首页> 外文期刊>Scientific reports. >Multiple mutations and overexpression of the MdaE7 carboxylesterase gene associated with male-linked malathion resistance in housefly, Musca domestica (Diptera: Muscidae)
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Multiple mutations and overexpression of the MdaE7 carboxylesterase gene associated with male-linked malathion resistance in housefly, Musca domestica (Diptera: Muscidae)

机译:家蝇Musca domestica(Diptera:Muscidae)中与雄性相关的马拉硫磷抗性相关的MdaE7羧酸酯酶基因的多个突变和过表达

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Two unique housefly strains, MSS and N-MRS, were selected and used to clarify mechanisms of sex-associated malathion resistance in the housefly, Musca domestica. Compared with the lab-susceptible CSS strain, susceptible females and resistant males were observed in the malathion-susceptible MSS strain, while the malathion-resistant near-isogenic line, N-MRS, achieved similar resistance level between genders. Significant synergistic effect of the esterase-inhibitor DEF on resistant houseflies pointed to the important involvement of esterase in this specific malathion resistance. Examination of the carboxylesterase gene MdαE7 in malathion resistant housefly populations found seven, non-synonymous SNP mutations (Ser250-Thr, Trp251-Ser, Met303-Ile, Leu354-Phe, Ser357-Leu, Trp378-Arg and Ser383-Thr), not found in susceptible houseflies, revealing a strong correlation between these mutations and the development of malathion resistance. Further genetic analysis conducted with bioassays by topical application and nucleotide polymorphism detection provided a first line of molecular evidence for a linkage between a male-determining factor and MdαE7 gene in the MSS and N-MRS males. This linkage results in a much higher level of malathion resistance for males than females in the MSS strain. Lastly, quantitative real-time PCR showed that MdαE7 was over expressed in the resistant strain due to the increased transcription level of mRNA rather than gene duplication.
机译:选择了两种独特的家蝇菌株MSS和N-MRS,并用于阐明家蝇Musca domestica中与性别相关的马拉硫磷抗性的机制。与实验室敏感性CSS菌株相比,马拉硫磷敏感性MSS菌株中观察到了易感的雌性和雄性抗性,而马拉硫磷抗性的近等基因系N-MRS在两性之间达到了相似的抗性水平。酯酶抑制剂DEF对抗性家蝇的显着协同作用表明酯酶在这种特定的马拉硫磷抗性中起重要作用。对马拉硫磷抗性家蝇种群中的羧酸酯酶基因MdαE7的检查发现了七个非同义的SNP突变(Ser250-Thr,Trp251-Ser,Met303-Ile,Leu354-Phe,Ser357-Leu,Trp378-Arg和Ser383-Thr),在易感家蝇中发现,揭示了这些突变与马拉硫磷抗性的发展之间有很强的相关性。通过局部应用和核苷酸多态性检测,通过生物测定进行的进一步遗传分析为MSS和N-MRS雄性中的雄性决定因子与MdαE7基因之间的联系提供了分子证据的第一线。这种联系导致MSS品系中男性的马拉硫磷抗性水平高于女性。最后,定量实时PCR显示,MdαE7在抗性菌株中过度表达是由于mRNA的转录水平提高而不是基因重复。

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