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Two odorant-binding proteins mediate the behavioural response of aphids to the alarm pheromone (E)-β-farnesene and structural analogues.

机译:两种气味结合蛋白介导了蚜虫对警报信息素(E)-β-法呢烯和结构类似物的行为响应。

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摘要

Abstract\udBackground: Aphids are agricultural pests of great economical interest. Alternatives to insecticides, using semiochemicals, are of difficult applications. In fact, sex pheromones are of little use as aphids reproduce partenogenetically most of the time. Besides, the alarm pheromone, (E)-ß-farnesene for a great number of species, is difficult to synthesize and unstable in the environment. The search for novel semiochemicals to be used in population control can be efficiently approached through the study of the olfactory system at the biochemical level. Recently odorant-binding proteins (OBPs) have been shown to play a central role in olfactory recognition, thus becoming the target of choice for designing new semiochemicals.\udMethodology/Principal Findings: To address the question of how the alarm message is recognised at the level of OBPs, we have tested 29 compounds, including (E)-ß-farnesene, in binding assays with 6 recombinant proteins and in behaviour experiments. We have found that good repellents bind OBP3 and/or OBP7, while non repellents present different spectra of binding. These results have been verified with two species of aphids, Acyrthosiphon pisum and Myzus persicae, both using (E)-ß-farnesene as the alarm pheromone.\udConclusions: Our results represent further support to the idea (so far convincingly demonstrated only in Drosophila) that OBPs are involved in decoding the chemical information of odorants and pheromones, and for the first time provide such evidence in other insect species and using wild-type insects. Moreover, the data offer guidelines and protocols for the discovery of potential alarm pheromones, using ligand-binding assays as a preliminary screening before subjecting selected compounds to behaviour tests.
机译:摘要\ ud背景:蚜虫是具有重大经济意义的农业害虫。使用化学信息素替代杀虫剂的方法很难应用。实际上,由于蚜虫大部分时间都是单性繁殖,因此性信息素很少使用。此外,警报信息素(E)-ß-法尼烯适用于多种物种,难以合成且在环境中不稳定。通过在生化水平上研究嗅觉系统,可以有效地寻求用于种群控制的新型化学信息素。最近,已证明气味结合蛋白(OBP)在嗅觉识别中起着核心作用,因此成为设计新的化学信息素的选择目标。\ udMethodology /主要发现:解决在报警器处如何识别警报消息的问题。在OBP水平上,我们已经在与6种重组蛋白的结合试验和行为实验中测试了29种化合物,包括(E)-ß-法呢烯。我们已经发现,良好的驱避剂与OBP3和/或OBP7结合,而非驱避剂则呈现不同的结合光谱。这些结果已被两种蚜虫蚜虫(Acyrthosiphon pisum)和桃蚜(Myzus persicae)验证,它们均使用(E)-ß-法呢烯作为警报信息素。 )OBP参与了对气味和信息素的化学信息的解码,并且首次在其他昆虫物种和使用野生型昆虫中提供了此类证据。此外,该数据为发现潜在的警报信息素提供了指南和协议,使用配体结合测定作为对所选化合物进行行为测试之前的初步筛选。

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