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December 8, 2025Communications Biology2 citationsOpen Access

Genome-wide analysis of genetic diversity in Anopheles darlingi from Rondônia State, Brazil

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SMSophie Moss

Key Points

  • Genetic diversity was identified in Anopheles darlingi, indicating potential for adaptation and resistance mechanisms.
  • Whole-genome analysis revealed signatures of selection in cytochrome P450 genes associated with insecticide resistance.
  • Observational analysis included both wild-caught and colony-maintained populations from Rondônia State in Brazil.
  • Findings highlight the need for further studies on insecticide resistance-linked genes and their evolutionary implications.

Abstract

Abstract Anopheles darlingi is the primary malaria vector in Central and South America and is responsible for most malaria transmission in the Amazon region. In this study, we perform whole-genome analysis of individual An. darlingi mosquitoes to explore genomic diversity, signatures of selection, and insecticide resistance markers. We analysed wild-caught ( n = 20) and colony-maintained ( n = 8) mosquitoes from the State of Rondônia, Brazil. In total, 1.54 million high-quality single-nucleotide polymorphisms (SNPs) were identified. Population genomic analysis revealed genetic differentiation between the colony and wild populations. No SNPs previously associated with insecticide resistance were detected. However, several SNPs were observed in four genes commonly associated with insecticide resistance: ace1 , rdl , gste2 , and vgsc . Genes under directional selection were identified, but no clear selective sweeps were found using genome-wide selection scans. Gene duplications were identified in cytochrome P450 genes, which are known to metabolise pyrethroids. This study provides a detailed genetic profile of An. darlingi , highlighting genes potentially involved in insecticide resistance, and presents an analysis of signatures of selection based on WGS data for this species. Our findings identify markers in insecticide resistance-associated genes that warrant further investigation through phenotypic-genotypic assays.

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Sophie Moss (2025) studied this question.

synapsesocial.com/papers/693624a44fa91c937236c4b8https://doi.org/10.1038/s42003-025-09316-w
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