RNA干扰
RNA沉默
纳米载体
瓶颈
生物技术
生物
作物保护
基因沉默
计算生物学
农业
核糖核酸
生化工程
可持续农业
小RNA
细胞内
作物
行动地点
小干扰RNA
细胞生物学
机制(生物学)
大田作物
持续性
风险分析(工程)
合理设计
作者
Qiang Wang,Chaonan Li,Richard (Chunhui) Yang,Yichao Wang,Nina Zhang
标识
DOI:10.1021/acs.jafc.6c04952
摘要
RNA interference (RNAi) offers a sequence-specific and sustainable strategy for crop protection, yet inefficient double-stranded RNA (dsRNA) delivery remains a major bottleneck for agricultural applications. Rapid environmental degradation, restricted penetration across biological barriers, and poor intracellular availability collectively constrain gene silencing outcomes. Nanocarriers can improve dsRNA stability, biological barrier penetration, cellular uptake, and intracellular release, but rational design principles for agricultural RNAi delivery are still lacking. This review systematically summarizes inorganic, organic, hybrid, and bioderived nanocarriers and establishes a barrier-guided design framework linking specific delivery obstacles with tailored physicochemical properties. Structure-activity relationships governing dsRNA protection, transport, uptake, and release are critically analyzed, together with key challenges associated with biological variability, scalability, biosafety, regulatory pathways, and field translation. Finally, we outline future directions for moving from laboratory proof-of-concept to field-deployable RNAi delivery systems, supporting the development of sustainable crop protection.
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