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A NB-ARC-CRRSP Signaling Module Triggers HR-Like Cell Death and Associated Disease Resistance in Rice by Suppressing Antioxidant Defense Systems

50 Pages Posted: 15 Apr 2020 Publication Status: Review Complete

See all articles by Yiqin Wang

Yiqin Wang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Jiuyou Tang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Hua Li

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Zhenfeng Teng

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Wei Wang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Fan Xu

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Kai Sun

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

Jinfang Chu

Chinese Academy of Sciences (CAS) - Institute of Genetics and Developmental Biology

Yangwen Qian

Biogle Genome Editing Center

Gary J. Loake

University of Edinburgh - Institute of Molecular Plant Sciences

Chengcai Chu

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

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Abstract

A key feature following pathogen recognition by resistance (R) proteins containing NB-ARC (nucleotide-binding adaptor shared by Apaf-1, R proteins, and Ced-4) domains is the hypersensitive response (HR). However, the underpinning mechanisms integral to this process remain relatively opaque. Here we show that a gain-of-function mutation in the NB-ARC protein, RLS1 (Rapid Leaf Senescence1), triggers high-light-dependent HR-like cell death in rice. The RLS1-mediated defense response is independent of SA (salicylic acid) accumulation, NPR1 (nonexpressor of pathogenesis-elated genes 1) activity and RAR1 (required for Mla12 resistance1) function. A screen for suppressors of RLS1 activation identified RMC (Root Meander Curling), a cysteine-rich receptor-like secreted protein (CRRSP). RMC is essential for the RLS1 activated defense response via functioning as a RLS1-binding partner and subsequently suppressing the activity of key antioxidant enzymes. Collectively, our findings reveal a NB-ARC-CRRSP signaling module that triggers HR-like cell death and associated disease resistance in rice.

Keywords: hypersensitive response, NB-ARC protein, cysteine-rich receptor-like secreted protein, disease resistance, antioxidant enzymes

Suggested Citation

Wang, Yiqin and Tang, Jiuyou and Li, Hua and Teng, Zhenfeng and Wang, Wei and Xu, Fan and Sun, Kai and Chu, Jinfang and Qian, Yangwen and Loake, Gary J. and Chu, Chengcai, A NB-ARC-CRRSP Signaling Module Triggers HR-Like Cell Death and Associated Disease Resistance in Rice by Suppressing Antioxidant Defense Systems. Available at SSRN: https://ssrn.com/abstract=3565037 or http://dx.doi.org/10.2139/ssrn.3565037
This version of the paper has not been formally peer reviewed.

Yiqin Wang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

China

Jiuyou Tang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics ( email )

China

Hua Li

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

China

Zhenfeng Teng

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics ( email )

China

Wei Wang

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

China

Fan Xu

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

China

Kai Sun

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics

China

Jinfang Chu

Chinese Academy of Sciences (CAS) - Institute of Genetics and Developmental Biology ( email )

Beijing, 100101
China

Yangwen Qian

Biogle Genome Editing Center ( email )

China

Gary J. Loake

University of Edinburgh - Institute of Molecular Plant Sciences ( email )

Edinburgh, Scotland
United Kingdom

Chengcai Chu (Contact Author)

Chinese Academy of Sciences (CAS) - State Key Laboratory of Plant Genomics ( email )

China

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