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A De Novo Transcriptomics Approach Reveals Genes Involved in Thrips Tabaci Resistance to Spinosad

机译:de novo转录组学方法揭示了涉及蓟马绦虫的基因抗刺肌

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摘要

Insect pest resistance to pesticides is a major problem that limits efficient management and thus decreases productivity for farmers and increases the use of harmful materials that contaminate the environment and endanger humans and beneficial organisms. A major approach for resistance management is understanding how insect pest field populations develop resistance at biological and molecular levels. In this manuscript, we studied the molecular and biological basis of resistance among tobacco thrips “onion thrips” resistant the susceptible populations to spinosad, a major insecticide that has been extensively used in recent years, by using de novo transcriptomics and bioassays. We found that resistance to spinosad can be metabolic by increasing the levels of detoxifying enzymes among the resistant population; however, resistant populations are more fecund compared to susceptible one, suggesting the lack of fitness cost of the resistance trait.
机译:昆虫对农药抗性是一个主要的问题,限制了有效的管理,从而降低了农民的生产率,并增加了污染环境和危害人类和有益生物的有害物质的使用。抵抗管理的主要方法是了解昆虫害虫场群如何在生物和分子水平上产生抗性。在该稿件中,我们研究了烟草蓟马“洋葱蓟马”抗性抗性的分子和生物学基础,耐敏感群体,近年来一直在近年来广泛使用的主要杀虫剂,通过使用De Novo转录组织和生物测定。我们发现,通过增加抗性群体中的解毒酶的水平,可以代谢对微单晶的抵抗力;然而,与易感易感性相比,抗性群体更加繁殖,表明耐受性特性的健康成本。

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