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The OST-complex as target for RNAi-based pest control in Nilaparvata lugens

机译:OST-Complex作为Nileaparvata Lugens的RNAi基害虫控制的目标

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RNAi-based pest control strategies are emerging as environment friendly and species-specific alternatives for the use of conventional pesticides. Because N-glycosylation is important for many biological processes, such as growth and development, the early steps of protein N-glycosylation are promising targets for an RNAi-based pest control strategy. Through injection of dsRNAs, the expression of the catalytic subunits of the oligosaccharyl transferase complex was efficiently silenced in nymphs of the notorious rice pest insect Nilaparvata lugens. Silencing of both STT3 isoforms resulted in a high mortality of the N. lugens nymphs. However, our data reveals the occurrence of a functional redundancy between the two isoforms when silencing only one of the isoforms. These observations confirm the potential to use the early genes in the N-glycosylation pathway as targets for an RNAi-based pest control strategy. In addition, the existence of a functional redundancy between the two STT3 isoforms presents a factor which one must take into account when designing RNAi-based approaches.
机译:基于RNAI的害虫防治策略正在作为环境友好和物种的使用,用于使用常规农药。因为N-糖基化对于许多生物过程很重要,例如生长和发育,因此蛋白质N-糖基化的早期步骤是基于RNAi的害虫对照策略的有望的靶标。通过注射DSRNA,在臭名昭着的水稻害虫昆虫Nileaparvata Lugens的若虫中,寡核酸转移酶复合物的催化亚基的表达有效地沉默。 STT3同种型的沉默导致N.Lugens若虫的死亡率很高。但是,我们的数据显示,当仅沉默一个同种型时,我们的数据显示两种同种型之间的功能冗余。这些观察结果确认了在N-糖基化途径中使用早期基因的可能性作为基于RNAI的害虫对照策略的靶标。此外,两个STT3同种型之间的功能冗余存在于设计基于RNAI的方法时必须考虑的因素。

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