The diversity and structure of Magnaporthe oryzae populations was described in many countries during the last 20 years. The expected clonal structure of the populations has been illustrated in various studies. The relationship between the genetic structure, deduced from neutral molecular markers, and the pathotypic structure, showed a range of situations varying from a one lineage-one race to almost a one genotype-one race correspondence. These studies have helped in choosing appropriate isolates for genetic characterization and to propose strategies to breed for durable resistance to blast disease. This background information is the basis to understand rice blast population evolution. But, to date, our understanding of how new virulent rac...
BGPI : équipe 5International audiencePopulation genomic structure represents a key observable featur...
The rice blast fungus Magnaporthe oryzae is the most damaging rice pathogen, and a textbook example ...
Previous studies of European populations of the blast fungus (Magnaporthe oryzae) have shown the exi...
UMR BGPI - Equipe 4National audienceThe diversity and structure of Magnaporthe oryzae populations wa...
The clonal structure of Magnaporthe oryzae populations was observed in various countries. This infor...
The diversity and structure of populations of Magnaporthe grisea, the main fungal pathogen of rice, ...
Magnaporthe oryzae is a heterothallic fungus reproducing clonally in the field. The diversity and st...
Inferring invasion routes and identifying reservoirs of diversity of plant pathogens are essential t...
The rice blast fungus Magnaporthe oryzae (syn., Pyricularia oryzae) is both a threat to global food ...
Inferring invasion routes and identifying reservoirs of diversity of plant pathogens are essential i...
International audienceMany species of fungal plant pathogens coexist as multiple lineages on the sam...
BGPI : équipe 5National audiencePopulation genomic structure represents a key observable feature of ...
The rice blast fungus Magnaporthe oryzae (syn. Pyricularia oryzae ) is both a threat to global food ...
Equipe 5 : Biologie Evolutive des Champignons Phytopathogènes (BECphy)Natural variation in plant pat...
BGPI : équipe 5International audiencePopulation genomic structure represents a key observable featur...
The rice blast fungus Magnaporthe oryzae is the most damaging rice pathogen, and a textbook example ...
Previous studies of European populations of the blast fungus (Magnaporthe oryzae) have shown the exi...
UMR BGPI - Equipe 4National audienceThe diversity and structure of Magnaporthe oryzae populations wa...
The clonal structure of Magnaporthe oryzae populations was observed in various countries. This infor...
The diversity and structure of populations of Magnaporthe grisea, the main fungal pathogen of rice, ...
Magnaporthe oryzae is a heterothallic fungus reproducing clonally in the field. The diversity and st...
Inferring invasion routes and identifying reservoirs of diversity of plant pathogens are essential t...
The rice blast fungus Magnaporthe oryzae (syn., Pyricularia oryzae) is both a threat to global food ...
Inferring invasion routes and identifying reservoirs of diversity of plant pathogens are essential i...
International audienceMany species of fungal plant pathogens coexist as multiple lineages on the sam...
BGPI : équipe 5National audiencePopulation genomic structure represents a key observable feature of ...
The rice blast fungus Magnaporthe oryzae (syn. Pyricularia oryzae ) is both a threat to global food ...
Equipe 5 : Biologie Evolutive des Champignons Phytopathogènes (BECphy)Natural variation in plant pat...
BGPI : équipe 5International audiencePopulation genomic structure represents a key observable featur...
The rice blast fungus Magnaporthe oryzae is the most damaging rice pathogen, and a textbook example ...
Previous studies of European populations of the blast fungus (Magnaporthe oryzae) have shown the exi...