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Evaluation of a Push-Pull Approach for Aedes aegypti (L.) Using a Novel Dispensing System for Spatial Repellents in the Laboratory and in a Semi-Field Environment

机译:在实验室和半田间环境中使用新型空间驱虫剂分配系统评估埃及伊蚊(L.)的推挽方法

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摘要

The increase in insecticide resistant mosquito populations necessitates the exploration of novel vector control intervention measures. Push-pull strategies for insect control have been successful when used in integrated crop pest management. Through the combinatory use of deterring and attracting stimuli, the abundance of insect pests can be changed in a given area. A push-pull strategy might also significantly reduce human-vector contacts and augment existing mosquito control strategies, e.g. through the combination of an attractive trapping system and a potent spatial repellent. Our approach includes the BG-Sentinel (BGS) trap in combination with catnip oil (Nepeta cataria), a known spatial repellent for Aedes aegypti. To impart a deterrent effect on mosquitoes at a distance, a homogenous and continuous dispersal of volatile repellent compounds is crucial. We have developed a repellent dispensing system that is easy to use and provides a homogenous dispersal of repellent in an air curtain. The use of five 9 V fans and custom-made repellent sachets containing 10% catnip essential oil created a repellent loaded air curtain that provided coverage of an area of 2 m2 (1.2 x 1.65 m). Air was sampled at four different heights in the curtain and analysed via thermal desorption (TD) and consecutive gas chromatography—mass spectrometry (GC-MS). Nepetalactone, the main constituent of the oil, was detected in air at a concentration range of 80 to 100 μg/m3 and the amounts were comparable at all four sampling positions. When a human volunteer was sitting behind the repellent curtain and a BGS trap was installed in front of the curtain in laboratory push-pull trials, Ae. aegypti landing collections decreased significantly by 50% compared to repellent-free controls. However, in a semi-field environment, comparable protective effects could not be achieved and further research on suitable repellent concentrations for outdoor implementation will be required.
机译:抗杀虫剂蚊子种群的增加有必要探索新的媒介控制干预措施。当将推挽策略用于昆虫控制时,已成功地用于农作物病虫害综合防治。通过组合使用抑制和吸引刺激,可以在给定区域内改变虫害的数量。推挽策略也可能会大大减少人与媒介的接触并增强现有的蚊子控制策略,例如通过诱人的诱捕系统和强效的驱蚊剂相结合。我们的方法包括将BG前哨(BGS)捕集阱与猫薄荷油(Nepeta cataria)结合使用,后者是埃及伊蚊的已知空间驱避剂。为了对一定距离的蚊子产生威慑作用,挥发性驱避剂化合物的均匀连续分散至关重要。我们开发了一种驱蚊剂分配系统,该系统易于使用,并在空气幕中提供驱蚊剂的均匀分散。使用五个9 V风扇和定制的包含10%猫薄荷精油的驱虫剂小袋,可产生驱虫剂负载的气幕,其覆盖面积为2 m 2 (1.2 x 1.65 m)。在帘幕的四个不同高度对空气进行采样,并通过热脱附(TD)和连续气相色谱-质谱(GC-MS)进行分析。荆芥内酯是油的主要成分,它在空气中的浓度范围为80至100μg/ m 3 ,并且在所有四个采样位置都可比。在Ae实验室推拉试验中,当一名志愿者坐在驱蚊帘后面,并且在帘前安装了BGS捕集阱。与无驱蚊的对照组相比,埃及的着陆收集量明显减少了50%。然而,在半田环境中,无法达到可比的保护效果,因此需要进一步研究适合室外使用的驱虫剂浓度。

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