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RNAi Technology for Insect Management and Protection of Beneficial Insects from Diseases: Lessons, Challenges and Risk Assessments

机译:RNAi技术用于昆虫管理和有益昆虫免受疾病的侵害:教训,挑战和风险评估

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The time has passed for us to wonder whether RNA interference (RNAi) effectively controls pest insects or protects beneficial insects from diseases. The RNAi era in insect science began with studies of gene function and genetics that paved the way for the development of novel and highly specific approaches for the management of pest insects and, more recently, for the treatment and prevention of diseases in beneficial insects. The slight differences in components of RNAi pathways are sufficient to provide a high degree of variation in responsiveness among insects. The current framework to assess the negative effects of genetically modified (GM) plants on human health is adequate for RNAi-based GM plants. Because of the mode of action of RNAi and the lack of genomic data for most exposed non-target organisms, it becomes difficult to determine the environmental risks posed by RNAi-based technologies and the benefits provided for the protection of crops. A better understanding of the mechanisms that determine the variability in the sensitivity of insects would accelerate the worldwide release of commercial RNAi-based approaches.
机译:现在已经到了我们怀疑RNA干扰(RNAi)是否有效控制害虫或保护有益昆虫免受疾病侵害的时候了。昆虫科学中的RNAi时代始于对基因功能和遗传学的研究,这为开发新的和高度特定的方法来管理害虫和最近用于治疗和预防有益昆虫的疾病铺平了道路。 RNAi途径组分​​的细微差异足以在昆虫之间提供高度的反应性差异。评估转基因植物对人类健康的负面影响的当前框架对于基于RNAi的转基因植物而言已经足够。由于RNAi的作用方式以及大多数裸露的非靶标生物缺乏基因组数据,因此很难确定基于RNAi的技术所带来的环境风险以及保护作物所带来的好处。对确定昆虫敏感性变异性的机制的更好理解将加速全球商业化基于RNAi的方法的发布。

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