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首页> 外文期刊>Physiological Entomology >Aspects of insect chemical ecology: exploitation of reception and detection as tools for deception of pests and beneficial insects.
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Aspects of insect chemical ecology: exploitation of reception and detection as tools for deception of pests and beneficial insects.

机译:昆虫化学生态学的方面:利用接收和检测手段欺骗有害生物和有益昆虫。

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Empirical exploitation of insect reception and detection at the peripheral neurosensory level has been extremely valuable for identifying pheromones and other semiochemicals, mainly by electroantennogram or single cell preparations coupled with capillary gas chromatography. Differential sensitivity to semiochemicals at the single-cell level has allowed the identification of some of the most active semiochemicals relating to host location and, more importantly, to the avoidance of nonhosts. However, in terms of molecular recognition, there is still a considerable gap in understanding the detection of particular molecules and their discrimination from closely-related chemical structures. New approaches will be needed to understand the processes of molecular recognition more precisely. Nevertheless, from electrophysiological studies to the most advanced molecular techniques, it has been possible to identify semiochemicals for the deception of pests in their quest to find plant and animal hosts, as well as mates. Even the deception of insects antagonistic to pests, particularly parasitoids, can now be exploited for managing pests in more sustainable systems. Successes in exploiting insect semiochemicals in the interests of better agriculture and animal husbandry are exemplified, and potential new ways of learning more about reception and detection for deception are discussed. This takes the subject beyond the management of pest and beneficial insects to wider commercial and social opportunities.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-3032.2011.00828.x
机译:在外围神经感觉水平上对昆虫的接收和检测进行经验性开发对于鉴定信息素和其他化学信息素具有极其重要的价值,主要是通过脑电图或单细胞制备方法与毛细管气相色谱法相结合。在单细胞水平上对化学信息素的差异敏感性使得人们能够鉴定出一些与宿主位置有关的最活跃的化学信息素,更重要的是,可以避免非宿主。但是,就分子识别而言,在理解特定分子的检测以及它们与紧密相关的化学结构的区别方面仍然存在很大的差距。需要新的方法来更精确地理解分子识别的过程。然而,从电生理学研究到最先进的分子技术,在寻找植物和动物宿主以及伴侣的过程中,已经有可能鉴定出用于欺骗害虫的化学信息素。现在甚至可以利用欺骗性害虫(特别是寄生虫)的欺骗来在更可持续的系统中管理害虫。举例说明了为更好的农业和畜牧业而开发昆虫化学信息素的成功案例,并讨论了潜在的新方法,可更多地了解接收和欺骗检测。这使本主题不仅限于害虫和有益昆虫的管理,还涉及了广泛的商业和社会机会。数字对象标识符http://dx.doi.org/10.1111/j.1365-3032.2011.00828.x

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