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We evaluated the effect of a 2h pre-treatment at 38°C on the response of Arabidopsis thaliana 6d-old seedlings to a 2h heat shock at 43°C applied 24 h later. A shotgun proteomics approach using total protein extracts was used to compare the proteome of seedlings from four type of samples, using 4 re...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2024-04-02 | PXD045392 | Pride
Increased protein solubility contributes to heat priming of the plant pathogenic fungus Botrytis cinerea
Effects of heat priming applied to the first generation on tolerance of the successive generation to post-anthesis high temperature stress were investigated. Compared with the progeny of non-heat primed plants (NH), the progeny of heat-primed plants (PH) presented higher grain yield, leaf photosynth...
ORGANISM(S): Triticum aestivum 
Botrytis cinerea causes grey mold disease in leading crop plants. The disease develops only at cool temperatures, but the fungus remains viable in warm climates and can survive periods of extreme heat. We discovered a strong heat priming effect in which the exposure of B. cinerea to moderately high ...
ORGANISM(S): Botryotinia fuckeliana (strain B05.10) (Noble rot fungus) (Botrytis cinerea) 
2023-06-18 | PXD037173 | Pride
Botrytis cinerea causes grey mold disease in leading crop plants. The disease develops only at cool temperatures, but the fungus remains viable in warm climates and can survive periods of extreme heat. We discovered a strong heat priming effect in which the exposure of B. cinerea to moderately high ...
ORGANISM(S): Botrytis cinerea 
2023-06-18 | GSE216541 | GEO
Effects of heat priming applied to the first generation on tolerance of the successive generation to post-anthesis high temperature stress were investigated. Compared with the progeny of non-heat primed plants (NH), the progeny of heat-primed plants (PH) presented higher grain yield, leaf photosynth...
ORGANISM(S): Triticum aestivum 
2016-03-17 | GSE79273 | GEO
The model describes cellular adaptation to proteotoxic stress through four dynamical variables: protein damage, cell survival, molecular chaperone mRNA and molecular chaperone protein. Heat increases the production of misfolded proteins, which are either degraded or repaired by chaperones. Accumulat...
2026-09-02 | MODEL2608180005 | BioModels
Group-living individuals experience immense risk of disease transmission and parasite infection. In social and in some non-social insects, disease control with immunomodulation arises not only via individual immune defenses, but also via infochemicals such as contact cues and (defensive) volatiles t...
2023-04-24 | MTBLS2277 | MetaboLights
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