Implications of mosquito metabolism on vector competence

Mosquito‐borne diseases (MBDs) annually kill nearly half a million people. Due to the lack of effective vaccines and drugs on most MBDs, disease prevention relies primarily on controlling mosquitoes. Despite huge efforts having been put into mosquito control, eco‐friendly and sustainable mosquito‐co...

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Veröffentlicht in:Insect science 2024-06, Vol.31 (3), p.674-682
Hauptverfasser: Gao, Li, Yang, Wenxu, Wang, Jingwen
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container_title Insect science
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creator Gao, Li
Yang, Wenxu
Wang, Jingwen
description Mosquito‐borne diseases (MBDs) annually kill nearly half a million people. Due to the lack of effective vaccines and drugs on most MBDs, disease prevention relies primarily on controlling mosquitoes. Despite huge efforts having been put into mosquito control, eco‐friendly and sustainable mosquito‐control strategies are still lacking and urgently demanded. Most mosquito‐transmitted pathogens have lost the capacity of de novo nutrition biosynthesis, and rely on their vertebrate and invertebrate hosts for sustenance during the long‐term obligate parasitism process. Therefore, a better understanding of the metabolic interactions between mosquitoes and pathogens will contribute to the discovery of novel metabolic targets or regulators that lead to reduced mosquito populations or vector competence. This review summarizes the current knowledge about the effects of mosquito metabolism on the transmission of multiple pathogens. We also discuss that research in this area remains to be explored to develop multiple biological prevention and control strategies for MBDs.
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subjects Animals
Aquatic insects
Biosynthesis
Culicidae
flaviviruses
Insect control
Mosquito Control - methods
mosquito metabolism
Mosquito Vectors
Mosquitoes
Parasitism
Pathogens
Plasmodium
Prevention
Vector Borne Diseases - prevention & control
Vector Borne Diseases - transmission
vector competence
Vertebrates
title Implications of mosquito metabolism on vector competence
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