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首页> 外文期刊>Insect Molecular Biology >Discovery of genes related to formothion resistance in oriental fruit fly (Bactrocera dorsalis) by a constrained functional genomics analysis
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Discovery of genes related to formothion resistance in oriental fruit fly (Bactrocera dorsalis) by a constrained functional genomics analysis

机译:通过约束功能基因组学分析发现与东方实蝇(Bactrocera dorsalis)的甲硫氨酸抗性相关的基因

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Artificial selection can provide insights into how insecticide resistance mechanisms evolve in populations. The underlying basis of such phenomena can involve complex interactions of multiple genes, and the resolution of this complexity first necessitates confirmation that specific genes are involved in resistance mechanisms. Here, we used a novel approach invoking a constrained RNA sequencing analysis to refine the discovery of specific genes involved in insecticide resistance. Specifically, for gene discovery, an additional constraint was added to the traditional comparisons of susceptible vs. resistant flies by the incorporation of a line in which insecticide susceptibility was recovered' within a resistant line by the removal of insecticide stress. In our analysis, the criterion for the classification of any gene as related to insecticide resistance was based on evidence for differential expression in the resistant line as compared with both the susceptible and recovered lines. The incorporation of this additional constraint reduced the number of differentially expressed genes putatively involved in resistance to 464, compared with more than 1000 that had been identified previously using this same species. In addition, our analysis identified several key genes involved in metabolic detoxification processes that showed up-regulated expression. Furthermore, the involvement of acetylcholinesterase, a known target for modification in insecticide resistance, was associated with three key nonsynonymous amino acid substitutions within our data. In conclusion, the incorporation of an additional constraint using a recovered' line for gene discovery provides a higher degree of confidence in genes identified to be involved in insecticide resistance phenomena.
机译:人工选择可以提供有关种群中杀虫剂抗性机制如何演变的见解。这种现象的潜在基础可能涉及多个基因的复杂相互作用,而要解决这种复杂性,首先需要确定特定基因是否参与了抗性机制。在这里,我们使用了一种新颖的方法来进行限制性RNA测序分析,以完善与杀虫剂抗性有关的特定基因的发现。具体而言,对于基因发现,通过在抗性品系中加入杀虫剂敏感性恢复的品系,通过消除杀虫剂胁迫,在易感性与抗性果蝇的传统比较中增加了一个额外的限制。在我们的分析中,将与杀虫剂抗性相关的任何基因分类的标准是基于与易感系和回收系相比在抗性系中差异表达的证据。与先前使用相同物种鉴定出的1000多个基因相比,该附加约束条件的结合使推测参与抗性的差异表达基因的数量减少到464。此外,我们的分析确定了参与代谢排毒过程的几个关键基因,这些关键基因显示了表达上调。此外,乙酰胆碱酯酶(一种已知的杀虫剂抗性修饰目标)的参与与我们数据中的三个关键的非同义氨基酸取代有关。总之,使用回收的'线进行基因发现并加入其他限制条件,可以提高对确定与杀虫剂抗药性现象有关的基因的信心。

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