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综述:性信息素鉴定及其在瘿蚊科昆虫(双翅目:瘿蚊科)中的应用的最新进展。

Mini-review: recent advances in the identification and application of sex pheromones of gall midges (Diptera: Cecidomyiidae).

机构信息

Collaborative Innovation Center of Henan Grain Crops, National Key Laboratory of Wheat and Maize Crop Science, College of Plant Protection, Henan Agricultural University, Zhengzhou, China.

State Key Laboratory of the Discovery and Development of Novel Pesticide, Shenyang Sinochem Agrochemicals R&D Co. Ltd., Shenyang, China.

出版信息

Pest Manag Sci. 2020 Dec;76(12):3905-3910. doi: 10.1002/ps.5949. Epub 2020 Jul 17.

Abstract

Most gall midges (Diptera: Cecidomyiidae) are cryptic agricultural pests. These tiny insects are prone to lurk in cargoes and spread over long distances. Their larvae feed in plant tissues, so their infestations are imperceptible until crop damage and economic loss appear. The application of sex pheromones is an efficient method with which to monitor and manage gall midges. The present review focuses on recent advances in the accurate identification of gall midge sex pheromones based on rapidly evolving analytical techniques and their use in field trials in integrated pest management. To date, sex pheromones from 19 species of gall midges have been identified and reported, and sex pheromone-based monitoring systems have been developed and commercialized for at least ten gall midge species. All monitoring systems were tested in various experiments with a modicum of success. In addition to further studies of sex pheromones, identification of plant-derived volatiles may offer potentials for the manipulation of behavioral response of gall midges, which can be used in dispensers for surveillance and control purposes. © 2020 Society of Chemical Industry.

摘要

大多数瘿蚊(双翅目:瘿蚊科)是隐匿性农业害虫。这些微小的昆虫容易潜伏在货物中,并传播到很远的地方。它们的幼虫以植物组织为食,因此在作物受损和经济损失出现之前,它们的侵扰是不易察觉的。性信息素的应用是一种有效的监测和管理瘿蚊的方法。本综述重点介绍了基于快速发展的分析技术准确识别瘿蚊性信息素的最新进展,以及这些技术在综合虫害管理野外试验中的应用。迄今为止,已经鉴定和报道了 19 种瘿蚊的性信息素,并且已经为至少 10 种瘿蚊开发和商业化了基于性信息素的监测系统。所有监测系统都在各种实验中进行了测试,取得了一定的成功。除了进一步研究性信息素之外,鉴定植物源挥发物可能为操纵瘿蚊的行为反应提供潜力,这些挥发物可用于监测和控制目的的分配器。© 2020 英国化学学会。

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