RNA沉默
RNA干扰
灰葡萄孢菌
生物
杀菌剂
核糖核酸
采后
作物保护
葡萄球菌炎
基因沉默
病菌
植物病害
小干扰RNA
园艺
植物
生物技术
微生物学
基因
农学
遗传学
作者
Jonatan Niño‐Sánchez,Prabhakaran Sambasivam,Anne Sawyer,Rachael Hamby,Angela Chen,Elizabeth Czislowski,Peng Li,Narelle Manzie,Donald M. Gardiner,Rebecca Ford,Zhi Ping Xu,Neena Mitter,Hailing Jin
摘要
One of the most promising tools for the control of fungal plant diseases is spray-induced gene silencing (SIGS). In SIGS, small interfering RNA (siRNA) or double-stranded RNA (dsRNA) targeting essential or virulence-related pathogen genes are exogenously applied to plants and postharvest products to trigger RNA interference (RNAi) of the targeted genes, inhibiting fungal growth and disease. However, SIGS is limited by the unstable nature of RNA under environmental conditions. The use of layered double hydroxide or clay particles as carriers to deliver biologically active dsRNA, a formulation termed BioClay™, can enhance RNA durability on plants, prolonging its activity against pathogens. Here, we demonstrate that dsRNA delivered as BioClay can prolong protection against Botrytis cinerea, a major plant fungal pathogen, on tomato leaves and fruit and on mature chickpea plants. BioClay increased the protection window from 1 to 3 weeks on tomato leaves and from 5 to 10 days on tomato fruits, when compared with naked dsRNA. In flowering chickpea plants, BioClay provided prolonged protection for up to 4 weeks, covering the critical period of poding, whereas naked dsRNA provided limited protection. This research represents a major step forward for the adoption of SIGS as an eco-friendly alternative to traditional fungicides.
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