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Ingestion of genetically modified yeast symbiont reduces fitness of an insect pest via RNA interference

机译:摄入遗传修饰的酵母Symbiont通过RNA干扰减少了昆虫害虫的适应性

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RNA interference has had major advances as a developing tool for pest management. In laboratory experiments, double-stranded RNA (dsRNA) is often administered to the insect by genetic modification of the crop, or synthesized in vitro and topically applied to the crop. Here, we engineered genetically modified yeast that express dsRNA targeting y-Tubulin in Drosophila suzukii. Our design takes advantage of the symbiotic interactions between Drosophila, yeast, and fruit crops. Yeast is naturally found growing on the surface of fruit crops, constitutes a major component of the Drosophila microbiome, and is highly attractive to Drosophila. Thus, this naturally attractive yeast biopesticide can deliver dsRNA to an insect pest without the need for genetic crop modification. We demonstrate that this biopesticide decreases larval survivorship, and reduces locomotor activity and reproductive fitness in adults, which are indicative of general health decline. To our knowledge, this is the first study to show that yeast can be used to deliver dsRNA to an insect pest.
机译:RNA干扰具有作为害虫管理的开发工具的重大进展。在实验室实验中,通过作物的遗传修饰或在体外合成并局部施用于作物,经常将双链RNA(dsRNA)施用于昆虫。在这里,我们设计了遗传修饰的酵母,其在果子岛毒素中表达靶向Y-小蛋白的DsRNA。我们的设计利用了果蝇,酵母和水果作物之间的共生相互作用。酵母天然被发现在水果作物表面上生长,构成了果蝇微生物组的主要成分,并且对果蝇具有高度吸引力。因此,这种天然吸引力的酵母生物物种可以将DSRNA递送给昆虫害虫,而不需要遗传作物修饰。我们证明,这种生物农药降低了幼虫生存,并降低了成年人的运动活性和生殖健康,这表明一般健康状况下降。为了我们的知识,这是第一次表明酵母可用于将DSRNA递给昆虫害虫的研究。

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