墨西哥Yucatán地区致倦库蚊1823(双翅目:库蚊科)杀虫剂抗性相关不敏感乙酰胆碱酯酶测定

Wilbert Antonio Chi Chim, Wilbert Antonio Chi Chim, Julián García Rejón, Carlos Marcial Baak Baak, Lourdes Talavera Aguilar, Rosa Cetina Trejo, Nohemi Cigarroa Toledo, Miguel Ángel Reyes López
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引用次数: 0

摘要

乙酰胆碱酯酶是一种主要功能是通过水解乙酰胆碱来终止昆虫胆碱能突触中神经冲动传递的酶。然而,频繁使用杀虫剂可以选择具有酶改变和功能变化的个体,导致对杀虫剂不敏感。在墨西哥,目前防治致倦库蚊等昆虫病媒的战略主要基于使用合成杀虫剂。在卫生和农业实践中使用这些化学品也可能导致蚊子对几类杀虫剂不敏感。因此,有必要确定是否存在与抗性相关的生理机制。因此,本研究的目的是确定Cx是否存在乙酰胆碱酯酶对杀虫剂不敏感的情况。在墨西哥Yucatán州城市和农村地区收集的致倦库蚊种群。酶促试验在对既定方案稍加修改后进行。该地区的蚊子种群显示乙酰胆碱酯酶对残杀威(一种氨基甲酸酯类杀虫剂)不敏感。我们认为确定影响蚊子暴露于杀虫剂后行为和反应的环境因素非常重要,这些知识可以为媒介控制规划的有效策略设计提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of insecticide resistence associated insensitive acetylcholinesterase in Culex quinquefasciatus, Say,1823 (Diptera: Culicidae) collected in Yucatán, Mexico
Acetylcholinesterase is an enzyme whose main function is to terminate the transmission of nerve impulses in the cholinergic synapse in insects through the hydrolysis of acetylcholine. However, frequent applications of insecticides can select for individuals with an alteration in the enzyme and functional changes that result in an insensitivity to insecticides. In Mexico, the current strategy to combat insect vectors such as Culex quinquefasciatus is based mainly on the use of synthetic insecticides. The use of these chemicals in health and agricultural practices may also contribute to mosquito insensitivity to several groups of insecticides. Therefore, it is considered necessary to determine if there is any physiological mechanism associated with resistance. For this reason, the objective of this research was to identify if there is insensitivity of acetylcholinesterase to insecticides in Cx. quinquefasciatus populations, collected in urban and rural areas of the State of Yucatán, Mexico. Enzymatic tests were carried out with slight modifications to the established protocols. Areas were identified with mosquito populations showing acetylcholinesterase insensitivity to propoxur, a carbamate insecticide. We consider it important to determine the environmental factors that affect the behavior and response of mosquitoes following exposure to insecticides, and this knowledge could inform the design of efficient strategies in vector control programs.
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