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Botrytis cinerea is a necrotrophic pathogen that induces host cell death, causing substantial economic losses in agriculture. In this study, we show that functional depletion of INOSITOL AUXOTROPHY 80 (INO80), a nuclear factor involved in local chromatin remodeling, reduces the susceptibility of ...

2026-03-09 | MTBLS12467 | MetaboLights
Botrytis cinerea Genome sequencing and assembly
Botrytis cinerea, the causal agent of the gray mold, is one of the most important phytopathogenic fungi due to its ability to affect more than 1400 cultivable vegetal species. Signal transduction cascades mediate the dialogue between the environment, the plant and the fungus, which is essential in t...
ORGANISM(S): Botryotinia fuckeliana (strain B05.10) (Noble rot fungus) (Botrytis cinerea) 
2022-02-17 | PXD028958 | Pride
The Arabidopsis thaliana mutant wrky33 is highly susceptible to the necrotrophic fungus Botrytis cinerea. Comparing the expression profiles of B. cinerea-infected wrky33 and WT plants we identified 2765 differentially expressed genes dependent on WRKY33, of which 1675 were up-regulated in the mutant...
ORGANISM(S): Arabidopsis thaliana 
Essential oils (EOs) have been demonstrated as efficacious against B. cinerea. However, the underpinning enzymatic and proteomic mechanism for these inhibitory effects is not fully understood. This study investigated the effects of lemon (Le) and lemongrass (Lg) EOs (individually and in combination)...
ORGANISM(S): Botryotinia fuckeliana (Noble rot fungus) (Botrytis cinerea) Botrytis cinerea 
2023-01-18 | PXD038894 | Pride
Transcriptional profiling of Arabidopsis leaves comparing mock-treated leaves with Botrytis cinerea infected leaves over a time-course (12 and 24 hrs). Two-condition experiment, Mock-treated vs infected leaves. Biological replicates: 5 Mock-treated, 5 infected, independently grown and harvested. One...
ORGANISM(S): Arabidopsis thaliana 
Botrytis cinerea is the causing agent of grey mould on hundreds of plants cultivated in fields, tunnels and greenhouses worldwide. Considering the central role of secretion in the necrotrophic interaction between the fungus and its host plants, non conventional secre-tion was explored through the se...
ORGANISM(S): Botryotinia fuckeliana (Noble rot fungus) (Botrytis cinerea) 
2023-05-02 | PXD035766 | Pride
This SuperSeries is composed of the following subset Series: GSE29642: Arabidopsis defense against Botrytis cinerea: chronology and regulation deciphered by high-resolution temporal transcriptomic analysis (time series) GSE39597: Arabidopsis defense against Botrytis cinerea: chronology and regulatio...
ORGANISM(S): Arabidopsis thaliana 
The cell wall is among the first plant structures encountered by necrotrophic fungal pathogens, such as Botrytis cinerea. The composition of plant cell walls varies depending on the species, type of cell or tissue, and stage of development. Cell walls are important reservoirs of energy-rich sugars f...
ORGANISM(S): Vitis vinifera 
Lysinelactylation , a recently discovered post-translational modification, plays a key role in the regulation of diverse cellular processes. Botrytis cinerea is a destructive necrotrophic fungal pathogen distributed worldwide with broad ranging hosts. However, the functions of Lysine lactylation ar...
ORGANISM(S): Trypanosoma brucei 
2020-09-07 | PXD020746 | Pride
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