生物安全
生物技术
植物病害
农业
基因工程
免疫系统
生物
转基因生物
风险分析(工程)
作物保护
疾病控制
转基因作物
业务
生化工程
可持续农业
农药
动物健康
抗菌剂
作者
Yang Jiao,Yiming Liu,Fuxin Sun,Wenlu Wang,H. LI,Qixiong Gao,Yue Li,Ninghai Lu,Xueliang Tian,Xinhua Ding,Jianfeng Du
标识
DOI:10.1021/acs.jafc.5c14342
摘要
Plant diseases significantly impact crop yield and quality, while conventional pesticide treatments often disrupt beneficial plant microbiota essential for pathogen prevention and immune regulation. Although plant beneficial microorganisms (PBMs) show promise as disease control agents, their effectiveness is constrained by strain-dependent variations, survival challenges, and inconsistent immune responses. Recent advances in genetic engineering, particularly CRISPR-Cas systems combined with complementary technologies like RecE/T, enable precise modifications of PBMs to enhance their protective potential. Enhanced PBMs improve functionality via multiple mechanisms: targeted gene-expression-mediated colonization, specific antimicrobial activity, and immune regulation. Studies demonstrate that genetically modified PBMs can prevent and control plant diseases through competitive exclusion, antibiotic production, barrier reinforcement, and immune modulation. We analyzed the considerations for the environmental release of engineered PBMs to reduce risks. Future research should focus on optimizing PBMs for specific applications while addressing biosafety concerns, thereby unlocking their full potential in safeguarding plant health.
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