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Induction and transmission of tolerance to the synthetic pesticide emamectin benzoate in field and laboratory populations of Diamondback Moth

机译:在小菜蛾的田间和实验室种群中对合成杀虫剂甲氨基阿维菌素苯甲酸盐的耐受性的诱导和传递

摘要

Field surveys of pest insect pest populations in agroecosystems reveal low but significant levels of tolerance to synthetic and biological pesticides but fail to uncover resistance alleles in test crosses. To study the potential of inducible mechanisms to generate tolerance to synthetic pesticides, we performed baseline susceptibility studies in field and laboratory populations of diamondback moth, Plutella xylostella (L.). to commercial formulations of emamectin benzoate. Pesticide exposure in the field caused elevated levels of tolerance, which decreased in field-collected populations after maintaining insects with pesticide-free diet in the laboratory. Because no significant resistance alleles were identified in back-crossed individuals, the observed increase in tolerance was probably not based on preexisting recessive resistance mechanisms in the population. Instead, the genetic analysis after five and 12 generations is compatible with a transient up-regulation of an immune and metabolic status in tolerant insects that can be transmitted to offspring by a maternal effect. Although the epigenetic effects contributed to incremental increases in tolerance in the first five generations, other resistance mechanisms that are transmitted genetically predominate after 12 generations of increased exposure to the pesticide.
机译:农业生态系统中有害生物害虫种群的现场调查显示,其对合成和生物农药的耐受性较低,但水平很高,但在测试杂交中未能发现抗性等位基因。为了研究诱导机制对合成农药产生耐受性的潜力,我们在小菜蛾小菜蛾(Plutella xylostella)的田间和实验室种群中进行了基线敏感性研究。制成阿莫菌素苯甲酸酯的商业制剂。田间接触农药导致耐受性水平升高,在实验室中以无农药饮食饲养昆虫后,田间采集种群的耐受性下降。由于在回交个体中未发现明显的抗性等位基因,因此观察到的耐受性增加可能不是基于人群中先前存在的隐性抗性机制。取而代之的是,经过五代和十二代的遗传分析与耐受性昆虫的免疫和代谢状态的瞬时上调兼容,这些耐受性昆虫可以通过母体效应传播给后代。尽管表观遗传效应在前五代中增加了耐受性,但在经过12代农药暴露后,其他以遗传方式传播的抗性机制居于主导地位。

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