Genome-wide association studies reveal novel loci associated with pyrethroid and organophosphate resistance in Anopheles gambiae and Anopheles coluzzii
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Nature Communications
Abstract
Resistance to insecticides in Anopheles mosquitoes threatens the effectiveness
of malaria control, but the genetics of resistance are only partially understood.
We performed a large scale multi-country genome-wide association study of
resistance to two widely used insecticides: deltamethrin and pirimiphos methyl, using sequencing data from An. gambiae and An. coluzzii from ten
locations in West Africa. Resistance was highly multi-genic, multi-allelic and
variable between populations. While the strongest and most consistent asso ciation with deltamethrin resistance came from Cyp6aa1, this was based on
several independent copy number variants (CNVs) in An. coluzzii, and on a non CNV haplotype in An. gambiae. For pirimiphos-methyl, signals included Ace1,
cytochrome P450s, glutathione S-transferases and the nAChR target site of
neonicotinoid insecticides. The regions around Cyp9k1 and the Tep family of
immune genes showed evidence of cross-resistance to both insecticides.
These locally-varying, multi-allelic patterns highlight the challenges involved
in genomic monitoring of resistance, and may form the basis for improved
surveillance methods.
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Research Article