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Evolution of the Insecticide Target Rdl in African Anopheles Is Driven by Interspecific and Interkaryotypic Introgression

Domaine:

healthcare

Type de record:

paperdataset
Créateur:
GraTomO’rHar
Éditeur:
TheLiv
Éditeur:
CCSDOxf
Hôte:avatar
International audience The evolution of insecticide resistance mechanisms in natural populations of Anopheles malaria vectors is a major public health concern across Africa. Using genome sequence data, we study the evolution of resistance mutations in the resistance to dieldrin locus (Rdl), a GABA receptor targeted by several insecticides, but most notably by the long-discontinued cyclodiene, dieldrin. The two Rdl resistance mutations (296G and 296S) spread across West and Central African Anopheles via two independent hard selective sweeps that included likely compensatory nearby mutations, and were followed by a rare combination of introgression across species (from A. gambiae and A. arabiensis to A. coluzzii) and across nonconcordant karyotypes of the 2La chromosomal inversion. Rdl resistance evolved in the 1950s as the first known adaptation to a large-scale insecticide-based intervention, but the evolutionary lessons from this system highlight contemporary and future dangers for management strategies designed to combat development of resistance in malaria vectors.

Visit

hal.science

Tags

[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDE.BE]Environmental Sciences/Biodiversity and Ecology[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseases

Licenses

info:eu-repo/semantics/OpenAccess

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Evolution of the insecticide target <i>Rdl</i> in African <i>Anopheles</i> is driven by interspecific and interkaryotypic introgression

Evolution of the insecticide target <i>Rdl</i> in African <i>Anopheles</i> is driven by interspecific and interkaryotypic introgression

Abstract The evolution of insecticide resistance mechanisms in