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酵母包封的橙油对来自巴西的埃及伊蚊菌株具有高效的杀幼虫效果。

High larvicidal efficacy of yeast-encapsulated orange oil against Aedes aegypti strains from Brazil.

机构信息

Laboratório de Bioquímica E Fisiologia de Insetos, Instituto Oswaldo Cruz (IOC-Fiocruz), Rio de Janeiro, Brazil.

Laboratório de Mosquitos Transmissores de Hematozoários, Instituto Oswaldo Cruz (IOC-Fiocruz), Rio de Janeiro, Brazil.

出版信息

Parasit Vectors. 2021 May 22;14(1):272. doi: 10.1186/s13071-021-04733-2.

Abstract

BACKGROUND

Botanical substances such as essential oils (EOs) have demonstrated insecticidal properties and are a valid option for vector control. However, free EOs are unreliable as mosquito larvicides due their easy degradation by environmental exposure to ultraviolet light and higher temperatures. Here, we assessed the efficacy of a mosquito larvicide based on orange oil in a yeast-based delivery system against Aedes aegypti strains with different resistance status towards chemical neurotoxic insecticides. This larvicide preparation was physicochemically characterized in a previous report.

METHODS

Larvae of four Ae. aegypti strains from different regions of Brazil and different resistance profiles for deltamethrin (pyrethroid) and temephos (organophosphate) were tested against yeast-encapsulated orange oil (YEOO) in laboratory conditions for measurement of LC and LC values. The same assays were performed with the Belo Horizonte strain under environmental conditions (natural light and temperature). The resistance profiles of these strains were compared to the Rockefeller reference strain in all conditions.

RESULTS

YEOO was found to be a highly active larvicide (LC < 50 mg/L) against all Ae. aegypti strains tested in both laboratory conditions (LC = 8.1-24.7 mg/L) and environmental conditions with natural light and temperature fluctuation (LC = 20.0-49.9 mg/L). Moreover, all strains were considered susceptible (RR < 5) to YEOO, considering resistance ratios calculated based on the Rockefeller strain. The resistance ratios were only higher than 2.5 for LC of Belo Horizonte in the laboratory, probably due the higher heterogeneity associated with older egg papers (> 5 months).

CONCLUSION

YEOO demonstrates high larvicidal activity against Ae. aegypti strains with resistant phenotypes for deltamethrin (PY) and temephos (OP). This larvicidal activity suggests the potential for the development of YEOO as an alternative intervention to synthetic insecticides in integrated vector management programs, for populations with resistance to commonly used insecticides.

摘要

背景

植物物质如精油(EOs)已表现出杀虫特性,是控制病媒的有效选择。然而,由于其在环境中暴露于紫外光和较高温度下容易降解,因此游离 EOs 作为杀蚊幼虫剂不可靠。在这里,我们评估了基于酵母的递送系统中的橙油基杀蚊幼虫剂对具有不同化学神经毒剂杀虫剂抗性状态的埃及伊蚊(Aedes aegypti)菌株的功效。这种杀幼虫剂制剂在之前的报告中进行了物理化学特性描述。

方法

来自巴西不同地区的四种埃及伊蚊(Aedes aegypti)菌株的幼虫和对溴氰菊酯(拟除虫菊酯)和双硫磷(有机磷)具有不同抗性谱的幼虫,在实验室条件下用酵母包封的橙油(YEOO)进行测试,以测量 LC 和 LC 值。在环境条件(自然光和温度)下对贝洛奥里藏特(Belo Horizonte)菌株进行了相同的测定。在所有条件下,将这些菌株的抗性谱与洛克菲勒(Rockefeller)参考菌株进行了比较。

结果

YEOO 被发现是一种高度有效的杀幼虫剂(LC<50mg/L),对所有在实验室条件下(LC=8.1-24.7mg/L)和具有自然光和温度波动的环境条件下(LC=20.0-49.9mg/L)测试的埃及伊蚊(Aedes aegypti)菌株均有效。此外,所有菌株均被认为对 YEOO 敏感(RR<5),考虑到基于洛克菲勒(Rockefeller)菌株计算的抗性比。贝洛奥里藏特(Belo Horizonte)的 LC 抗性比仅高于 2.5,可能是由于较旧的卵纸(>5 个月)导致的异质性较高所致。

结论

YEOO 对具有对溴氰菊酯(PY)和双硫磷(OP)抗性表型的埃及伊蚊(Aedes aegypti)菌株具有高杀幼虫活性。这种杀幼虫活性表明,在具有对常用杀虫剂抗性的人群中,YEOO 有可能作为综合病媒管理计划中对合成杀虫剂的替代干预措施进行开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b55/8140510/7a596891b5fc/13071_2021_4733_Fig1_HTML.jpg

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