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Transcriptome analysis reveals the host selection fitness mechanisms of the Rhizoctonia solani AG1IA pathogen
by
Li, Shuangcheng
, Liang, Yueyang
, Zheng, Aiping
, Zhu, Jianqing
, Wang, Lingxia
, Li, Ping
, He, Jiayu
, Zhang, Danhua
, Fei, Binghong
, Xia, Yuan
, Zhou, Menglin
, Pan, Linxiu
in
38/77
/ 45/91
/ 631/326/193/2538
/ 631/326/193/2542
/ Alternative Splicing
/ Ecotype
/ Ecotypes
/ Fitness
/ Gene expression
/ Gene Expression Regulation, Fungal
/ Genetic Fitness
/ Genomes
/ Host preferences
/ Host range
/ Host selection
/ Host Specificity
/ Humanities and Social Sciences
/ MAP kinase
/ Metabolites
/ multidisciplinary
/ Pathogenicity
/ Pathogens
/ Rhizoctonia
/ Rhizoctonia - genetics
/ Rhizoctonia - pathogenicity
/ Rhizoctonia solani
/ Rhophitulus solani
/ Science
/ Science (multidisciplinary)
/ Sheath blight
/ Soybeans
/ Transcriptome
2017
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Transcriptome analysis reveals the host selection fitness mechanisms of the Rhizoctonia solani AG1IA pathogen
by
Li, Shuangcheng
, Liang, Yueyang
, Zheng, Aiping
, Zhu, Jianqing
, Wang, Lingxia
, Li, Ping
, He, Jiayu
, Zhang, Danhua
, Fei, Binghong
, Xia, Yuan
, Zhou, Menglin
, Pan, Linxiu
in
38/77
/ 45/91
/ 631/326/193/2538
/ 631/326/193/2542
/ Alternative Splicing
/ Ecotype
/ Ecotypes
/ Fitness
/ Gene expression
/ Gene Expression Regulation, Fungal
/ Genetic Fitness
/ Genomes
/ Host preferences
/ Host range
/ Host selection
/ Host Specificity
/ Humanities and Social Sciences
/ MAP kinase
/ Metabolites
/ multidisciplinary
/ Pathogenicity
/ Pathogens
/ Rhizoctonia
/ Rhizoctonia - genetics
/ Rhizoctonia - pathogenicity
/ Rhizoctonia solani
/ Rhophitulus solani
/ Science
/ Science (multidisciplinary)
/ Sheath blight
/ Soybeans
/ Transcriptome
2017
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Transcriptome analysis reveals the host selection fitness mechanisms of the Rhizoctonia solani AG1IA pathogen
by
Li, Shuangcheng
, Liang, Yueyang
, Zheng, Aiping
, Zhu, Jianqing
, Wang, Lingxia
, Li, Ping
, He, Jiayu
, Zhang, Danhua
, Fei, Binghong
, Xia, Yuan
, Zhou, Menglin
, Pan, Linxiu
in
38/77
/ 45/91
/ 631/326/193/2538
/ 631/326/193/2542
/ Alternative Splicing
/ Ecotype
/ Ecotypes
/ Fitness
/ Gene expression
/ Gene Expression Regulation, Fungal
/ Genetic Fitness
/ Genomes
/ Host preferences
/ Host range
/ Host selection
/ Host Specificity
/ Humanities and Social Sciences
/ MAP kinase
/ Metabolites
/ multidisciplinary
/ Pathogenicity
/ Pathogens
/ Rhizoctonia
/ Rhizoctonia - genetics
/ Rhizoctonia - pathogenicity
/ Rhizoctonia solani
/ Rhophitulus solani
/ Science
/ Science (multidisciplinary)
/ Sheath blight
/ Soybeans
/ Transcriptome
2017
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Transcriptome analysis reveals the host selection fitness mechanisms of the Rhizoctonia solani AG1IA pathogen
Journal Article
Transcriptome analysis reveals the host selection fitness mechanisms of the Rhizoctonia solani AG1IA pathogen
2017
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Overview
Rhizoctonia solani
AG1IA is a major generalist pathogen that causes sheath blight. Its genome, which was the first to be sequenced from the
Rhizoctonia
genus, may serve as a model for studying pathogenic mechanisms. To explore the pathogen-host fitness mechanism of sheath-blight fungus, a comprehensive comparative transcriptome ecotype analysis of
R. solani
AG1IA isolated from rice, soybean and corn during infection was performed. Special characteristics in gene expression, gene ontology terms and expression of pathogenesis-associated genes, including genes encoding secreted proteins, candidate effectors, hydrolases, and proteins involved in secondary metabolite production and the MAPK pathway, were revealed. Furthermore, as an important means of pathogenic modulation, diverse alternative splicing of key pathogenic genes in
Rhizoctonia solani
AG1IA during infections of the abovementioned hosts was uncovered for the first time. These important findings of key factors in the pathogenicity of
R. solani
AG1IA ecotypes during infection of various hosts explain host preference and provide novel insights into the pathogenic mechanisms and host-pathogen selection. Furthermore, they provide information on the fitness of
Rhizoctonia
, a severe pathogen with a wide host range.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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