生物
广谱
模式识别受体
异源表达
异源的
生物技术
卵菌
拟南芥
作物
计算生物学
受体
重组DNA
遗传学
农学
病菌
基因
化学
先天免疫系统
突变体
组合化学
作者
Yuankun Yang,Christina E. Steidele,Xianlong Huang,Birgit Löffelhardt,Lili Huang,Jonathan D. G. Jones,Thorsten Nürnberger,Pingtao Ding,Andrea A. Gust
标识
DOI:10.1038/s41587-025-02858-8
摘要
Abstract Conventional plant resistance breeding has primarily focused on intracellular immune receptors, while cell-surface pattern recognition receptors (PRRs) have been underexplored because of their comparatively modest contributions to resistance. However, PRRs offer untapped potential for crop improvement. Here we demonstrate that the Arabidopsis receptor-like protein RLP23, which recognizes molecular patterns from three distinct microbial kingdoms, confers broad-spectrum resistance when introduced into the Solanaceae crop tomato. We also identify the C-terminal domain of RLPs as crucial for ensuring compatibility and efficacy during heterologous expression. Targeted engineering of the C-terminal domain significantly enhances RLP23 and its use, enabling transfer of robust resistance against bacterial, fungal and oomycete pathogens to tomato plants without compromising yield. We extend this RLP engineering strategy to rice and poplar, highlighting its broad applicability. These findings establish a versatile framework for PRR-based engineering, opening additional avenues for sustainable crop protection.
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