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September 19, 2025Science0 citationsOpen Access

Genomic diversity of the African malaria vector Anopheles funestus

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MBMarilou BoddéJNJoachim NwezeobiPKPetra Korlević

Key Points

  • The study finds considerable genetic diversity in Anopheles funestus, showing stable but distinct population structures across Africa.
  • High levels of gene flow were observed, with some resistance alleles shared while others arose independently, impacting vector control efforts.
  • The research utilizes sequencing of 656 modern and 45 historic specimens, providing insights into the evolution of malaria vectors over time.
  • These findings highlight the importance of strategic insecticide usage and gene drive deployment to aid in malaria elimination efforts.

Abstract

Anopheles funestus s.s. is a major human malaria vector across Africa. To study its evolution, especially under vector control pressure, we sequenced 656 modern specimens (collected 2014 to 2018) and 45 historic specimens (collected 1927 to 1967) from 16 African countries. Despite high genetic diversity, the species shows stable but considerable continental population structure. Although one population showed little differentiation over a century and 4000 kilometers, nearby, we found two genetically distinct ecotypes. Vector control has resulted in strong signals of selection, with some resistance alleles shared across populations through gene flow and others arising independently. Fortunately, we found that a promising gene drive target in Anopheles gambiae is highly conserved in An. funestus . These insights will enable more strategic insecticide usage and gene drive deployment, supporting malaria elimination.

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Cite This Study

Boddé et al. (2025) studied this question.

synapsesocial.com/papers/68d464ea31b076d99fa6412bhttps://doi.org/10.1126/science.adu3596
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