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Second-Generation Sequencing Supply an Effective Way to Screen RNAi Targets in Large Scale for Potential Application in Pest Insect Control

机译:第二代测序技术为大规模筛选RNAi靶标提供了一种有效的方法,可用于病虫害防治

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摘要

The key of RNAi approach success for potential insect pest control is mainly dependent on careful target selection and a convenient delivery system. We adopted second-generation sequencing technology to screen RNAi targets. Illumina's RNA-seq and digital gene expression tag profile (DGE-tag) technologies were used to screen optimal RNAi targets from Ostrinia furnalalis. Total 14690 stage specific genes were obtained which can be considered as potential targets, and 47 were confirmed by qRT-PCR. Ten larval stage specific expression genes were selected for RNAi test. When 50 ng/µl dsRNAs of the genes DS10 and DS28 were directly sprayed on the newly hatched larvae which placed on the filter paper, the larval mortalities were around 40∼50%, while the dsRNAs of ten genes were sprayed on the larvae along with artificial diet, the mortalities reached 73% to 100% at 5 d after treatment. The qRT-PCR analysis verified the correlation between larval mortality and the down-regulation of the target gene expression. Topically applied fluorescent dsRNA confirmed that dsRNA did penetrate the body wall and circulate in the body cavity. It seems likely that the combination of DGE-tag with RNA-seq is a rapid, high-throughput, cost less and an easy way to select the candidate target genes for RNAi. More importantly, it demonstrated that dsRNAs are able to penetrate the integument and cause larval developmental stunt and/or death in a lepidopteron insect. This finding largely broadens the target selection for RNAi from just gut-specific genes to the targets in whole insects and may lead to new strategies for designing RNAi-based technology against insect damage.
机译:RNAi方法成功控制潜在害虫的关键主要取决于精心选择目标和便捷的递送系统。我们采用了第二代测序技术来筛选RNAi靶标。 Illumina的RNA-seq和数字基因表达标签配置文件(DGE-tag)技术用于筛选来自Ostrinia furnalalis的最佳RNAi靶标。共获得了14690个阶段特异性基因,可以认为是潜在的靶标,并且通过qRT-PCR确认了47个。选择了十个幼虫期特异性表达基因用于RNAi测试。当直接将50 ng / µl DS10和DS28基因的dsRNA喷到放在滤纸上的刚孵出的幼虫上时,幼虫的死亡率约为40%至50%,而十个基因的dsRNA连同它们一起喷在幼虫上人工饮食,在治疗后5天死亡率达到73%至100%。 qRT-PCR分析证实了幼虫死亡率与靶基因表达下调之间的相关性。局部应用荧光dsRNA证实dsRNA确实穿透了体壁并在体腔中循环。 DGE-tag与RNA-seq的结合似乎是一种快速,高通量,成本更低的方法,并且是为RNAi选择候选靶基因的简便方法。更重要的是,它证明了dsRNA能够穿透鳞片,并在鳞翅目昆虫中引起幼虫发育特技和/或死亡。这一发现在很大程度上将RNAi的靶标选择范围从肠道特异性基因扩展到整个昆虫中的靶标,并且可能会导致设计基于RNAi的抗昆虫技术的新策略。

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