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Population genomics of Anopheles darlingi, the principal South American malaria vector mosquito

  • Jacob A. Tennessen
  • , Raphael Brosula
  • , Estelle Chabanol
  • , Sara Bickersmith
  • , Angela M. Early
  • , Margaret Laws
  • , Katrina A. Kelley
  • , Maria Eugenia Grillet
  • , Dionicia Gamboa
  • , Eric R. Lucas
  • , Jean Bernard Duchemin
  • , Martha L. Quiñones
  • , Maria Anice Mureb Sallum
  • , Eduardo S. Bergo
  • , Jorge E. Moreno
  • , Sanjay Nagi
  • , Nicholas J. Arisco
  • , Mohini Sooklall
  • , Reza Niles-Robin
  • , Marcia C. Castro
  • Horace Cox, Mathilde Gendrin, Jan E. Conn, Daniel E. Neafsey
  • Harvard T.H. Chan School of Public Health
  • Broad Institute
  • Institut Pasteur de la Guyane
  • Wadsworth Center for Laboratories and Research
  • Universidad Central de Venezuela, Facultad de Ciencias
  • Liverpool School of Tropical Medicine
  • Institut Pasteur, Paris
  • National University of Colombia
  • University of São Paulo
  • Instituto Pasteur
  • Centro de Investigaciones de Campo Francesco Vitanza
  • Ministry of Health
  • State University of New York-Albany

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

1 Cita (Scopus)

Resumen

Malaria in South america remains a serious public health problem. Anopheles (Nyssorhynchus) darlingi is the most important malaria vector across tropical Latin america. Vector-targeted disease control efforts require a thorough understanding of mosquito demographic and evolutionary patterns. We present and analyze whole genomes of 1094 An. darlingi (median depth 18x) from six South american countries. We observe deep geographic population structure, high genetic diversity including 13 putative segregating inversions, and no evidence for sympatric cryptic taxa despite high interpopulation divergence. Strong signals of selection are plausibly driven by insecticides, especially on cytochrome P450 genes. Our results will facilitate effective mosquito surveillance and control while highlighting ongoing challenges that a diverse vector poses for malaria elimination in the Western hemisphere.

Idioma originalInglés
Páginas (desde-hasta)1373-1378
Número de páginas6
PublicaciónScience
Volumen391
N.º6792
DOI
EstadoPublicada - 26 mar. 2026

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