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昆虫的神经肽生理学。

Neuropeptide physiology in insects.

机构信息

Department of Biology, Queen's University, Kingston, ON, Canada.

出版信息

Adv Exp Med Biol. 2010;692:166-91. doi: 10.1007/978-1-4419-6902-6_9.

Abstract

In a search for more environmentally benign alternatives to chemical pesticides, insect neuropeptides have been suggested as ideal candidates. Neuropeptides are neuromodulators and/or neurohormones that regulate most major physiological and behavioral processes in insects. The major neuropeptide structures have been identified through peptide purification in insects (peptidomics) and insect genome projects. Neuropeptide receptors have been identified and characterized in Drosophila and similar receptors are being targeted in other insects considered to be economically detrimental pests in agriculture and forestry. Defining neuropeptide action in different insect systems has been more challenging and as a consequence, identifying unique targets for potential pest control is also a challenge. In this chapter, neuropeptide biosynthesis as well as select physiological processes are examined with a view to pest control targets. The application of molecular techniques to transform insects with neuropeptide or neuropeptide receptor genes, or knockout genes to identify potential pest control targets, is a relatively new area that offers promise to insect control. Insect immune systems may also be manipulated through neuropeptides which may aid in compromising the insects ability to defend against foreign invasion.

摘要

在寻找对环境更友好的化学农药替代品的过程中,昆虫神经肽被认为是理想的候选物质。神经肽是神经调节剂和/或神经激素,调节昆虫的大多数主要生理和行为过程。通过昆虫(肽组学)和昆虫基因组计划中的肽纯化,已经确定了主要的神经肽结构。在果蝇中已经鉴定和表征了神经肽受体,并且在其他被认为对农业和林业有害的经济有害昆虫中也在针对类似的受体。在不同的昆虫系统中定义神经肽的作用更具挑战性,因此,确定潜在的害虫防治的独特靶标也是一个挑战。在本章中,从害虫防治靶标的角度检查了神经肽生物合成以及选择的生理过程。应用分子技术将神经肽或神经肽受体基因或敲除基因转化为昆虫,以确定潜在的害虫防治靶标,是一个相对较新的领域,为昆虫控制带来了希望。通过神经肽也可以操纵昆虫的免疫系统,这可能会削弱昆虫抵御外来入侵的能力。

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