昆虫学报 ›› 2025, Vol. 68 ›› Issue (6): 849-861.doi: 10.16380/j.kcxb.2025.06.016

• 综 述 • 上一篇    下一篇

昆虫中纳米颗粒介导的RNA干扰:研究进展与展望

刘吉升#,*, 林显锋#, 陈伟健   

  1. (广州大学生命科学学院, 广州 510006)
  • 出版日期:2025-06-20 发布日期:2025-07-31

Nanoparticle-mediated RNA interference in insects: Research progress and prospects

LIU Ji-Sheng#,*, LIN Xian-Feng#, CHEN Wei-Jian   

  1.  (School of Life Sciences, Guangzhou University, Guangzhou 510006, China)
  • Online:2025-06-20 Published:2025-07-31

摘要: RNA干扰(RNA interference, RNAi)由于其高度保守、特异性强、操作简单和沉默高效等优点,已广泛应用于昆虫的基因功能研究和选择性控制农业害虫的新生物策略开发中。但是RNAi在害虫防治的实际应用中也面临了挑战,其中RNAi效率是最主要的制约因素。本综述对RNAi分子机制的3个主要通路、核酸酶对双链RNA(double-stranded RNA, dsRNA)稳定性和RNAi效率的影响以及利用纳米颗粒材料包裹与递送dsRNA的研究进展进行了归纳与探讨,对通过抑制昆虫体内核酸酶活性并结合目标基因的dsRNA来进一步提高RNAi效率进行了展望,以期为基于纳米颗粒的害虫生物防治和绿色杀虫剂开发提供参考。dsRNA的稳定性是限制昆虫中RNAi效率的主要因素之一,将dsRNA与不同纳米颗粒结合形成聚合物,可增加dsRNA在昆虫体内的稳定性,提高RNAi效率。在RNAi应用中,不同纳米颗粒为RNAi提供了多种dsRNA递送方式。纳米颗粒以其安全、低毒、成本低廉、生物相容性好和RNAi效率高等优点,已经成为国内外研究的热点,被越来越多地应用于昆虫的RNAi研究中,在害虫防治与绿色杀虫剂开发中展现出巨大的潜力和价值。今后,应加强纳米材料功能化设计、低成本生产工艺研发及生态风险评估体系构建,以推动RNAi技术在农业中的实际应用与可持续发展。

关键词: 昆虫, 基因沉默, RNA干扰, 双链RNA, 纳米颗粒, 害虫防治

Abstract:  RNA interference (RNAi) has been widely applied in the study of gene function in insects and the development of novel biological strategies for the selective control of agricultural pests due to its high conservation, strong specificity, easy operation and efficient silencing. However, the practical application of RNAi in pest control also faces challenges, among which the efficiency of RNAi is the most significant limiting factor. In this review, we summarized and discussed the three main pathways of the molecular mechanisms of RNAi, the impact of nucleases on the stability of doublestranded RNA (dsRNA) and RNAi efficiency, and the research progress in using nanoparticle materials to encapsulate and deliver dsRNA. We also provide a perspective on improving RNAi efficiency by inhibiting nuclease activity in insects and combining it with target gene dsRNA, with the aim of providing references for the biological control of pests and the development of green insecticides based on nanoparticles. One of the main factors limiting the efficiency of RNAi in insects is the stability of dsRNA. Combining dsRNA with different nanoparticles to form polymers can increase the stability of dsRNA in insects, thereby enhancing RNAi efficiency. Different nanoparticles provide various ways to deliver dsRNA in RNAi applications. Nanoparticles, with their advantages of safety, low-toxicity, low-cost, good biocompatibility and high RNAi efficiency, have become a research hotspot in both domestic and international research, and are increasingly applied in insect RNAi studies, demonstrating great potential and value in pest control and the development of green insecticides. In the future, the functional design of nanomaterials should be enhanced, low-cost production processes should be developed, and an ecological risk assessment system should be established to promote the practical application and sustainable development of RNAi technology in agriculture.

Key words:  Insects, gene silence, RNA interference, doublestranded RNA, nanoparticles, pest control