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Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.

Plasmodiophora brassicae, an obligate biotrophic pathogen-causing clubroot disease, can seriously affect Brassica crops worldwide, especially Chinese cabbage. Understanding the transcriptome and metabolome profiling changes during the infection of P. brassicae will provide key insights in understand...

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Autores principales: Wei, Xiaochun, Zhang, Yingying, Zhao, Yanyan, Xie, Zhengqing, Hossain, Mohammad Rashed, Yang, Shuangjuan, Shi, Gongyao, Lv, Yanyan, Wang, Zhiyong, Tian, Baoming, Su, Henan, Wei, Fang, Zhang, Xiaowei, Yuan, Yuxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8715091/
https://www.ncbi.nlm.nih.gov/pubmed/34975941
http://dx.doi.org/10.3389/fpls.2021.759623
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author Wei, Xiaochun
Zhang, Yingying
Zhao, Yanyan
Xie, Zhengqing
Hossain, Mohammad Rashed
Yang, Shuangjuan
Shi, Gongyao
Lv, Yanyan
Wang, Zhiyong
Tian, Baoming
Su, Henan
Wei, Fang
Zhang, Xiaowei
Yuan, Yuxiang
author_facet Wei, Xiaochun
Zhang, Yingying
Zhao, Yanyan
Xie, Zhengqing
Hossain, Mohammad Rashed
Yang, Shuangjuan
Shi, Gongyao
Lv, Yanyan
Wang, Zhiyong
Tian, Baoming
Su, Henan
Wei, Fang
Zhang, Xiaowei
Yuan, Yuxiang
author_sort Wei, Xiaochun
collection PubMed
description Plasmodiophora brassicae, an obligate biotrophic pathogen-causing clubroot disease, can seriously affect Brassica crops worldwide, especially Chinese cabbage. Understanding the transcriptome and metabolome profiling changes during the infection of P. brassicae will provide key insights in understanding the defense mechanism in Brassica crops. In this study, we estimated the phytohormones using targeted metabolome assays and transcriptomic changes using RNA sequencing (RNA-seq) in the roots of resistant (BrT24) and susceptible (Y510-9) plants at 0, 3, 9, and 20 days after inoculation (DAI) with P. brassicae. Differentially expressed genes (DEGs) in resistant vs. susceptible lines across different time points were identified. The weighted gene co-expression network analysis of the DEGs revealed six pathways including “Plant–pathogen interaction” and “Plant hormone signal transduction” and 15 hub genes including pathogenic type III effector avirulence factor gene (RIN4) and auxin-responsive protein (IAA16) to be involved in plants immune response. Inhibition of Indoleacetic acid, cytokinin, jasmonate acid, and salicylic acid contents and changes in related gene expression in R-line may play important roles in regulation of clubroot resistance (CR). Based on the combined metabolome profiling and hormone-related transcriptomic responses, we propose a general model of hormone-mediated defense mechanism. This study definitely enhances our current understanding and paves the way for improving CR in Brassica rapa.
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spelling pubmed-87150912021-12-30 Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L. Wei, Xiaochun Zhang, Yingying Zhao, Yanyan Xie, Zhengqing Hossain, Mohammad Rashed Yang, Shuangjuan Shi, Gongyao Lv, Yanyan Wang, Zhiyong Tian, Baoming Su, Henan Wei, Fang Zhang, Xiaowei Yuan, Yuxiang Front Plant Sci Plant Science Plasmodiophora brassicae, an obligate biotrophic pathogen-causing clubroot disease, can seriously affect Brassica crops worldwide, especially Chinese cabbage. Understanding the transcriptome and metabolome profiling changes during the infection of P. brassicae will provide key insights in understanding the defense mechanism in Brassica crops. In this study, we estimated the phytohormones using targeted metabolome assays and transcriptomic changes using RNA sequencing (RNA-seq) in the roots of resistant (BrT24) and susceptible (Y510-9) plants at 0, 3, 9, and 20 days after inoculation (DAI) with P. brassicae. Differentially expressed genes (DEGs) in resistant vs. susceptible lines across different time points were identified. The weighted gene co-expression network analysis of the DEGs revealed six pathways including “Plant–pathogen interaction” and “Plant hormone signal transduction” and 15 hub genes including pathogenic type III effector avirulence factor gene (RIN4) and auxin-responsive protein (IAA16) to be involved in plants immune response. Inhibition of Indoleacetic acid, cytokinin, jasmonate acid, and salicylic acid contents and changes in related gene expression in R-line may play important roles in regulation of clubroot resistance (CR). Based on the combined metabolome profiling and hormone-related transcriptomic responses, we propose a general model of hormone-mediated defense mechanism. This study definitely enhances our current understanding and paves the way for improving CR in Brassica rapa. Frontiers Media S.A. 2021-12-15 /pmc/articles/PMC8715091/ /pubmed/34975941 http://dx.doi.org/10.3389/fpls.2021.759623 Text en Copyright © 2021 Wei, Zhang, Zhao, Xie, Hossain, Yang, Shi, Lv, Wang, Tian, Su, Wei, Zhang and Yuan. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Wei, Xiaochun
Zhang, Yingying
Zhao, Yanyan
Xie, Zhengqing
Hossain, Mohammad Rashed
Yang, Shuangjuan
Shi, Gongyao
Lv, Yanyan
Wang, Zhiyong
Tian, Baoming
Su, Henan
Wei, Fang
Zhang, Xiaowei
Yuan, Yuxiang
Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.
title Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.
title_full Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.
title_fullStr Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.
title_full_unstemmed Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.
title_short Root Transcriptome and Metabolome Profiling Reveal Key Phytohormone-Related Genes and Pathways Involved Clubroot Resistance in Brassica rapa L.
title_sort root transcriptome and metabolome profiling reveal key phytohormone-related genes and pathways involved clubroot resistance in brassica rapa l.
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8715091/
https://www.ncbi.nlm.nih.gov/pubmed/34975941
http://dx.doi.org/10.3389/fpls.2021.759623
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