Impulsive Release Strategies for Wolbachia-Infected Mosquitoes under Temperature-Induced Infection Loss

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Hauptverfasser: Alves, Jéssica C. S., Schaerer, Christian E., Ferreira, Cláudia P.
Format: Preprint
Veröffentlicht: 2026
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author Alves, Jéssica C. S.
Schaerer, Christian E.
Ferreira, Cláudia P.
author_facet Alves, Jéssica C. S.
Schaerer, Christian E.
Ferreira, Cláudia P.
contents The release of Wolbachia-infected mosquitoes is a promising strategy for controlling Aedes aegypti populations, but exposure to high temperatures can induce temporary infection loss and compromise long-term persistence. In this work, we propose a population-dynamics model based on impulsive differential equations to describe the interaction between wild and infected mosquitoes, incorporating cytoplasmic incompatibility, periodic release interventions, and temperature-driven infection loss. Analytical threshold conditions are derived to characterize the existence and stability of periodic solutions associated with successful Wolbachia establishment. Numerical simulations illustrate the theoretical results and enable a comparative analysis of the wMelPop, wMel, and wAlbB strains, highlighting how differences in thermal tolerance and fitness costs influence persistence after the release phase. The results emphasize the importance of accounting for environmental stress and impulsive interventions when designing effective and robust Wolbachia release strategies.
format Preprint
id arxiv_https___arxiv_org_abs_2602_07231
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Impulsive Release Strategies for Wolbachia-Infected Mosquitoes under Temperature-Induced Infection Loss
Alves, Jéssica C. S.
Schaerer, Christian E.
Ferreira, Cláudia P.
Populations and Evolution
92-10, 34A37
The release of Wolbachia-infected mosquitoes is a promising strategy for controlling Aedes aegypti populations, but exposure to high temperatures can induce temporary infection loss and compromise long-term persistence. In this work, we propose a population-dynamics model based on impulsive differential equations to describe the interaction between wild and infected mosquitoes, incorporating cytoplasmic incompatibility, periodic release interventions, and temperature-driven infection loss. Analytical threshold conditions are derived to characterize the existence and stability of periodic solutions associated with successful Wolbachia establishment. Numerical simulations illustrate the theoretical results and enable a comparative analysis of the wMelPop, wMel, and wAlbB strains, highlighting how differences in thermal tolerance and fitness costs influence persistence after the release phase. The results emphasize the importance of accounting for environmental stress and impulsive interventions when designing effective and robust Wolbachia release strategies.
title Impulsive Release Strategies for Wolbachia-Infected Mosquitoes under Temperature-Induced Infection Loss
topic Populations and Evolution
92-10, 34A37
url https://arxiv.org/abs/2602.07231