Non-contact detection of pyrethroids widely used in vector control byAnophelesmosquitoes

Author:

Kambou Sassan SimpliceORCID,Valente Adeline,Agnew Philip,de Sales Hien Domonbabele François,Yerbanga Rakiswendé Serge,Moiroux NicolasORCID,Dabire Kounbobr Roch,Pennetier Cédric,Cohuet AnnaORCID,Carrasco David

Abstract

AbstractPyrethroids are the most widely used insecticides to control vector borne diseases including malaria. Physiological resistance mechanisms to these insecticides have been well described, whereas those for behavioral resistance remain overlooked. Field data suggest the presence of spatial sensory detection byAnophelesmosquitoes of the pyrethroid molecules used in insecticide-based control tools, such as long-lasting insecticide nets or insecticide residual spraying, opening the way to the emergence of a wide range of behavioral adaptations among malaria vectors. However, the spatial sensory detection of these molecules is controversial and needs to be demonstrated. The goal of this study was to behaviorally characterize the non-contact detection of three of the most common pyrethroids used for malaria vector control: permethrin, deltamethrin an ⍺-cypermethrin.To reach this goal, we recorded the behavior (takeoff response) ofAnopheles gambiaepyrethroid-sensitive and resistant laboratory strains, as well as field collected mosquitoes from the Gambiae complex, when exposed to the headspace of bottles containing different doses of the insecticides at 25 and 35°C, in order to represent a range of laboratory and field temperatures.We found the proportion of laboratory susceptible and resistant female mosquitoes that took off was, in all treatments, dose and the temperature dependent. Sensitive mosquitoes were significantly more prone to take off only in the presence of ⍺-cypermethrin, whereas sensitive and resistant mosquitoes showed similar responses to permethrin and deltamethrin. Field-collected mosquitoes of the Gambiae complex were also responsive to permethrin, independently of the species identity (An. gambiae,An. coluzziandAn. arabiensis) or their genotypes for thekdrmutation, known to confer resistance to pyrethroids.The observed ability ofAnophelesspp. mosquitoes to detect insecticides without contact could favor the evolution of behavioral modifications that may allow them to avoid or reduce the adverse effect of insecticides and thus, the development of behavioral resistance.

Publisher

Cold Spring Harbor Laboratory

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