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Ameur, B.

Publications and source records attributed to Ameur, B..

2 recordsLinked to original sources

1014F-kdr and G119S ace-1 mutations conferring insecticide resistance detected in the Culex pipiens complex in Morocco

Culex pipiens mosquitoes are competent vectors for several arboviruses worldwide. In Morocco, they specially transmit West Nile virus (VWN) and Rift Valley fever virus (VFVR) (Bkhache et al., 2018). The repeated treatment with chemical insecticides in areas highly exposed to the mosquitoes nuisance leads to the resistance development. The lack of data on resistance mechanisms in Morocco allow us to evaluate both of the levels of DDT resistance accompanied by the frequency of the mutated gene associated L1014F kdr, and the levels of bendiocarb resistance accompanied by the frequency of the mutated gene associated G119S ace-1R respectively in both regions Benslimane and Mohammedia. MethodsMosquito larvae were collected from two different breeding sites: El Jazeera from Benslimane region and Ouled Hamimoun from Mohammedia region. Adults were reared from collected immature stages in the laboratory at 28 {+/-} 1 {degrees}C with 80% relative humidity. Standard WHO insecticide susceptibility tests were conducted on adult females emerged from collected larvae. Specimens were identified as Culex pipiens following morphological criteria under microscope using Culicidae of African Mediterranean software (Giner et al., 1999). Identified mosquitoes were then tested for the presence of the L1014F kdr and G119S ace-1R mutations using PCR assay. ResultsOur results showed that all the tested populations have a resistance to DDT 4% with a mortality rate ranging from 2% to 74%, and to bendiocarb 0.1% with a mortality rate ranging from 32% to 74%. In plus, 30 individuals from each region were screened for both mutations L1014F kdr and G119S ace-1R. The molecular identification of survivor genes shows the presence of L1014F kdr mutation in both region with different frequencies. The allelic frequency was low with 0.15% in Mohammedia region and complete absence of resistant homozygotes alleles 1014F/1014F in the same region, but average with 0.65% in Benslimane region. However, the G119S ace-1R mutation was absent in both regions. These results are consistent with those published by Aboulfadl et al. (2020) on the same populations and who found that the resistance of Mohammedia populations is completely metabolic and based only on cytochrome P450 enzymes while that of Benslimane populations is partially metabolic. ConclusionThe study highlights the implication of L1014F kdr mutation in DDT resistance and G119S ace-1R mutation in bendiocarb resistance in Cx. pipiens populations from two regions in Morocco.

molecular biology↗

First Report of Susceptibility Status of the Invasive Vector: Aedes albopictus to insecticides used in vector control in Morocco

Aedes albopictus has been newly recorded in Agdal district at Rabat in Morocco. The establishment of this invasive mosquito could affect the public health by causing serious epidemics despite of its high nuisance in urban and sub-urban areas. Vector control is mainly based on environmental management but chemical insecticides can be used to reduce adult mosquito densities during peak periods. However, the level of susceptibility of this mosquito to insecticides has not been studied yet in Morocco. This paper reports the results of the first study conducted to monitor the insecticide resistance of adult and larva Ae. albopictus to the insecticides currently used in the vector control. The study was carried out during May-June 2018 at Rabat from the north-west of the country. Adult susceptibility tests were performed following the WHO test procedures. One organochlorate (DDT 4%), one pyrethroids (cyfluthrin 0.15%), one carbamate (bendiocarb 0.1%) and one organophosphate (fenithrothion 1%) were tested at diagnostic doses (DD). The five-fold DD of bendiocarb were also used to yield information on the intensity of mosquito adult resistance. The results of the performed susceptibility bioassay showed that the vector is susceptible to cyfluthrin and resistant to DDT, bendiocarb and fenithrothion. Larval bioassays to temephos were conducted according to WHO standard operating protocol to establish the dose-mortality relationship and deduct the LC50 and LC90 then resistance ratios. We show that larval populations of Ae. albopictus are still sensible to this insecticide. This information could help policy-makers to plan insecticide resistance management.

ecology↗