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A new detection method for a newly revealed mechanism of pyrethroid resistance development in Varroa destructor

机译:一种新的检测方法,用于新揭示的捕获机制抗虫抗性发育机理

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The Varroa destructor mite has recently displayed an ever increasing resistance to new drugs, contributing to CCD proliferation. This work was aimed at determining new viable methods for identifying the pyrethroid resistance of V. destructor and DNA methylation in resistant and sensitive mites. DNA was extracted from Varroa mites. Nucleotide changes in the DNA of pyrethroid-resistant, pyrethroid-sensitive, and control mites were identified with polymerase chain reaction single-strand conformation polymorphism (PCR-SSCP) in the case of five mitochondrial gene fragments. More bands were observed in the drug-resistant mites than in the other two groups. Sequencing confirmed these observations. Decreased global DNA methylation levels were observed in the pyrethroid-resistant mites. There exists a previously undescribed mechanism of pyrethroid resistance development in Varroa mites. The PCR-SSCP methods can be considered and further developed as useful tools for detecting V. destructor resistance.
机译:Varroa Destructor螨虫最近展示了对新药的抵抗力,有助于CCD增殖。这项工作旨在确定用于鉴定V.损伤器和DNA甲基化的拟除虫菊酯抗性和敏感螨虫的新可活性方法。从Varroa螨虫中提取DNA。在五种线粒体基因片段的情况下,用聚合酶链反应单链构象多态性(PCR-SSCP)鉴定了拟γ抗性,咬合敏感和对照螨的DNA中的核苷酸变化。在耐药螨虫中观察到比在其他两组中更多的带。测序证实了这些观察结果。在拟咬伤性螨虫中观察到全局DNA甲基化水平降低。在Varroa螨虫中存在先前未描述的拟除虫菊酯抗性发育机制。可以考虑PCR-SSCP方法,并进一步开发为用于检测V.析构函数的有用工具。

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