Synthetic FLS2 receptor oligomer boosts plant innate immunity

The gradual assembly and oligomerization of cell surface receptors are critical for regulating immune activation and turnover. Yet, how dynamic, spatiotemporally regulated assembly enables rapid and sustained signaling in plant innate immunity remains unclear, owing to the inherent complexity of their dynamic associations. Using a synthetic engineering approach, we precisely controlled the oligomerization states of the Arabidopsis FLS2 receptor. Single-particle imaging with quantitative calibration revealed that FLS2 transits from a predominantly monomeric resting state to transient homo-association at dimeric configuration upon activation. We then showed that synthetically engineered receptor homo-dimeric association markedly enhances plant defense responses while avoids dysfunctional high-order assemblies, which inhibit dynamic receptor replenishment and thus defect in long-lasting immune activities. Our findings highlight precise receptor assembly control for both immediate activation and long-term signaling, offering strategies for engineering durable plant immune responses.

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Publication Details

Journal
Science Advances
Published
2026-09-25
DOI
https://doi.org/10.1126/sciadv.aeg6872
Primary Topic
Plant-Microbe Interactions and Immunity
Type
article
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Synthetic FLS2 receptor oligomer boosts plant innate immunity

Changjin Huang, Xinlu Zhu, Choon‐Peng Chng, Zhiming Ma et al.
Science Advances
Plant-Microbe Interactions and Immunity
article

Synthetic FLS2 receptor oligomer boosts plant innate immunity

Changjin Huang, Xinlu Zhu, Choon‐Peng Chng, Zhiming Ma, Qiyu Liang, Yansong Miao, Yi Xie
article en

Abstract

The gradual assembly and oligomerization of cell surface receptors are critical for regulating immune activation and turnover. Yet, how dynamic, spatiotemporally regulated assembly enables rapid and sustained signaling in plant innate immunity remains unclear, owing to the inherent complexity of their dynamic associations. Using a synthetic engineering approach, we precisely controlled the oligomerization states of the Arabidopsis FLS2 receptor. Single-particle imaging with quantitative calibration revealed that FLS2 transits from a predominantly monomeric resting state to transient homo-association at dimeric configuration upon activation. We then showed that synthetically engineered receptor homo-dimeric association markedly enhances plant defense responses while avoids dysfunctional high-order assemblies, which inhibit dynamic receptor replenishment and thus defect in long-lasting immune activities. Our findings highlight precise receptor assembly control for both immediate activation and long-term signaling, offering strategies for engineering durable plant immune responses.

Science AdvancesVol. 12(39)
Nanyang Technological University (SG), Sanya University (CN), Institute for Digital Molecular Analytics and Science (SG)
Openalex Percentile: Top 13%
Plant-Microbe Interactions and Immunity
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Synthetic FLS2 receptor oligomer boosts plant innate immunity — Changjin Huang, Xinlu Zhu, et al. · Science Advances (2026) | TGRS Research Map | TGRS