以色列苏云金芽孢杆菌与硼酸毒糖饵混合对埃及伊蚊和致倦库蚊的杀虫效果

Taylor Ballantyne, V. Aryaprema, R. Xue, W. Qualls
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摘要

毒糖饵可以利用成蚊的静息行为和食糖行为对其进行喷洒,通过食入而不是接触的方式给药。本试验旨在评价含硼酸和苏云金芽孢杆菌(Bti)混合剂的TSB叶片喷雾对埃及伊蚊波多黎各(PR)抗性株和奥兰多(OR)敏感株以及致倦库蚊(Gainesville 1995)实验室菌落的双重杀虫和杀虫效果。TSB的幼虫和成虫评估包括11%的VectoBac (Valent Biosciences, Libertyville, IL;Bti), 5%硼酸和10%蔗糖溶液。成人TSB干预与幼虫干预相同,但增加了食品级,5g蓝色1号染料(Sigma Aldrich;密苏里州圣路易斯市)观察成虫的进食情况。对照组接受10%的蔗糖溶液。为了评估蚊子幼虫的死亡率,我们对凤梨蝇进行了TSB处理,将径流滴入装有蚊子幼虫的锅中。施药后24 h,幼虫死亡率100%。在记录死亡率时,将50只凤尾蝶幼虫引入幼虫池,并向凤尾蝶喷洒水以模拟降雨,使剩余的TSB被冲洗到幼虫池中。第4 d后,伊蚊幼虫死亡率为83.5%±14.3。aegypti_PR, 92.5%±6.1;埃及伊蚊OR, Cx为97%±1.7。quinquefasciatus。成人TSB评估暴露后72小时总平均死亡率为52.7%±24.2。aegypti_PR, 34.3%±26.5;aegypti_OR为73.7%±13.9。quinquefasciatus。我们的研究表明,含Bti的TSB作为杀虫屏障施用时对幼虫有效,可以作为一种双效灭蚊方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ADULTICIDAL AND LARVICIDAL IMPACTS OF THE MIXTURE OF BACILLUS THURINGIENSIS ISRAELENSIS AND BORIC ACID TOXIC SUGAR BAIT (TSB) AGAINST AEDES AEGYPTI AND CULEX QUINQUEFASCIATUS
Toxic sugar baits (TSBs) can be used to deliver insecticide material via ingestion instead of via contact through spraying of insecticides by targeting the resting and sugar-feeding behaviors of adult mosquitoes. This semi-field study aimed to evaluate the adulticidal and larvicidal dual action of a foliage spray of a TSB with a mixture of Bacillus thuringiensis israelensis (Bti), and boric acid against Aedes aegypti Puerto Rico (PR) strain (resistant) and Orlando (OR) strain (susceptible), and laboratory colony of Culex quinquefasciatus (Gainesville 1995 strain). The larval and adult evaluation of TSB consisted of 11% VectoBac (Valent Biosciences, Libertyville, IL; Bti), 5% boric acid, and 10% sucrose solution. The TSB intervention for adults consisted of the same as the larval intervention but had an addition of a food grade, 5g Blue No. 1 dye (Sigma Aldrich; St. Louis MO) to observe adult feeding. The controls received a 10% sucrose solution. For the larval mortality evaluation, the TSB was applied to the bromeliad with the runoff dripping into pans containing mosquito larvae. At 24 hours post-application, 100% larval mortality was observed. At all-time mortality recordings, 50 larvae were introduced into the larval pans and the bromeliads were sprayed with water to mimic rainfall allowing the remaining TSB to be washed off into the larval pans. After the 4th day of larval introductions, larval mortality was 83.5% ± 14.3 for Ae. aegypti_PR, 92.5% ± 6.1 for Ae. aegypti OR, and 97 % ±1.7 for Cx. quinquefasciatus. Total mean mortality at 72 hours post exposure for the adult TSB evaluation was 52.7% ± 24.2 for Ae. aegypti_PR, 34.3% ± 26.5 for Ae. aegypti_OR, and 73.7% ± 13.9 for Cx. quinquefasciatus. Our study suggests this TSB including Bti is effective against larvae when applied as an adulticide barrier application and could be a dual-action approach to mosquito control.
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