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Reduced stability and intracellular transport of dsRNA contribute to poor RNAi response in lepidopteran insects

机译:dsRNA的稳定性降低和细胞内运输导致鳞翅目昆虫的RNAi反应差

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RNA interference (RNAi) has become a widely used reverse genetic tool to study gene function in eukaryotic organisms and is being developed as a technology for insect pest management. The efficiency of RNAi varies among organisms. Insects from different orders also display differential efficiency of RNAi, ranging from highly efficient (coleopterans) to very low efficient (lepidopterans). We investigated the reasons for varying RNAi efficiency between lepidopteran and coleopteran cell lines and also between the Colorado potato beetle, Leptinotarsa decemlineata and tobacco budworm, Heliothis virescens. The dsRNA either injected or fed was degraded faster in H. virescens than in L. decemlineata. Both lepidopteran and coleopteran cell lines and tissues efficiently took up the dsRNA. Interestingly, the dsRNA administered to coleopteran cell lines and tissues was taken up and processed to siRNA whereas the dsRNA was taken up by lepidopteran cell lines and tissues but no siRNA was detected in the total RNA isolated from these cell lines and tissues. The data included in this paper showed that the degradation and intracellular transport of dsRNA are the major factors responsible for reduced RNAi efficiency in lepidopteran insects.
机译:RNA干扰(RNAi)已成为研究真核生物中基因功能的一种广泛使用的反向遗传工具,并且正在开发为害虫管理技术。 RNAi的效率因生物体而异。不同级别的昆虫也表现出不同的RNAi效率,从高效(鞘翅目)到极低效率(鳞翅目)。我们调查了鳞翅目和鞘翅目细胞系之间以及科罗拉多马铃薯甲虫Leptinotarsa decemlineata和烟草芽虫Heliothis virescens之间RNAi效率变化的原因。注射或饲喂的dsRNA在肉豆腐球菌中比在短杆菌中降解得更快。鳞翅目和鞘翅目细胞系和组织都有效地吸收了dsRNA。有趣的是,给予鞘翅目细胞系和组织的dsRNA被吸收并加工成siRNA,而鳞翅目细胞系和组织吸收了dsRNA,但是从这些细胞系和组织分离的总RNA中没有检测到siRNA。本文包含的数据表明,dsRNA的降解和细胞内运输是导致鳞翅目昆虫RNAi效率降低的主要因素。

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