Uncovering the genetic diversity in Aedes aegypti insecticide resistance genes through global comparative genomics.

Anton Spadar ORCID logo ; Emma Collins ORCID logo ; Louisa A Messenger ; Taane G Clark ORCID logo ; Susana Campino ORCID logo ; (2024) Uncovering the genetic diversity in Aedes aegypti insecticide resistance genes through global comparative genomics. Scientific Reports, 14 (1). 13447-. ISSN 2045-2322 DOI: 10.1038/s41598-024-64007-6
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Aedes aegypti is vector of many arboviruses including Zika, dengue, yellow fever, West Nile, and Chikungunya. Its control efforts are hampered by widespread insecticide resistance reported in the Americas and Asia, while data from Africa is more limited. Here we use publicly available 729 Ae. aegypti whole-genome sequencing samples from 15 countries, including nine in Africa, to investigate the genetic diversity in four insecticide resistance linked genes: ace-1, GSTe2, rdl and vgsc. Apart from vgsc, the other genes have been less investigated in Ae. aegypti, and almost no genetic diversity information is available. Among the four genes, we identified 1,829 genetic variants including 474 non-synonymous substitutions, some of which have been previously documented, as well as putative copy number variations in GSTe2 and vgsc. Global insecticide resistance phenotypic data demonstrated variable resistance in geographic areas with resistant genotypes. Overall, our work provides the first global catalogue and geographic distribution of known and new amino-acid mutations and duplications that can be used to guide the identification of resistance drivers in Ae. aegypti and thereby support monitoring efforts and strategies for vector control.


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