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标准化生物测定显示,蚊子在单次亚致死接触化学媒介控制化合物后,会学会避免这些化合物。

Standardised bioassays reveal that mosquitoes learn to avoid compounds used in chemical vector control after a single sub-lethal exposure.

机构信息

Centre for Applied Entomology and Parasitology, School of Life Sciences, Keele University, Stafforshire, United Kingdom.

Vector Control Research Unit, School of Biological Sciences, Universiti Sains Malaysia, George Town, Malaysia.

出版信息

Sci Rep. 2022 Feb 17;12(1):2206. doi: 10.1038/s41598-022-05754-2.

Abstract

Vector-borne diseases are worldwide public health issues. Despite research focused on vectorial capacity determinants in pathogen transmitting mosquitoes, their behavioural plasticity remains poorly understood. Memory and associative learning have been linked to behavioural changes in several insect species, but their relevance in behavioural responses to pesticide vector control has been largely overlooked. In this study, female Aedes aegypti and Culex quinquefasciastus were exposed to sub-lethal doses of 5 pesticide compounds using modified World Health Organization (WHO) tube bioassays. Conditioned females, subsequently exposed to the same pesticides in WHO tunnel assays, exhibited behavioural avoidance by forgoing blood-feeding to ensure survival. Standardized resting site choice tests showed that pre-exposed females avoided the pesticides smell and choose to rest in a pesticide-free compartment. These results showed that, following a single exposure, mosquitoes can associate the olfactory stimulus of pesticides with their detrimental effects and subsequently avoid pesticide contact. Findings highlight the importance of mosquito cognition as determinants of pesticide resistance in mosquito populations targeted by chemical control.

摘要

病媒传播疾病是全球性的公共卫生问题。尽管有研究集中于病原体传播蚊子的媒介能力决定因素,但它们的行为可塑性仍知之甚少。记忆和联想学习已与几种昆虫物种的行为变化相关联,但它们在对杀虫剂媒介控制的行为反应中的相关性在很大程度上被忽视了。在这项研究中,雌性埃及伊蚊和致倦库蚊用改良的世界卫生组织(WHO)管生物测定法接触亚致死剂量的 5 种农药化合物。随后在 WHO 隧道测定中接触相同杀虫剂的条件化雌性蚊子为了生存而避免吸血,表现出行为回避。标准化休息点选择测试表明,预先暴露的雌性蚊子会避开杀虫剂的气味,并选择在没有杀虫剂的隔室中休息。这些结果表明,蚊子在单次接触后可以将杀虫剂的嗅觉刺激与其有害影响联系起来,从而避免接触杀虫剂。研究结果强调了蚊子认知作为受化学防治的蚊子种群中杀虫剂抗性决定因素的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d80/8854624/c214a47c9eb2/41598_2022_5754_Fig1_HTML.jpg

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