RNA干扰
夜蛾
基因沉默
小发夹RNA
RNA沉默
纳米载体
生物
小干扰RNA
细胞生物学
基因敲除
核糖核酸
基因
生物化学
药理学
重组DNA
药品
作者
Qiang Xu,Youqiang Yu,Wenmei Li,Xiao Wang,Xu Wu,Qin Liu,Yuhong Ren
标识
DOI:10.1021/acs.jafc.5c04511
摘要
RNA interference (RNAi) efficacy in lepidopterans faces challenges. Here, a chemically engineered nanocarrier system was developed for efficient RNAi in the Spodoptera frugiperda. High-efficacy siRNA sequences targeting two essential genes: chitin synthase (CHSB) and coatomer subunit beta-like (COPIβ) were selected via in silico screening, engineered into RNase-resistant shRNAs, and complexed with a cell-penetrating poly(disulfide) (CPD) nanocarrier. This approach overcomes the variability in silencing efficiency associated with siRNA sequences in long dsRNA and prolongs the retention time of RNA complexes in the midgut of pests due to the protective effects of CPD. Feeding larvae diets containing 6 μg/g shRNA@CPD complexes significantly downregulated CHSB (72.4%) and COPIβ (56.4%) expressions versus ddH2O-treated controls. Silencing induced larval mortality (44.4% and 34.9%, respectively) and severe developmental disruption (reduced pupation, adult emergence, and malformations). These findings indicate that the proposed strategy effectively promotes gene silencing and pest control in lepidopteran species, presenting a novel RNAi-based approach for sustainable pest management.
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