Aikpon_2013_Parasit.Vectors_6_192

Reference

Title : Bendiocarb resistance in Anopheles gambiae s.l. populations from Atacora department in Benin, West Africa: a threat for malaria vector control - Aikpon_2013_Parasit.Vectors_6_192
Author(s) : Aikpon R , Agossa F , Osse R , Oussou O , Aizoun N , Oke-Agbo F , Akogbeto M
Ref : Parasit Vectors , 6 :192 , 2013
Abstract :

BACKGROUND: Owing to pyrethroid resistance in An. gambiae, the carbamate and organophosphate insecticides are currently regarded as alternatives or supplements to pyrethroids for use on mosquito net treatments. Resistance monitoring is therefore essential to investigate the susceptibility of An. gambiae s.l to these alternative products.
METHODS: Two to three day old adult female Anopheles mosquitoes were reared from larvae collected in the five districts (Kouande, Natitingou, Materi, Pehunco, Tanguieta) of the Atacora department. Mosquitoes were then exposed to WHO impregnated papers. The four treatments consisted of: carbamates (0.1% bendiocarb, 0.1% propoxur) and organophosphates (0.25% pirimiphosmethyl, 1% fenitrothion). PCR assays were run to determine the members of the An. gambiae complex, the molecular forms (M) and (S), as well as phenotypes for insensitive acetylcholinesterase (AChE1) due to ace-1R mutation.
RESULTS: Bioassays showed bendiocarb resistance in all populations of An. gambiae s.s. tested. Propoxur resistance was observed in Materi, Pehunco and Tanguieta, while it was suspected in Kouande and Natitingou. As for the organophosphates, susceptibility to pirimiphos-methyl was assessed in all populations. Fenitrothion resistance was detected in Kouande, Pehunco and Tanguieta, while it was suspected in Materi and Natitingou. The S-form was predominant in tested samples (94.44%). M and S molecular forms were sympatric but no M/S hybrids were detected. The ace-1R mutation was found in both S and M molecular forms with frequency from 3.6 to 12%. Although the homozygous resistant genotype was the most prevalent genotype among survivors, the genotypes could not entirely explain the bioassay results. CONCLUSION: Evidence of bendiocarb resistance in An. gambiae populations is a clear indication that calls for the implementation of insecticide resistance management strategies. The ace-1R mutation could not entirely explain the resistance to bendiocarb observed and is highly suggestive of involvement of other resistance mechanisms such as metabolic detoxification.

PubMedSearch : Aikpon_2013_Parasit.Vectors_6_192
PubMedID: 23803527

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Citations formats

Aikpon R, Agossa F, Osse R, Oussou O, Aizoun N, Oke-Agbo F, Akogbeto M (2013)
Bendiocarb resistance in Anopheles gambiae s.l. populations from Atacora department in Benin, West Africa: a threat for malaria vector control
Parasit Vectors 6 :192

Aikpon R, Agossa F, Osse R, Oussou O, Aizoun N, Oke-Agbo F, Akogbeto M (2013)
Parasit Vectors 6 :192