AbstractSclerotinia sclerotiorum is one of the most devastating necrotrophic phytopathogens. Virulence of the hyphae of this fungus at different ages varies significantly. Molecular mechanisms underlying this functional distinction are largely unknown. In this study, we confirmed the effect of mycelial culture time/age on virulence in two host plants and elucidated its molecular and morphological basis. The virulence of the S. sclerotiorum mycelia in plants dramatically decreases along with the increase of the mycelial age. Three-day-old mycelia lost the virulence in plants. Comparative proteomics analyses revealed that metabolism pathways were comprehensively reprogrammed to suppress the oxalic acid (OA) accumulation in old mycelia. The ox...
MEDLINE® is the source for the citation and abstract of this record.Oxalic acid is a virulence facto...
Fungi in the genus Sclerotinia include some of the most devastating plant pathogens known. Oxalic ac...
AMS2, amulticopy suppressor for the cpn1 (SpCENP-A) mutant, functions to specifically regulate histo...
AbstractSclerotinia sclerotiorum is one of the most devastating necrotrophic phytopathogens. Virulen...
Sclerotinia sclerotiorum is a necrotrophic ascomycete fungus with an extremely broad host range. Thi...
Sclerotinia sclerotiorum is a necrotrophic ascomycete fungus with an extremely broad host range. Thi...
Sclerotinia sclerotiorum pathogenesis requires the accumulation of high levels of oxalic acid (OA). ...
Sclerotinia sclerotiorum is a necrotrophic ascomycete fungus with an extremely broad host range. Thi...
Plant programmed cell death (PCD) is an essential process in plant-pathogen interactions. Importantl...
The phytopathogenic fungi Sclerotinia sclerotiorum, causative of Sclerotinia stem rot of soybean was...
Sclerotinia sclerotiorum is a destructive ascomycete plant pathogen with worldwide distribution. Ext...
S. sclerotiorum has been studied for over 100 years. Despite this, a definite resistance mechanism t...
S. sclerotiorum has been studied for over 100 years. Despite this, a definite resistance mechanism t...
The Sclerotiniaceae (Ascomycotina, Leotiomycetes) is a relatively recently evolved lineage of necrot...
The objective of this research project was to provide a basis for enhancing the storage and field pe...
MEDLINE® is the source for the citation and abstract of this record.Oxalic acid is a virulence facto...
Fungi in the genus Sclerotinia include some of the most devastating plant pathogens known. Oxalic ac...
AMS2, amulticopy suppressor for the cpn1 (SpCENP-A) mutant, functions to specifically regulate histo...
AbstractSclerotinia sclerotiorum is one of the most devastating necrotrophic phytopathogens. Virulen...
Sclerotinia sclerotiorum is a necrotrophic ascomycete fungus with an extremely broad host range. Thi...
Sclerotinia sclerotiorum is a necrotrophic ascomycete fungus with an extremely broad host range. Thi...
Sclerotinia sclerotiorum pathogenesis requires the accumulation of high levels of oxalic acid (OA). ...
Sclerotinia sclerotiorum is a necrotrophic ascomycete fungus with an extremely broad host range. Thi...
Plant programmed cell death (PCD) is an essential process in plant-pathogen interactions. Importantl...
The phytopathogenic fungi Sclerotinia sclerotiorum, causative of Sclerotinia stem rot of soybean was...
Sclerotinia sclerotiorum is a destructive ascomycete plant pathogen with worldwide distribution. Ext...
S. sclerotiorum has been studied for over 100 years. Despite this, a definite resistance mechanism t...
S. sclerotiorum has been studied for over 100 years. Despite this, a definite resistance mechanism t...
The Sclerotiniaceae (Ascomycotina, Leotiomycetes) is a relatively recently evolved lineage of necrot...
The objective of this research project was to provide a basis for enhancing the storage and field pe...
MEDLINE® is the source for the citation and abstract of this record.Oxalic acid is a virulence facto...
Fungi in the genus Sclerotinia include some of the most devastating plant pathogens known. Oxalic ac...
AMS2, amulticopy suppressor for the cpn1 (SpCENP-A) mutant, functions to specifically regulate histo...