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植物源驱避剂混合物的开发和实验室验证,对埃及伊蚊[双翅目:蚊科]、冈比亚按蚊[双翅目:蚊科]和致倦库蚊[双翅目:蚊科]均有效。

Development and laboratory validation of a plant-derived repellent blend, effective against Aedes aegypti [Diptera: Culicidae], Anopheles gambiae [Diptera: Culicidae] and Culex quinquefasciatus [Diptera: Culicidae].

机构信息

Department of Biosciences, Faculty of Science and Engineering, Swansea University, Swansea, United Kingdom.

Rentokil Initial 1927 plc, Crawley, West Sussex, United Kingdom.

出版信息

PLoS One. 2024 Mar 21;19(3):e0299144. doi: 10.1371/journal.pone.0299144. eCollection 2024.

Abstract

Mosquitoes of the genera Aedes, Anopheles and Culex vector a wide range of pathogens seriously affecting humans and livestock on a global scale. Over-reliance on insecticides and repellents has driven research into alternative, naturally-derived compounds to fulfil the same objectives. Steam distilled extracts of four plants with strong, yet attractive, volatile profiles were initially assessed for repellency in a dual-port olfactometer using Aedes aegypti as the model species. Picea sitchensis was found to be the most repellent, proving comparable to leading products when applied at 100% (p = 1.000). Key components of conifer-derived volatile profiles were then screened via electroantennography before those components eliciting an electrophysiological response were assayed individually in the olfactometer; according to WHO protocol. The most promising 5 were selected for reductive analyses to produce an optimised semiochemical blend. This combination, and a further two variations of the blend, were then progressed to a multi-species analysis using the BG-test whereby bite-attempt frequency on hands was assessed under different repellent treatments; assays were compared between Aedes aegypti, Anopheles gambiae and Culex quinquefasciatus. Efficacy was found against all three species, although it was found that Ae. aegypti was the most susceptible to the repellent, with An. gambiae being the least. Here, a novel, naturally-derived blend is presented with weak spatial repellency, as confirmed in laboratory assays. Further work will be required to assess the full extent of the potential of the products, both in terms of field application and species screening; however, the success of the products developed demonstrate that plant metabolites have great capacity for use in the repellent sector; both to improve upon known compounds and to reduce the usage of toxic products currently on the market.

摘要

伊蚊、疟蚊和库蚊属的蚊子传播范围广泛的病原体,严重影响全球人类和牲畜。过度依赖杀虫剂和驱虫剂促使人们研究替代的、天然衍生的化合物来实现相同的目标。四种具有强烈但有吸引力的挥发性特征的植物的蒸汽蒸馏提取物最初在双端口嗅觉计中使用埃及伊蚊作为模型物种进行了驱避性评估。发现白云杉的驱避性最强,当以 100%(p = 1.000)施用时,与领先产品相当。然后通过触角电生理学筛选针叶树衍生的挥发性成分的关键成分,然后在嗅觉计中单独测试那些引起电生理反应的成分;根据世卫组织的协议。选择最有前途的 5 种进行还原分析,以产生优化的半化学混合物。然后将该组合以及该组合的另外两种变体推进到使用 BG 测试的多物种分析中,在不同的驱虫处理下评估手上的叮咬尝试频率;比较了埃及伊蚊、冈比亚按蚊和致倦库蚊之间的测定值。发现该混合物对所有三种物种都有效,尽管发现埃及伊蚊对驱虫剂最敏感,冈比亚按蚊最不敏感。在这里,提出了一种新型的天然衍生混合物,其空间驱避性较弱,实验室测定结果证实了这一点。需要进一步的工作来评估这些产品的潜力,包括在现场应用和物种筛选方面;然而,开发产品的成功证明植物代谢产物在驱虫剂领域具有很大的应用潜力;既可以改进已知化合物,也可以减少目前市场上有毒产品的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ce1/10956804/2fa22f8fd150/pone.0299144.g001.jpg

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