A combination of metabolic resistance and high frequency of the 1014F kdr mutation is driving pyrethroid resistance in Anopheles coluzzii population from Guinea savanna of Cameroon
PARASITES & VECTORS
Authors: Fadel, Amen N.; Ibrahim, Sulaiman S.; Tchouakui, Magellan; Terence, Ebai; Wondji, Murielle J.; Tchoupo, Micareme; Wanji, Samuel; Wondji, Charles S.
Abstract
BackgroundThe scale-up in the distribution of long-lasting insecticidal nets (LLINs) and indoor residual spraying has significantly reduced malaria burden and mortality. However, insecticide resistance, among other factors, is responsible for a recent rebound in malaria transmission in 2015-2016, threatening the progress so far made. As a contribution towards understanding patterns of resistance and its mechanism in the field we characterized a population of Anopheles gambiae (s.l.) from Gounougou, a Guinea savanna of north/central Cameroon.ResultsIndoor collection conducted in September 2017 identified Anopheles coluzzii and Anopheles arabiensis as the unique Anopheles vector species, with abundances of 83 and 17%, respectively. Analysis of infection with TaqMan assays using heads/thoraces of indoor collected females of An. coluzzii revealed a low Plasmodium falciparum parasite rate of 4.7%. Bioassays conducted with female An. coluzzii revealed extreme resistance, with low mortalities of only 3.751.25%, 3.03 +/- 1.59% and 1.45 +/- 1.45%, respectively, for permethrin, deltamethrin and DDT. In contrast, high susceptibility was obtained with the organophosphates and carbamates, with mortalities in the range of 98-100%. Synergist assays with piperonyl butoxide (PBO) recovered some susceptibility with increased mortality for permethrin to 14.88 +/- 8.74%, and for deltamethrin to 32.50 +/- 10.51% (similar to 27-fold increase compared to mortalities with deltamethrin alone, (2)=29, df=1, P<0.0001). These correlated with the results of cone bioassays which revealed complete loss of efficacy of Olyset (R) Net (0% mortality) and PermaNet (R) 2.0 (0% mortality), and the considerable loss of efficacy of Olyset (R) Plus (mortality of 2 +/- 2%), PermaNet (R) 3.0 side panel (mortality of 2 +/- 2%) and PermaNet3.0 (R) roof (mortality of 16 +/- 5.1%). Time-course bioassays conducted with deltamethrin established a high intensity of resistance, with LT50 of 309.09 (95% CI 253.07-393.71, Fiducial), and a resistance ratio of 93.09 compared with the fully susceptible Ngoussou laboratory colony. TaqMan genotyping revealed a high frequency of the 1014F allele (65.25%) in the An. coluzzii populations. Sequencing of a fragment of the voltage-gated sodium channel identified a single An. arabiensis female harbouring the 1014S kdr mutation.Conclusions This finding of high pyrethroid and DDT resistance in An. coluzzii from north-central Cameroon is a major obstacle to malaria control using pyrethroid bednets and indoor residual spraying with DDT.
Occurrence of pyrethroid resistance mutation in Cydia pomonella (Lepidoptera: Tortricidae) throughout Argentina
BULLETIN OF ENTOMOLOGICAL RESEARCH
Authors: Soleno, J.; Parra-Morales, L. B.; Cichon, L.; Garrido, S.; Guinazu, N.; Montagna, C. M.
Abstract
Pyrethroid insecticides were intensively used against Cydia pomonella in the Rio Negro and Neuquen valley, main production area of pome fruits in Argentina. Therefore, the first objective was to evaluate lambda-cyhalothrin resistance levels in C. pomonella larvae from orchards in this area that are currently under pyrethroids treatments. The second objective was to evaluate the frequency of kdr mutation in C. pomonella across Argentina. High levels of resistance to lambda-cyhalothrin (resistance ratios > 30) were determined in all the populations evaluated. The L1014F (kdr) mutation was evaluated in 355 diapausing larvae collected in 12 orchards from San Juan to Santa Cruz provinces (1690 km away from each other). The highest frequency of kdr mutation was determined in larvae from the Rio Negro and Neuquen valley (0.61), followed by those from Mendoza (0.36). The kdr allele was absent or present at very low frequencies in orchards subjected to low pyrethroid pressure. The frequency of detection of kdr mutation in C. pomonella from Argentina is related to the use of pyrethroids against this pest in different areas. Target-site insensitivity is, at least, one of the mechanisms involved in resistance to lambda-cyhalothrin in codling moth from the Rio Negro and Neuquen valley.