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Surface immune signaling unlocks NLR activation through mRNA alternative splicing

Science. 2026-07; 
Chuyun Gao, Xi Meng, Xianchu Chen, Leiyun Yang, Tarhan Ibrahim, AmirAli Toghani, Enoch Lok Him Yuen, Nick Eilmann, Freddie King, Kangping Li, Luyao Wang, Biying Sun, Yuanchao Wang, Tolga Osman Bozkurt, Suomeng Dong
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Gene Fragments All PCR amplification templates were derived from either genomic DNA (gDNA) or complementary DNA (cDNA) of the corresponding plant species, from plasmids described in previous studies, or from synthetic DNA fragments obtained from GenScript. dH2O was replaced with the luminol (35.4 μg/mL)/peroxidase (10 μg/mL) reaction solution supplied with sterile water or 0.5 M INF1,100 nM flg22, 100 nM nlp20 (Genscript). Get A Quote
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摘要

Plants activate pattern-triggered immunity (PTI) and effector-triggered immunity (ETI) to combat pathogens. However, how these systems coordinate immune activation while preventing autoimmunity remains poorly understood. In this study, we uncovered a regulatory mechanism in which surface immune signaling unlocks nucleotide-binding leucine-rich repeat (NLR) immune receptor activation through mRNA splicing. We identified an N-terminal prodomain in the potato late blight resistance protein Rpi-vnt1.1 that inhibits resistosome formation, preventing potential autoactivation of this NLR. Upon pathogen perception, PTI signaling induced alternative splicing of Rpi-vnt1.1 mRNA, removing this inhibitory element. This pri... More

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