Cargando…

RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt

Verticillium dahliae, one of the most destructive fungal pathogens of several crops, challenges the sustainability of cotton productivity worldwide because very few widely‐cultivated Upland cotton varieties are resistant to Verticillium wilt (VW). Here, we report that REVEILLE2 (RVE2), the Myb‐like...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Fujie, Cai, Sheng, Ma, Zhifeng, Yue, Haoran, Xing, Liangshuai, Wang, Yingying, Feng, Shouli, Wang, Liang, Dai, Lingjun, Wan, Hui, Gao, Jianbo, Chen, Mengfei, Rahman, Mehboob‐ur‐, Zhou, Baoliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10651145/
https://www.ncbi.nlm.nih.gov/pubmed/37553251
http://dx.doi.org/10.1111/pbi.14149
_version_ 1785147601664868352
author Liu, Fujie
Cai, Sheng
Ma, Zhifeng
Yue, Haoran
Xing, Liangshuai
Wang, Yingying
Feng, Shouli
Wang, Liang
Dai, Lingjun
Wan, Hui
Gao, Jianbo
Chen, Mengfei
Rahman, Mehboob‐ur‐
Zhou, Baoliang
author_facet Liu, Fujie
Cai, Sheng
Ma, Zhifeng
Yue, Haoran
Xing, Liangshuai
Wang, Yingying
Feng, Shouli
Wang, Liang
Dai, Lingjun
Wan, Hui
Gao, Jianbo
Chen, Mengfei
Rahman, Mehboob‐ur‐
Zhou, Baoliang
author_sort Liu, Fujie
collection PubMed
description Verticillium dahliae, one of the most destructive fungal pathogens of several crops, challenges the sustainability of cotton productivity worldwide because very few widely‐cultivated Upland cotton varieties are resistant to Verticillium wilt (VW). Here, we report that REVEILLE2 (RVE2), the Myb‐like transcription factor, confers the novel function in resistance to VW by regulating the jasmonic acid (JA) pathway in cotton. RVE2 expression was essentially required for the activation of JA‐mediated disease‐resistance response. RVE2 physically interacted with TPL/TPRs and disturbed JAZ proteins to recruit TPL and TPR1 in NINJA‐dependent manner, which regulated JA response by relieving inhibited‐MYC2 activity. The MYC2 then bound to RVE2 promoter for the activation of its transcription, forming feedback loop. Interestingly, a unique truncated RVE2 widely existing in D‐subgenome (GhRVE2D) of natural Upland cotton represses the ability of the MYC2 to activate GhRVE2A promoter but not GausRVE2 or GbRVE2. The result could partially explain why Gossypium barbadense popularly shows higher resistance than Gossypium hirsutum. Furthermore, disturbing the JA‐signalling pathway resulted into the loss of RVE2‐mediated disease‐resistance in various plants (Arabidopsis, tobacco and cotton). RVE2 overexpression significantly enhanced the resistance to VW. Collectively, we conclude that RVE2, a new regulatory factor, plays a pivotal role in fine‐tuning JA‐signalling, which would improve our understanding the mechanisms underlying the resistance to VW.
format Online
Article
Text
id pubmed-10651145
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-106511452023-11-15 RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt Liu, Fujie Cai, Sheng Ma, Zhifeng Yue, Haoran Xing, Liangshuai Wang, Yingying Feng, Shouli Wang, Liang Dai, Lingjun Wan, Hui Gao, Jianbo Chen, Mengfei Rahman, Mehboob‐ur‐ Zhou, Baoliang Plant Biotechnol J Research Articles Verticillium dahliae, one of the most destructive fungal pathogens of several crops, challenges the sustainability of cotton productivity worldwide because very few widely‐cultivated Upland cotton varieties are resistant to Verticillium wilt (VW). Here, we report that REVEILLE2 (RVE2), the Myb‐like transcription factor, confers the novel function in resistance to VW by regulating the jasmonic acid (JA) pathway in cotton. RVE2 expression was essentially required for the activation of JA‐mediated disease‐resistance response. RVE2 physically interacted with TPL/TPRs and disturbed JAZ proteins to recruit TPL and TPR1 in NINJA‐dependent manner, which regulated JA response by relieving inhibited‐MYC2 activity. The MYC2 then bound to RVE2 promoter for the activation of its transcription, forming feedback loop. Interestingly, a unique truncated RVE2 widely existing in D‐subgenome (GhRVE2D) of natural Upland cotton represses the ability of the MYC2 to activate GhRVE2A promoter but not GausRVE2 or GbRVE2. The result could partially explain why Gossypium barbadense popularly shows higher resistance than Gossypium hirsutum. Furthermore, disturbing the JA‐signalling pathway resulted into the loss of RVE2‐mediated disease‐resistance in various plants (Arabidopsis, tobacco and cotton). RVE2 overexpression significantly enhanced the resistance to VW. Collectively, we conclude that RVE2, a new regulatory factor, plays a pivotal role in fine‐tuning JA‐signalling, which would improve our understanding the mechanisms underlying the resistance to VW. John Wiley and Sons Inc. 2023-08-08 2023-12 /pmc/articles/PMC10651145/ /pubmed/37553251 http://dx.doi.org/10.1111/pbi.14149 Text en © 2023 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Liu, Fujie
Cai, Sheng
Ma, Zhifeng
Yue, Haoran
Xing, Liangshuai
Wang, Yingying
Feng, Shouli
Wang, Liang
Dai, Lingjun
Wan, Hui
Gao, Jianbo
Chen, Mengfei
Rahman, Mehboob‐ur‐
Zhou, Baoliang
RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt
title RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt
title_full RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt
title_fullStr RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt
title_full_unstemmed RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt
title_short RVE2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to Verticillium wilt
title_sort rve2, a new regulatory factor in jasmonic acid pathway, orchestrates resistance to verticillium wilt
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10651145/
https://www.ncbi.nlm.nih.gov/pubmed/37553251
http://dx.doi.org/10.1111/pbi.14149
work_keys_str_mv AT liufujie rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT caisheng rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT mazhifeng rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT yuehaoran rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT xingliangshuai rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT wangyingying rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT fengshouli rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT wangliang rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT dailingjun rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT wanhui rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT gaojianbo rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT chenmengfei rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT rahmanmehboobur rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt
AT zhoubaoliang rve2anewregulatoryfactorinjasmonicacidpathwayorchestratesresistancetoverticilliumwilt