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An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice

A key event that follows pathogen recognition by a resistance (R) protein containing an NB-ARC (nucleotide-binding adaptor shared by Apaf-1, R proteins, and Ced-4) domain is hypersensitive response (HR)-type cell death accompanied by accumulation of reactive oxygen species and nitric oxide. However,...

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Autores principales: Wang, Yiqin, Teng, Zhenfeng, Li, Hua, Wang, Wei, Xu, Fan, Sun, Kai, Chu, Jinfang, Qian, Yangwen, Loake, Gary J., Chu, Chengcai, Tang, Jiuyou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10030324/
https://www.ncbi.nlm.nih.gov/pubmed/36203361
http://dx.doi.org/10.1016/j.xplc.2022.100459
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author Wang, Yiqin
Teng, Zhenfeng
Li, Hua
Wang, Wei
Xu, Fan
Sun, Kai
Chu, Jinfang
Qian, Yangwen
Loake, Gary J.
Chu, Chengcai
Tang, Jiuyou
author_facet Wang, Yiqin
Teng, Zhenfeng
Li, Hua
Wang, Wei
Xu, Fan
Sun, Kai
Chu, Jinfang
Qian, Yangwen
Loake, Gary J.
Chu, Chengcai
Tang, Jiuyou
author_sort Wang, Yiqin
collection PubMed
description A key event that follows pathogen recognition by a resistance (R) protein containing an NB-ARC (nucleotide-binding adaptor shared by Apaf-1, R proteins, and Ced-4) domain is hypersensitive response (HR)-type cell death accompanied by accumulation of reactive oxygen species and nitric oxide. However, the integral mechanisms that underlie this process remain relatively opaque. Here, we show that a gain-of-function mutation in the NB-ARC protein RLS1 (Rapid Leaf Senescence 1) triggers high-light-dependent HR-like cell death in rice. The RLS1-mediated defense response is largely independent of salicylic acid accumulation, NPR1 (Nonexpressor of Pathogenesis-Related Gene 1) activity, and RAR1 (Required for Mla12 Resistance 1) function. A screen for suppressors of RLS1 activation identified RMC (Root Meander Curling) as essential for the RLS1-activated defense response. RMC encodes a cysteine-rich receptor-like secreted protein (CRRSP) and functions as an RLS1-binding partner. Intriguingly, their co-expression resulted in a change in the pattern of subcellular localization and was sufficient to trigger cell death accompanied by a decrease in the activity of the antioxidant enzyme APX1. Collectively, our findings reveal an NB-ARC–CRRSP signaling module that modulates oxidative state, the cell death process, and associated immunity responses in rice.
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spelling pubmed-100303242023-03-23 An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice Wang, Yiqin Teng, Zhenfeng Li, Hua Wang, Wei Xu, Fan Sun, Kai Chu, Jinfang Qian, Yangwen Loake, Gary J. Chu, Chengcai Tang, Jiuyou Plant Commun Research Article A key event that follows pathogen recognition by a resistance (R) protein containing an NB-ARC (nucleotide-binding adaptor shared by Apaf-1, R proteins, and Ced-4) domain is hypersensitive response (HR)-type cell death accompanied by accumulation of reactive oxygen species and nitric oxide. However, the integral mechanisms that underlie this process remain relatively opaque. Here, we show that a gain-of-function mutation in the NB-ARC protein RLS1 (Rapid Leaf Senescence 1) triggers high-light-dependent HR-like cell death in rice. The RLS1-mediated defense response is largely independent of salicylic acid accumulation, NPR1 (Nonexpressor of Pathogenesis-Related Gene 1) activity, and RAR1 (Required for Mla12 Resistance 1) function. A screen for suppressors of RLS1 activation identified RMC (Root Meander Curling) as essential for the RLS1-activated defense response. RMC encodes a cysteine-rich receptor-like secreted protein (CRRSP) and functions as an RLS1-binding partner. Intriguingly, their co-expression resulted in a change in the pattern of subcellular localization and was sufficient to trigger cell death accompanied by a decrease in the activity of the antioxidant enzyme APX1. Collectively, our findings reveal an NB-ARC–CRRSP signaling module that modulates oxidative state, the cell death process, and associated immunity responses in rice. Elsevier 2022-10-06 /pmc/articles/PMC10030324/ /pubmed/36203361 http://dx.doi.org/10.1016/j.xplc.2022.100459 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Wang, Yiqin
Teng, Zhenfeng
Li, Hua
Wang, Wei
Xu, Fan
Sun, Kai
Chu, Jinfang
Qian, Yangwen
Loake, Gary J.
Chu, Chengcai
Tang, Jiuyou
An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice
title An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice
title_full An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice
title_fullStr An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice
title_full_unstemmed An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice
title_short An activated form of NB-ARC protein RLS1 functions with cysteine-rich receptor-like protein RMC to trigger cell death in rice
title_sort activated form of nb-arc protein rls1 functions with cysteine-rich receptor-like protein rmc to trigger cell death in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10030324/
https://www.ncbi.nlm.nih.gov/pubmed/36203361
http://dx.doi.org/10.1016/j.xplc.2022.100459
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