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Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution

Genome dynamics of pathogenic organisms are driven by pathogen and host co-evolution, in which pathogen genomes are shaped to overcome stresses imposed by hosts with various genetic backgrounds through generation of a variety of isolates. This same principle applies to the rice blast pathogen Magnap...

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Autores principales: Dong, Yanhan, Li, Ying, Zhao, Miaomiao, Jing, Maofeng, Liu, Xinyu, Liu, Muxing, Guo, Xianxian, Zhang, Xing, Chen, Yue, Liu, Yongfeng, Liu, Yanhong, Ye, Wenwu, Zhang, Haifeng, Wang, Yuanchao, Zheng, Xiaobo, Wang, Ping, Zhang, Zhengguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4383609/
https://www.ncbi.nlm.nih.gov/pubmed/25837042
http://dx.doi.org/10.1371/journal.ppat.1004801
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author Dong, Yanhan
Li, Ying
Zhao, Miaomiao
Jing, Maofeng
Liu, Xinyu
Liu, Muxing
Guo, Xianxian
Zhang, Xing
Chen, Yue
Liu, Yongfeng
Liu, Yanhong
Ye, Wenwu
Zhang, Haifeng
Wang, Yuanchao
Zheng, Xiaobo
Wang, Ping
Zhang, Zhengguang
author_facet Dong, Yanhan
Li, Ying
Zhao, Miaomiao
Jing, Maofeng
Liu, Xinyu
Liu, Muxing
Guo, Xianxian
Zhang, Xing
Chen, Yue
Liu, Yongfeng
Liu, Yanhong
Ye, Wenwu
Zhang, Haifeng
Wang, Yuanchao
Zheng, Xiaobo
Wang, Ping
Zhang, Zhengguang
author_sort Dong, Yanhan
collection PubMed
description Genome dynamics of pathogenic organisms are driven by pathogen and host co-evolution, in which pathogen genomes are shaped to overcome stresses imposed by hosts with various genetic backgrounds through generation of a variety of isolates. This same principle applies to the rice blast pathogen Magnaporthe oryzae and the rice host; however, genetic variations among different isolates of M. oryzae remain largely unknown, particularly at genome and transcriptome levels. Here, we applied genomic and transcriptomic analytical tools to investigate M. oryzae isolate 98-06 that is the most aggressive in infection of susceptible rice cultivars. A unique 1.4 Mb of genomic sequences was found in isolate 98-06 in comparison to reference strain 70-15. Genome-wide expression profiling revealed the presence of two critical expression patterns of M. oryzae based on 64 known pathogenicity-related (PaR) genes. In addition, 134 candidate effectors with various segregation patterns were identified. Five tested proteins could suppress BAX-mediated programmed cell death in Nicotiana benthamiana leaves. Characterization of isolate-specific effector candidates Iug6 and Iug9 and PaR candidate Iug18 revealed that they have a role in fungal propagation and pathogenicity. Moreover, Iug6 and Iug9 are located exclusively in the biotrophic interfacial complex (BIC) and their overexpression leads to suppression of defense-related gene expression in rice, suggesting that they might participate in biotrophy by inhibiting the SA and ET pathways within the host. Thus, our studies identify novel effector and PaR proteins involved in pathogenicity of the highly aggressive M. oryzae field isolate 98-06, and reveal molecular and genomic dynamics in the evolution of M. oryzae and rice host interactions.
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spelling pubmed-43836092015-04-09 Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution Dong, Yanhan Li, Ying Zhao, Miaomiao Jing, Maofeng Liu, Xinyu Liu, Muxing Guo, Xianxian Zhang, Xing Chen, Yue Liu, Yongfeng Liu, Yanhong Ye, Wenwu Zhang, Haifeng Wang, Yuanchao Zheng, Xiaobo Wang, Ping Zhang, Zhengguang PLoS Pathog Research Article Genome dynamics of pathogenic organisms are driven by pathogen and host co-evolution, in which pathogen genomes are shaped to overcome stresses imposed by hosts with various genetic backgrounds through generation of a variety of isolates. This same principle applies to the rice blast pathogen Magnaporthe oryzae and the rice host; however, genetic variations among different isolates of M. oryzae remain largely unknown, particularly at genome and transcriptome levels. Here, we applied genomic and transcriptomic analytical tools to investigate M. oryzae isolate 98-06 that is the most aggressive in infection of susceptible rice cultivars. A unique 1.4 Mb of genomic sequences was found in isolate 98-06 in comparison to reference strain 70-15. Genome-wide expression profiling revealed the presence of two critical expression patterns of M. oryzae based on 64 known pathogenicity-related (PaR) genes. In addition, 134 candidate effectors with various segregation patterns were identified. Five tested proteins could suppress BAX-mediated programmed cell death in Nicotiana benthamiana leaves. Characterization of isolate-specific effector candidates Iug6 and Iug9 and PaR candidate Iug18 revealed that they have a role in fungal propagation and pathogenicity. Moreover, Iug6 and Iug9 are located exclusively in the biotrophic interfacial complex (BIC) and their overexpression leads to suppression of defense-related gene expression in rice, suggesting that they might participate in biotrophy by inhibiting the SA and ET pathways within the host. Thus, our studies identify novel effector and PaR proteins involved in pathogenicity of the highly aggressive M. oryzae field isolate 98-06, and reveal molecular and genomic dynamics in the evolution of M. oryzae and rice host interactions. Public Library of Science 2015-04-02 /pmc/articles/PMC4383609/ /pubmed/25837042 http://dx.doi.org/10.1371/journal.ppat.1004801 Text en © 2015 Dong 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dong, Yanhan
Li, Ying
Zhao, Miaomiao
Jing, Maofeng
Liu, Xinyu
Liu, Muxing
Guo, Xianxian
Zhang, Xing
Chen, Yue
Liu, Yongfeng
Liu, Yanhong
Ye, Wenwu
Zhang, Haifeng
Wang, Yuanchao
Zheng, Xiaobo
Wang, Ping
Zhang, Zhengguang
Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution
title Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution
title_full Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution
title_fullStr Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution
title_full_unstemmed Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution
title_short Global Genome and Transcriptome Analyses of Magnaporthe oryzae Epidemic Isolate 98-06 Uncover Novel Effectors and Pathogenicity-Related Genes, Revealing Gene Gain and Lose Dynamics in Genome Evolution
title_sort global genome and transcriptome analyses of magnaporthe oryzae epidemic isolate 98-06 uncover novel effectors and pathogenicity-related genes, revealing gene gain and lose dynamics in genome evolution
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4383609/
https://www.ncbi.nlm.nih.gov/pubmed/25837042
http://dx.doi.org/10.1371/journal.ppat.1004801
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