Field and laboratory investigations revealed phenotypic, target site and metabolic resistance to permethrin in an
Anopheles gambiae s.s.
(Diptera: Culicidae) population in Bungoma District, a region in western Kenya in which malaria is endemic and rates of ownership of insecticide‐treated bednets are high. The sensitivity of individual
An. gambiae s.l.
females as indicated in assays using World Health Organization (WHO) test kits demonstrated reduced mortality in response to permethrin, deltamethrin and bendiocarb. Estimated time to knock‐down of 50% (KDT
50
) of the test population in Centers for Disease Control (CDC) bottle bioassays was significantly lengthened for the three insecticides compared with that in a susceptible control strain.
Anopheles arabiensis
from all three sites showed higher mortality to all three insecticides in the WHO susceptibility assays compared with the CDC bottle assays, in which they showed less sensitivity and longer KDT
50
than the reference strain for permethrin and deltamethrin. Microplate assays revealed elevated activity of
β
‐esterases and oxidases, but not glutathione‐S‐transferase, in
An. gambiae s.s.
survivors exposed to permethrin in bottle bioassays compared with knocked down and unexposed individuals. No
An. arabiensis
showed elevated enzyme activity. The 1014S
kdr
allele was fixed in the Bungoma
An. gambiae s.s.
population and absent from
An. arabiensis
, whereas the 1014F
kdr
allele was absent from all samples of both species. Insecticide resistance could compromise vector control in Bungoma and could spread to other areas as coverage with longlasting insecticide‐treated bednets increases.