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A Whole Genome Re-Sequencing Based GWA Analysis Reveals Candidate Genes Associated with Ivermectin Resistance in Haemonchus contortus

机译:基于全基因组重测序的GWA分析揭示了捻转血矛线虫中与伊维菌素抗性相关的候选基因

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摘要

The most important and broad-spectrum drug used to control the parasitic worms to date is ivermectin (IVM). Resistance against IVM has emerged in parasites, and preserving its efficacy is now becoming a serious issue. The parasitic nematode (Rudolphi, 1803) is economically an important parasite of small ruminants across the globe, which has a successful track record in IVM resistance. There are growing evidences regarding the multigenic nature of IVM resistance, and although some genes have been proposed as candidates of IVM resistance using lower magnification of genome, the genetic basis of IVM resistance still remains poorly resolved. Using the full magnification of genome, we herein applied a population genomics approach to characterize genome-wide signatures of selection among pooled worms from two susceptible and six ivermectin-resistant isolates of , and revealed candidate genes under selection in relation to IVM resistance. These candidates also included a previously known IVM-resistance-associated candidate gene HCON_00148840, glc-3. Finally, an RNA-interference-based functional validation assay revealed the HCON_00143950 as IVM-tolerance-associated gene in . The possible role of this gene in IVM resistance could be detoxification of xenobiotic in phase I of xenobiotic metabolism. The results of this study further enhance our understanding on the IVM resistance and continue to provide further evidence in favor of multigenic nature of IVM resistance.
机译:迄今为止,用于控制寄生虫的最重要且广谱的药物是伊维菌素(IVM)。在寄生虫中已经出现了对IVM的抗药性,并且保持其有效性现在已成为一个严重的问题。从经济上讲,寄生线虫(Rudolphi,1803)是全球小型反刍动物的重要寄生虫,在IVM抗药性方面有成功的记录。关于IVM抗性的多基因性质的证据越来越多,尽管使用较低的基因组放大率已经提出了一些基因作为IVM抗性的候选者,但是IVM抗性的遗传基础仍然仍然难以解决。使用基因组的完整放大倍数,我们在本文中应用了种群基因组学方法来表征从两个易感和六个伊维菌素抗性分离株的合并蠕虫中选择的全基因组范围内的特征,并揭示了与IVM抗性相关的候选基因。这些候选物还包括先前已知的与IVM抗性相关的候选基因HCON_00148840,glc-3。最后,基于RNA干扰的功能验证试验揭示了HCON_00143950作为IVM耐受相关基因。该基因在IVM抗性中的可能作用可能是在异源生物代谢的I期中异源生物排毒。这项研究的结果进一步增强了我们对IVM抵抗力的理解,并继续为支持IVM抵抗力的多基因性提供进一步的证据。

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