A recurring target-site mutation identified in various pests and disease vectors alters the voltage gated sodium channel (vgsc) gene (often referred to as knockdown resistance or kdr) to confer resistance to commonly used insecticides, pyrethroids and DDT. The ubiquity of kdr mutations poses a major global threat to the continued use of insecticides as a means for vector control. In this study, we generate common kdr mutations in isogenic laboratory Drosophila strains using CRISPR/Cas9 editing. We identify differential sensitivities to permethrin and DDT versus deltamethrin among these mutants as well as contrasting physiological consequences of two different kdr mutations. Importantly, we apply a CRISPR-based allelic-drive to replace a res...
Pyrethroid insecticides are widely used to control insect pests and human disease vectors. Voltage-g...
<div><p>Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sod...
Abstract Background Understanding the molecular basis of insecticide resistance is key to improve th...
A recurring target-site mutation identified in various pests and disease vectors alters the voltage ...
Insecticide resistance in Anopheles mosquitoes is a major obstacle in maintaining the momentum in re...
Insecticide resistance in Aedes mosquitoes presents a major challenge to the control of arboviral di...
Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sodium chan...
Chemical insecticides are a major tool for the control of many of the world's most damaging arthropo...
Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sodium chan...
How often insecticide resistance mutations arise in natural insect populations is a fundamental ques...
Insecticide resistance is an increasing problem worldwide that limits the efficacy of control method...
How often insecticide resistance mutations arise in natural insect populations is a fundamental ques...
How often insecticide resistance mutations arise in natural insect populations is a fundamental ques...
Resistance to insecticides has evolved in multiple insect species, leading to increased application ...
Aedes aegypti is the primary vector of dengue, chikungunya, Zika, and urban yellow fever. Insecticid...
Pyrethroid insecticides are widely used to control insect pests and human disease vectors. Voltage-g...
<div><p>Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sod...
Abstract Background Understanding the molecular basis of insecticide resistance is key to improve th...
A recurring target-site mutation identified in various pests and disease vectors alters the voltage ...
Insecticide resistance in Anopheles mosquitoes is a major obstacle in maintaining the momentum in re...
Insecticide resistance in Aedes mosquitoes presents a major challenge to the control of arboviral di...
Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sodium chan...
Chemical insecticides are a major tool for the control of many of the world's most damaging arthropo...
Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sodium chan...
How often insecticide resistance mutations arise in natural insect populations is a fundamental ques...
Insecticide resistance is an increasing problem worldwide that limits the efficacy of control method...
How often insecticide resistance mutations arise in natural insect populations is a fundamental ques...
How often insecticide resistance mutations arise in natural insect populations is a fundamental ques...
Resistance to insecticides has evolved in multiple insect species, leading to increased application ...
Aedes aegypti is the primary vector of dengue, chikungunya, Zika, and urban yellow fever. Insecticid...
Pyrethroid insecticides are widely used to control insect pests and human disease vectors. Voltage-g...
<div><p>Pyrethroids are the most used insecticide class worldwide. They target the voltage gated sod...
Abstract Background Understanding the molecular basis of insecticide resistance is key to improve th...