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两种邻氨基苯甲酸酯类化合物对白纹伊蚊(双翅目:蚊科)的毒性和驱避性。

Toxicity and repellency of two anthranilates against Aedes albopictus Skuse (Diptera: Culicidae).

机构信息

Department of Entomology, South China Agricultural University, Guangzhou 510640, China.

Department of Entomology, South China Agricultural University, Guangzhou 510640, China.

出版信息

Acta Trop. 2019 Dec;200:105171. doi: 10.1016/j.actatropica.2019.105171. Epub 2019 Sep 12.

Abstract

The ability of Aedes albopictus Skuse to transmit several pathogens to humans makes it a very important mosquito with public health significance. Ecofriendly products as alternatives to synthetic chemicals for the control of mosquito vectors are needed. Therefore, the larvicidal and repellent effects of two nontoxic chemicals, butyl anthranilate (BA) and ethyl anthranilate (EA), at different concentrations were compared in A. albopictus. The repellency persistence of BA and three commercial mosquito repellent products (Liushen repellent spray, DKB Korean, Raid repellent spray) against A. albopictus was compared. The results showed that 0.1% concentrations of BA and EA solutions were highly toxic to A. albopictus larvae, and the mortality rate was >90% after 4 h of treatment. We found that BA was more repellent than EA, and at 0.1% BA and 1% EA, and the repellency rates were 53.62% and 38.47%, respectively. Overall, 5% BA presented a significantly longer repellency time than the three commercial repellent products against female A. albopictus. These results indicate that BA has significant larvicidal and repellent effects and can be exploited further for the development of ecofriendly alternatives to existing toxic chemicals currently used for mosquito control.

摘要

白纹伊蚊能够传播多种病原体给人类,因此成为具有重要公共卫生意义的蚊子。需要寻找环保型产品来替代合成化学品,以控制蚊虫媒介。因此,比较了两种无毒化学物质丁基邻氨基苯甲酸酯(BA)和乙基邻氨基苯甲酸酯(EA)在不同浓度下对白纹伊蚊的杀幼虫和驱避效果。比较了 BA 和三种市售驱蚊产品(六神驱蚊花露水、DKB 韩国、雷达驱蚊喷雾)对白纹伊蚊的驱避持久性。结果表明,0.1%浓度的 BA 和 EA 溶液对白纹伊蚊幼虫具有高毒性,处理 4 小时后死亡率>90%。我们发现 BA 比 EA 更具驱避性,在 0.1% BA 和 1% EA 下,驱避率分别为 53.62%和 38.47%。总体而言,5% BA 对雌性白纹伊蚊的驱避时间明显长于三种市售驱蚊产品。这些结果表明,BA 具有显著的杀幼虫和驱避效果,可以进一步开发环保型替代品,替代目前用于控制蚊虫的有毒化学品。

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