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Abstract
Two unique housefly strains, PSS and N-PRS (near-isogenic line with the PSS), were used to clarify the mechanisms associated with propoxur resistance in the housefly, Musca domestica. The propoxur-selected resistant (N-PRS) strain exhibited >1035-fold resistance to propoxur and 1.70-, 12.06-, 4.28-, 57.76-, and 57.54-fold cross-resistance to beta-cypermethrin, deltamethrin, bifenthrin, phoxim, and azamethiphos, respectively, compared to the susceptible (PSS) strain. We purified acetylcholinesterase (AChE) from the N-PRS and PSS strains using a procainamide affinity column and characterized the AChE. The sensitivity of AChE to propoxur based on the bimolecular rate constant (Ki) was approximately 100-fold higher in the PSS strain compared to the N-PRS strain. The cDNA encoding Mdace from both the N-PRS strain and the PSS strain were cloned and sequenced using RT-PCR. The cDNA was 2073 nucleotides long and encoded a protein of 691 amino acids. A total of four single nucleotide polymorphisms (SNPs), I162M, V260L, G342A, and F407Y, were present in the region of the active site of AChE from the N-PRS strain. The transcription level and DNA copy number of Mdace were significantly higher in the resistant strain than in the susceptible strain. These results indicated that mutations combined with the up-regulation of Mdace might be essential in the housefly resistance to propoxur.
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Details
1 China Agricultural University, Department of Entomology, Beijing, China (GRID:grid.22935.3f) (ISNI:0000 0004 0530 8290)
2 Technology Center of Qinhuangdao Customs District, Qinhuangdao, China (GRID:grid.22935.3f)
3 Haidian District Center for Disease Prevention and Control, Beijing, China (GRID:grid.22935.3f)
4 Beijing Center for Diseases Control and Prevention, Beijing, China (GRID:grid.22935.3f)
5 Dongcheng District Center for Diseases Prevention and Control, Beijing, China (GRID:grid.22935.3f)