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Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot

Gibberella stalk rot (GSR) by Fusarium graminearum causes significant losses of maize production worldwide. Jasmonates (JAs) have been broadly known in regulating defense against pathogens through the homeostasis of active JAs and COI-JAZ-MYC function module. However, the functions of different mole...

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Autores principales: Ma, Liang, Sun, Yali, Ruan, Xinsen, Huang, Pei-Cheng, Wang, Shi, Li, Shunfa, Zhou, Yu, Wang, Fang, Cao, Yu, Wang, Qing, Wang, Zhenhua, Kolomiets, Michael V., Gao, Xiquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830991/
https://www.ncbi.nlm.nih.gov/pubmed/33467172
http://dx.doi.org/10.3390/ijms22020870
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author Ma, Liang
Sun, Yali
Ruan, Xinsen
Huang, Pei-Cheng
Wang, Shi
Li, Shunfa
Zhou, Yu
Wang, Fang
Cao, Yu
Wang, Qing
Wang, Zhenhua
Kolomiets, Michael V.
Gao, Xiquan
author_facet Ma, Liang
Sun, Yali
Ruan, Xinsen
Huang, Pei-Cheng
Wang, Shi
Li, Shunfa
Zhou, Yu
Wang, Fang
Cao, Yu
Wang, Qing
Wang, Zhenhua
Kolomiets, Michael V.
Gao, Xiquan
author_sort Ma, Liang
collection PubMed
description Gibberella stalk rot (GSR) by Fusarium graminearum causes significant losses of maize production worldwide. Jasmonates (JAs) have been broadly known in regulating defense against pathogens through the homeostasis of active JAs and COI-JAZ-MYC function module. However, the functions of different molecular species of JAs and COI-JAZ-MYC module in maize interactions with Fusarium graminearum and regulation of diverse metabolites remain unknown. In this study, we found that exogenous application of MeJA strongly enhanced resistance to GSR. RNA-seq analysis showed that MeJA activated multiple genes in JA pathways, which prompted us to perform a genome-wide screening of key JA signaling components in maize. Yeast Two-Hybrid, Split-Luciferase, and Pull-down assays revealed that the JA functional and structural mimic coronatine (COR) functions as an essential ligand to trigger the interaction between ZmCOIa and ZmJAZ15. By deploying CRISPR-cas9 knockout and Mutator insertional mutants, we demonstrated that coi1a mutant is more resistant, whereas jaz15 mutant is more susceptible to GSR. Moreover, JA-deficient opr7-5opr8-2 mutant displayed enhanced resistance to GSR compared to wild type. Together, these results provide strong evidence that ZmJAZ15 plays a pivotal role, whereas ZmCOIa and endogenous JA itself might function as susceptibility factors, in maize immunity to GSR.
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spelling pubmed-78309912021-01-26 Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot Ma, Liang Sun, Yali Ruan, Xinsen Huang, Pei-Cheng Wang, Shi Li, Shunfa Zhou, Yu Wang, Fang Cao, Yu Wang, Qing Wang, Zhenhua Kolomiets, Michael V. Gao, Xiquan Int J Mol Sci Article Gibberella stalk rot (GSR) by Fusarium graminearum causes significant losses of maize production worldwide. Jasmonates (JAs) have been broadly known in regulating defense against pathogens through the homeostasis of active JAs and COI-JAZ-MYC function module. However, the functions of different molecular species of JAs and COI-JAZ-MYC module in maize interactions with Fusarium graminearum and regulation of diverse metabolites remain unknown. In this study, we found that exogenous application of MeJA strongly enhanced resistance to GSR. RNA-seq analysis showed that MeJA activated multiple genes in JA pathways, which prompted us to perform a genome-wide screening of key JA signaling components in maize. Yeast Two-Hybrid, Split-Luciferase, and Pull-down assays revealed that the JA functional and structural mimic coronatine (COR) functions as an essential ligand to trigger the interaction between ZmCOIa and ZmJAZ15. By deploying CRISPR-cas9 knockout and Mutator insertional mutants, we demonstrated that coi1a mutant is more resistant, whereas jaz15 mutant is more susceptible to GSR. Moreover, JA-deficient opr7-5opr8-2 mutant displayed enhanced resistance to GSR compared to wild type. Together, these results provide strong evidence that ZmJAZ15 plays a pivotal role, whereas ZmCOIa and endogenous JA itself might function as susceptibility factors, in maize immunity to GSR. MDPI 2021-01-16 /pmc/articles/PMC7830991/ /pubmed/33467172 http://dx.doi.org/10.3390/ijms22020870 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Liang
Sun, Yali
Ruan, Xinsen
Huang, Pei-Cheng
Wang, Shi
Li, Shunfa
Zhou, Yu
Wang, Fang
Cao, Yu
Wang, Qing
Wang, Zhenhua
Kolomiets, Michael V.
Gao, Xiquan
Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot
title Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot
title_full Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot
title_fullStr Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot
title_full_unstemmed Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot
title_short Genome-Wide Characterization of Jasmonates Signaling Components Reveals the Essential Role of ZmCOI1a-ZmJAZ15 Action Module in Regulating Maize Immunity to Gibberella Stalk Rot
title_sort genome-wide characterization of jasmonates signaling components reveals the essential role of zmcoi1a-zmjaz15 action module in regulating maize immunity to gibberella stalk rot
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7830991/
https://www.ncbi.nlm.nih.gov/pubmed/33467172
http://dx.doi.org/10.3390/ijms22020870
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