Abstract Fungal pathogens typically use secreted effector proteins to suppress host immune activators to facilitate invasion. However, there is rarely evidence supporting the idea that fungal secretory proteins contribute to pathogenesis by transactivating host genes that suppress defense. We previously found that pathogen Magnaporthe oryzae induces rice Bsr-d1 to facilitate infection and hypothesized that a fungal effector mediates this induction. Here, we report that MoSPAB1 secreted by M. oryzae directly binds to the Bsr-d1 promoter to induce its expression, facilitating pathogenesis. Amino acids 103-123 of MoSPAB1 are required for its binding to the Bsr-d1 promoter. Both MoSPAB1 and rice MYBS1 compete for binding to the Bsr-d1 promoter ...
Plants use pattern recognition receptors to defend themselves from microbial pathogens. These recept...
, the rice blast fungus, might secrete certain proteins related to plant-fungal pathogen interaction...
Abstract Background GPI-anchoring is a prevalent Glycosylphosphatidylinositol modification process o...
Secreted effectors from Magnaporthe oryzae play critical roles in the interaction with rice to facil...
Effectors are central to virulence in all pathogenic organisms and to their adaptation to specific h...
Background: Magnaporthe oryzae, the rice blast fungus, might secrete certain proteins related to pla...
Rice blast disease caused by Magnaporthe oryzae is one of the most devastating fungal diseases of ri...
To search for virulence effector genes of the rice blast fungus, Magnaporthe oryzae, we carried out ...
The ascomycete Magnaporthe oryzae causes « blast disease » affecting several cereals in particular r...
Effector proteins are key elements in plant-fungal interactions. The rice blast fungus Magnaporthe o...
Global rice production is threatened by rice blast a devastating disease caused by the filamentous f...
For successful colonization and further reproduction in host plants, pathogens need to overcome the ...
<div><h3>Background</h3><p><em>Magnaporthe oryzae</em>, the rice blast fungus, might secrete certain...
The rice blast fungus Magnaporthe oryzae generates infection structure appressoria in response to su...
Crop destruction by the hemibiotrophic rice pathogen Magnaporthe oryzae requires plant defense suppr...
Plants use pattern recognition receptors to defend themselves from microbial pathogens. These recept...
, the rice blast fungus, might secrete certain proteins related to plant-fungal pathogen interaction...
Abstract Background GPI-anchoring is a prevalent Glycosylphosphatidylinositol modification process o...
Secreted effectors from Magnaporthe oryzae play critical roles in the interaction with rice to facil...
Effectors are central to virulence in all pathogenic organisms and to their adaptation to specific h...
Background: Magnaporthe oryzae, the rice blast fungus, might secrete certain proteins related to pla...
Rice blast disease caused by Magnaporthe oryzae is one of the most devastating fungal diseases of ri...
To search for virulence effector genes of the rice blast fungus, Magnaporthe oryzae, we carried out ...
The ascomycete Magnaporthe oryzae causes « blast disease » affecting several cereals in particular r...
Effector proteins are key elements in plant-fungal interactions. The rice blast fungus Magnaporthe o...
Global rice production is threatened by rice blast a devastating disease caused by the filamentous f...
For successful colonization and further reproduction in host plants, pathogens need to overcome the ...
<div><h3>Background</h3><p><em>Magnaporthe oryzae</em>, the rice blast fungus, might secrete certain...
The rice blast fungus Magnaporthe oryzae generates infection structure appressoria in response to su...
Crop destruction by the hemibiotrophic rice pathogen Magnaporthe oryzae requires plant defense suppr...
Plants use pattern recognition receptors to defend themselves from microbial pathogens. These recept...
, the rice blast fungus, might secrete certain proteins related to plant-fungal pathogen interaction...
Abstract Background GPI-anchoring is a prevalent Glycosylphosphatidylinositol modification process o...