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iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes

Rice blast disease caused by Magnaporthe oryzae (M. oryzae) is one of the most serious diseases. Although previous research using two-dimensional gel-based proteomics to assess the proteins related to the rice blast resistance had been done, few proteins were identified. Here, we used the iTRAQ meth...

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Autores principales: Ma, Zuobin, Wang, Lili, Zhao, Mingzhu, Gu, Shuang, Wang, Changhua, Zhao, Jiaming, Tang, Zhiqiang, Gao, Hong, Zhang, Liying, Fu, Liang, Yin, Yongan, He, Na, Zheng, Wenjing, Xu, Zhengjin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6954073/
https://www.ncbi.nlm.nih.gov/pubmed/31923921
http://dx.doi.org/10.1371/journal.pone.0227470
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author Ma, Zuobin
Wang, Lili
Zhao, Mingzhu
Gu, Shuang
Wang, Changhua
Zhao, Jiaming
Tang, Zhiqiang
Gao, Hong
Zhang, Liying
Fu, Liang
Yin, Yongan
He, Na
Zheng, Wenjing
Xu, Zhengjin
author_facet Ma, Zuobin
Wang, Lili
Zhao, Mingzhu
Gu, Shuang
Wang, Changhua
Zhao, Jiaming
Tang, Zhiqiang
Gao, Hong
Zhang, Liying
Fu, Liang
Yin, Yongan
He, Na
Zheng, Wenjing
Xu, Zhengjin
author_sort Ma, Zuobin
collection PubMed
description Rice blast disease caused by Magnaporthe oryzae (M. oryzae) is one of the most serious diseases. Although previous research using two-dimensional gel-based proteomics to assess the proteins related to the rice blast resistance had been done, few proteins were identified. Here, we used the iTRAQ method to detect the differentially expressed proteins (DEPs) in the durable resistant rice variety Gangyuan8 (GY8) and the susceptible rice variety Lijiangxintuanheigu (LTH) in response to M. oryzae invasion, and then transcriptome sequencing was used to assist analysis A total of 193 and 672 DEPs were specifically identified in GY8 and LTH, respectively, with only 46 similarly expressed DEPs being shared by GY8 and LTH.39 DEPs involved in plant-pathogen interaction, plant hormone signal transduction, fatty acid metabolism and peroxisome biosynthesis were significantly different between compatible interaction (LTH) and incompatible interaction (GY8). Some proteins participated in peroxide signal transduction and biosynthesis was down-regulated in GY8 but up-regulated in LTH. A lot of genes encoding pathogenesis-related gene (PR), such as chitinase and glucanase, were significantly up-regulated at both the transcriptome and proteome levels at 24 hours post-inoculation in GY8, but up-regulated at the transcriptome level and down-regulated at the proteome level in LTH. Our study reveals that the pathogen-associated molecular pattern (PAMP)-triggered immunity defense system may be activated at the transcriptome level but was inhibited at the protein level in susceptible rice varieties after inoculation. The results may facilitate future studies of the molecular mechanisms of rice blast resistance.
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spelling pubmed-69540732020-01-21 iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes Ma, Zuobin Wang, Lili Zhao, Mingzhu Gu, Shuang Wang, Changhua Zhao, Jiaming Tang, Zhiqiang Gao, Hong Zhang, Liying Fu, Liang Yin, Yongan He, Na Zheng, Wenjing Xu, Zhengjin PLoS One Research Article Rice blast disease caused by Magnaporthe oryzae (M. oryzae) is one of the most serious diseases. Although previous research using two-dimensional gel-based proteomics to assess the proteins related to the rice blast resistance had been done, few proteins were identified. Here, we used the iTRAQ method to detect the differentially expressed proteins (DEPs) in the durable resistant rice variety Gangyuan8 (GY8) and the susceptible rice variety Lijiangxintuanheigu (LTH) in response to M. oryzae invasion, and then transcriptome sequencing was used to assist analysis A total of 193 and 672 DEPs were specifically identified in GY8 and LTH, respectively, with only 46 similarly expressed DEPs being shared by GY8 and LTH.39 DEPs involved in plant-pathogen interaction, plant hormone signal transduction, fatty acid metabolism and peroxisome biosynthesis were significantly different between compatible interaction (LTH) and incompatible interaction (GY8). Some proteins participated in peroxide signal transduction and biosynthesis was down-regulated in GY8 but up-regulated in LTH. A lot of genes encoding pathogenesis-related gene (PR), such as chitinase and glucanase, were significantly up-regulated at both the transcriptome and proteome levels at 24 hours post-inoculation in GY8, but up-regulated at the transcriptome level and down-regulated at the proteome level in LTH. Our study reveals that the pathogen-associated molecular pattern (PAMP)-triggered immunity defense system may be activated at the transcriptome level but was inhibited at the protein level in susceptible rice varieties after inoculation. The results may facilitate future studies of the molecular mechanisms of rice blast resistance. Public Library of Science 2020-01-10 /pmc/articles/PMC6954073/ /pubmed/31923921 http://dx.doi.org/10.1371/journal.pone.0227470 Text en © 2020 Ma et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ma, Zuobin
Wang, Lili
Zhao, Mingzhu
Gu, Shuang
Wang, Changhua
Zhao, Jiaming
Tang, Zhiqiang
Gao, Hong
Zhang, Liying
Fu, Liang
Yin, Yongan
He, Na
Zheng, Wenjing
Xu, Zhengjin
iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
title iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
title_full iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
title_fullStr iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
title_full_unstemmed iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
title_short iTRAQ proteomics reveals the regulatory response to Magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
title_sort itraq proteomics reveals the regulatory response to magnaporthe oryzae in durable resistant vs. susceptible rice genotypes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6954073/
https://www.ncbi.nlm.nih.gov/pubmed/31923921
http://dx.doi.org/10.1371/journal.pone.0227470
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