly. A semiochemical‐based management strategy could provide an alternative to the use of insecticides, by exploiting natural volatile signalling processes to manipulate insect behaviour. Whitefly behaviour is affected by differences in plant odour blends. Selected compounds have been suggested as putative semiochemicals, but in only a few studies have potential volatiles been characterized by electrophysiology or olfactometry. Application of antennal preparation methods from closely related families, the aphids (Hemiptera: Aphididae) and psyllids (Hemiptera: Psyllidae), may help to facilitate whitefly electroantennography. Behavioural bioassays are essential to identify the repellent or attractant effect of each semiochemical. The relevance of semiochemicals in whitefly management needs to be evaluated in the respective cultivation system. Although the value of semiochemicals against whiteflies has not been demonstrated in the field, there is an emerging range of possible field applications and some promising prospects. Overall, the olfactory system of whiteflies needs to be elucidated in more detail. © 2018 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
机译:粉虱(半翅目:Sternorrhyncha:Aleyrodidae)害虫,包括烟草粉虱,烟粉虱(Bemisia tabaci)和温室粉虱Trialeurodes vaporariorum,在农业上在经济上很重要。粉虱主要由合成杀虫剂控制,但对它们的抵抗力正在迅速发展。通过利用天然的挥发性信号传导过程来控制昆虫的行为,基于化学信息素的管理策略可以提供替代杀虫剂的方法。粉虱的行为受到植物气味混合物差异的影响。已经提出了选择的化合物作为推定的化学信息素,但是在仅有的几项研究中,通过电生理学或嗅觉法表征了潜在的挥发物。密切相关的家庭,即蚜虫(半翅目:蚜虫)和木虱(半翅目:蝇科)的触角制备方法的应用,可能有助于促进粉虱的触角造影。行为生物测定对于鉴定每种化学信息素的驱避作用或引诱作用至关重要。符号化学物质在粉虱管理中的相关性需要在各自的栽培系统中进行评估。尽管尚未在现场证明用化学信息素对抗粉虱的价值,但仍出现了一系列可能的现场应用和一些有希望的前景。总体而言,粉虱的嗅觉系统需要更详细地阐明。 ©2018作者。 John Wiley&Sons Ltd代表化学工业协会出版的《害虫管理科学》。

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