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Updated: Jun 9, 2026

Larval RNA Interference in Silkworm Bombyx mori through Chitosan/dsRNA Nanoparticle Delivery
Published on: October 4, 2024
Imidazole-Modified Graphene Quantum Dots Enhance RNAi Efficiency in Spodoptera litura (Lepidoptera: Noctuidae): A
Fei-Feng Wang1,2,3, Yuan-Yuan Huang3, Peng Qin3
1Engineering Research Center of Biotechnology for Active Substances, Ministry of Education, Chongqing Normal University, Chongqing, China.
Abstract:
RNA interference (RNAi) serves as a crucial tool for gene function research and pest control. Nevertheless, its application in lepidopteran insects is restricted by the low efficiency of gene silencing. Spodoptera litura (Lepidoptera: Noctuidae), a globally-distributed polyphagous agricultural pest, has developed multiple strategies to resist control measures. This situation highlights the urgent need for innovative strategies to promote functional genomics and molecular target characterization studies. In this study, a novel cuticular protein SlCP was identified, which is vital for epidermal development and larval survival. Silencing of SlCP gave rise to epidermal contraction, a reduction in body size, a decrease in feed intake, and larval mortality. To address the problem of low RNAi efficiency, imidazole-modified graphene quantum dots (IGQDs) were utilized as nanocarriers for the delivery of dsSlCP. IGQD mediated delivery led to a 4.65-fold greater reduction in SlCP transcript levels compared with naked double-stranded RNA and elevated larval mortality from 38.00% to 56.00%. These findings establish that SlCP functions in epidermal development and present a nanomaterial-assisted strategy that enhances RNAi delivery efficacy in S. litura.
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Experimental RNAi
RNA Interference
This process occurs naturally in cells, often through the activity of genomically-encoded microRNAs. Researchers can take advantage of this mechanism by introducing synthetic RNAs to deactivate specific genes for research or therapeutic purposes. For example, RNAi could be used...

