生物
杀菌剂
生物技术
抗性(生态学)
RNA干扰
作物
化学控制
计算生物学
遗传学
农学
基因
核糖核酸
作者
Joris Alkemade,Nichola J. Hawkins,Elena Baraldi,Alan G. Buddie,Helen M. Cockerton,Isabel Corkley,B. A. Fraaije,Ester Gaya,Danna R. Gifford,Florian Härtig,K. Kanyuka,Aline Koch,Jonatan Niño‐Sánchez,Gail M. Preston,Michael Seidl,Pietro D. Spanu,B. Werner,Joy Lyu,Timothy G. Barraclough
标识
DOI:10.1016/j.fbr.2025.100443
摘要
Crop protection against fungal pathogens is essential to prevent crop losses and maintain food security. Current crop protection relies heavily on chemical fungicides. However, rapid evolution of fungicide resistance, the constant appearance of new pathogens, and legislation against chemical pesticides due to concerns regarding their impact on human health and the environment, mean new crop protection strategies are urgently required. One elegant solution is double-stranded RNA-based crop protection, which aims to silence selected genes in the pathogen to reduce crop damage. This technology brings the promise of targeting specific genes, which could be chosen to maximise protection, minimize off-target effects and reduce the risk of resistance evolution. Here we discuss strategies for successful use of this novel technology based on lessons learned from fungicide resistance and recent discoveries in fungal evolution derived from genome-sequencing.
科研通智能强力驱动
Strongly Powered by AbleSci AI