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A fungal pathogen induces systemic susceptibility and systemic shifts in wheat metabolome and microbiome composition
by
Hassani, M. Amine
, Reim, Ekaterina
, Stukenbrock, Eva H.
, Szymczak, Silke
, Schwarz, Karin
, Demetrowitsch, Tobias J.
, Haueisen, Janine
, Franke, Andre
, Lübbers, Luisa
, Seybold, Heike
, Rühlemann, Malte
in
631/326/193
/ 631/326/2565
/ 631/449/2169
/ 631/449/2667
/ 64
/ Ascomycota - metabolism
/ Ascomycota - pathogenicity
/ Benzoxazines - metabolism
/ Biosynthetic Pathways
/ Coinfection
/ Concurrent infection
/ Crop yield
/ Cultivars
/ Food production
/ Fungi
/ Host-Pathogen Interactions - immunology
/ Host-Pathogen Interactions - physiology
/ Humanities and Social Sciences
/ Immune response
/ Leaves
/ Metabolites
/ Metabolome
/ Metabolomics
/ Microbial activity
/ Microbiomes
/ Microbiota - physiology
/ Microorganisms
/ multidisciplinary
/ Pathogens
/ Plant Diseases - microbiology
/ Plant Immunity - physiology
/ Plant Leaves - microbiology
/ Plant metabolism
/ Science
/ Science (multidisciplinary)
/ Secondary Metabolism
/ Triticum - immunology
/ Triticum - microbiology
/ Wheat
/ Zymoseptoria tritici
2020
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A fungal pathogen induces systemic susceptibility and systemic shifts in wheat metabolome and microbiome composition
by
Hassani, M. Amine
, Reim, Ekaterina
, Stukenbrock, Eva H.
, Szymczak, Silke
, Schwarz, Karin
, Demetrowitsch, Tobias J.
, Haueisen, Janine
, Franke, Andre
, Lübbers, Luisa
, Seybold, Heike
, Rühlemann, Malte
in
631/326/193
/ 631/326/2565
/ 631/449/2169
/ 631/449/2667
/ 64
/ Ascomycota - metabolism
/ Ascomycota - pathogenicity
/ Benzoxazines - metabolism
/ Biosynthetic Pathways
/ Coinfection
/ Concurrent infection
/ Crop yield
/ Cultivars
/ Food production
/ Fungi
/ Host-Pathogen Interactions - immunology
/ Host-Pathogen Interactions - physiology
/ Humanities and Social Sciences
/ Immune response
/ Leaves
/ Metabolites
/ Metabolome
/ Metabolomics
/ Microbial activity
/ Microbiomes
/ Microbiota - physiology
/ Microorganisms
/ multidisciplinary
/ Pathogens
/ Plant Diseases - microbiology
/ Plant Immunity - physiology
/ Plant Leaves - microbiology
/ Plant metabolism
/ Science
/ Science (multidisciplinary)
/ Secondary Metabolism
/ Triticum - immunology
/ Triticum - microbiology
/ Wheat
/ Zymoseptoria tritici
2020
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A fungal pathogen induces systemic susceptibility and systemic shifts in wheat metabolome and microbiome composition
by
Hassani, M. Amine
, Reim, Ekaterina
, Stukenbrock, Eva H.
, Szymczak, Silke
, Schwarz, Karin
, Demetrowitsch, Tobias J.
, Haueisen, Janine
, Franke, Andre
, Lübbers, Luisa
, Seybold, Heike
, Rühlemann, Malte
in
631/326/193
/ 631/326/2565
/ 631/449/2169
/ 631/449/2667
/ 64
/ Ascomycota - metabolism
/ Ascomycota - pathogenicity
/ Benzoxazines - metabolism
/ Biosynthetic Pathways
/ Coinfection
/ Concurrent infection
/ Crop yield
/ Cultivars
/ Food production
/ Fungi
/ Host-Pathogen Interactions - immunology
/ Host-Pathogen Interactions - physiology
/ Humanities and Social Sciences
/ Immune response
/ Leaves
/ Metabolites
/ Metabolome
/ Metabolomics
/ Microbial activity
/ Microbiomes
/ Microbiota - physiology
/ Microorganisms
/ multidisciplinary
/ Pathogens
/ Plant Diseases - microbiology
/ Plant Immunity - physiology
/ Plant Leaves - microbiology
/ Plant metabolism
/ Science
/ Science (multidisciplinary)
/ Secondary Metabolism
/ Triticum - immunology
/ Triticum - microbiology
/ Wheat
/ Zymoseptoria tritici
2020
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A fungal pathogen induces systemic susceptibility and systemic shifts in wheat metabolome and microbiome composition
Journal Article
A fungal pathogen induces systemic susceptibility and systemic shifts in wheat metabolome and microbiome composition
2020
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Overview
Yield losses caused by fungal pathogens represent a major threat to global food production. One of the most devastating fungal wheat pathogens is
Zymoseptoria tritici
. Despite the importance of this fungus, the underlying mechanisms of plant–pathogen interactions are poorly understood. Here we present a conceptual framework based on coinfection assays, comparative metabolomics, and microbiome profiling to study the interaction of
Z. tritici
in susceptible and resistant wheat. We demonstrate that
Z. tritici
suppresses the production of immune-related metabolites in a susceptible cultivar. Remarkably, this fungus-induced immune suppression spreads within the leaf and even to other leaves, a phenomenon that we term “systemic induced susceptibility”. Using a comparative metabolomics approach, we identify defense-related biosynthetic pathways that are suppressed and induced in susceptible and resistant cultivars, respectively. We show that these fungus-induced changes correlate with changes in the wheat leaf microbiome. Our findings suggest that immune suppression by this hemibiotrophic pathogen impacts specialized plant metabolism, alters its associated microbial communities, and renders wheat vulnerable to further infections.
The fungal plant pathogen
Zymoseptoria tritici
is a major threat to wheat yield. Here Seybold et al. show that
Z. tritici
can suppress immune responses not only in infected tissue but also on other leaves, a phenomenon termed “systemic induced susceptibility” that is correlated with systemic changes in metabolite accumulation.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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