In the ongoing plant-pathogen arms race, plants use pattern recognition receptors (PRRs) to recognize pathogen-associated molecular patterns (PAMPs), while in successful pathogens, PAMPs can evolve to evade detection. Engineering PRRs to recognize evading PAMPs could potentially generate broad-spectrum and durable disease resistance. Here we reverse-engineered two natural variants of the PRR FLAGELLIN SENSING 2 (FLS2), VrFLS2XL and GmFLS2b, with extended recognition specificities towards evading flg22 variants. We identified minimal gain-of-function residues enabling blind FLS2s to recognize otherwise evading flg22 variants. We uncovered two strategies: (1) optimizing FLS2-flg22 interaction around flg22's key evasion sites and (2) strengthening direct FLS2-BAK1 interaction to overcome weak agonistic and antagonistic flg22s, respectively. In addition, we leveraged polymorphisms that enhance recognition through unknown mechanisms to engineer a superior recognition capability. These findings offer basic design principles to engineer PRRs with broader recognition spectra, paving the way for PRR engineering to generate precisely gene-edited disease-resistant crops.
Reverse engineering of the pattern recognition receptor FLS2 reveals key design principles of broader recognition spectra against evading flg22 epitopes.
对模式识别受体 FLS2 的逆向工程揭示了更广泛的识别谱对抗逃避 flg22 表位的关键设计原则
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作者:Zhang Songyuan, Liu Songyuan, Lai Hung-Fei, Bender Kyle W, Kim Gijeong, Caflisch Amedeo, Zipfel Cyril
| 期刊: | Nature Plants | 影响因子: | 13.600 |
| 时间: | 2025 | 起止号: | 2025 Aug;11(8):1642-1657 |
| doi: | 10.1038/s41477-025-02050-5 | 研究方向: | 其它 |
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