The mechanisms by which biotrophic and hemi-biotrophic fungal pathogens simultaneously subdue plant defences and sequester host nutrients are poorly understood. Using metabolite fingerprinting, we show that Magnaporthe grisea, the causal agent of rice blast disease, dynamically re-programmes host metabolism during plant colonization. Identical patterns of metabolic change occurred during M. grisea infections in barley, rice and Brachypodium distachyon. Targeted metabolite profiling by GC-MS confirmed the modulation of a conserved set of metabolites. In pre-symptomatic tissues, malate and polyamines accumulated, rather than being utilized to generate defensive reactive oxygen species, and the levels of metabolites associated with amelioratio...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
The mechanisms by which biotrophic and hemi-biotrophic fungal pathogens simultaneously subdue plant ...
A metabolomics based approach has been used to study the infection of the Hwacheong rice cultivar (O...
Metabolomic approaches were used to elucidate some key metabolite changes occurring during interacti...
Metabolomic approaches were used to elucidate some key metabolite changes occurring during interacti...
Our untargeted analysis of metabolomics throughout the course of pathogenic development gave us an u...
Biotrophic plant-microbe interactions depend on the establishment of a nutritional interface allowin...
Biotrophic plant-microbe interactions depend on the establishment of a nutritional interface allowin...
ABSTRACT The blast fungus initiates infection using a heavily melanized, dome-shaped infection struc...
The interaction between rice and the blast fungus Magnaporthe grisea is the focus of extensive studi...
Magnaporthe oryzae is a global food security threat that causes blast, the most devastating disease ...
Magnaporthe oryzae is a global food security threat that causes blast, the most devastating disease ...
Magnaporthe oryzae is a global food security threat that causes blast, the most devastating disease ...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
The mechanisms by which biotrophic and hemi-biotrophic fungal pathogens simultaneously subdue plant ...
A metabolomics based approach has been used to study the infection of the Hwacheong rice cultivar (O...
Metabolomic approaches were used to elucidate some key metabolite changes occurring during interacti...
Metabolomic approaches were used to elucidate some key metabolite changes occurring during interacti...
Our untargeted analysis of metabolomics throughout the course of pathogenic development gave us an u...
Biotrophic plant-microbe interactions depend on the establishment of a nutritional interface allowin...
Biotrophic plant-microbe interactions depend on the establishment of a nutritional interface allowin...
ABSTRACT The blast fungus initiates infection using a heavily melanized, dome-shaped infection struc...
The interaction between rice and the blast fungus Magnaporthe grisea is the focus of extensive studi...
Magnaporthe oryzae is a global food security threat that causes blast, the most devastating disease ...
Magnaporthe oryzae is a global food security threat that causes blast, the most devastating disease ...
Magnaporthe oryzae is a global food security threat that causes blast, the most devastating disease ...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...
International audienceThe interaction between rice and the blast fungus Magnaporthe grisea is the fo...