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We performed ChIP-seq of histone modifications and RNA-seq in WT and kmt6 mutant Fusarium graminearum grown in high and low nitrogen conditions. Two replicates of RNA seq for WT and kmt6 strains at high and low nitrogen. Four histone modification ChIPs in WT and kmt6 mutant strains at high and low n...
ORGANISM(S): Fusarium graminearum 
Fusarium graminearum and F. verticillioides are devastating cereal pathogens with very different life history and ecological characteristics. F. graminearum is homothallic, and sexual spores are an important component of its life cycle, responsible for disease initiation. F. verticilloides is hetero...
ORGANISM(S): Fusarium verticillioides 
Using a 3'-tiling microarray covering the whole F. graminearum genes, we carried out genome-wide expression analyses of both a wild type and a FgVelB deletion strainn of F. graminearum at a sexual stage (3 days after perithecial induction on carrot agar) Our study is the first report elucidating re...
ORGANISM(S): Gibberella zeae 
Fusarium graminearum is a major pathogen of Fusarium head blight in wheat, barley, and rice, as well as ear rot and stalk rot in maize. Regulatory Factor X (RFX) transcription factors are well-conserved in animals and fungi, but their functions are diverse, ranging from DNA-damage response to ciliar...
ORGANISM(S): Fusarium graminearum 
In this study, RNA-seq based comparative transcriptome analysis was used to study the response between Fusarium graminearum and Ustilago maydis to different growth conditions. RNA-seq libraries were generated from fungal filaments growing in culture (complete medium) and from infected maize silk. Th...
ORGANISM(S): Fusarium graminearum 
Fusarium graminearum (teleomorph Gibberella zeae) is a prominent pathogen that infects major cereal crops, such as wheat, barley, and maize. Conidiogenesis had been intensively studied in Aspergillus nidulans and regulatory pathway genes have been known to regulate conidiogenesis in stage specific m...
ORGANISM(S): Fusarium graminearum 
Barley cv. Morex inoculated with Fusarium graminearum (isolate Butte 86) or water (mock). Sampled at 24, 48, 72, 96 and 144 hours after treatment. ****[PLEXdb(http://www.plexdb.org) has submitted this series at GEO on behalf of the original contributor, Jayanand Boddu. The equivalent experiment ...
ORGANISM(S): Hordeum vulgare 
Organ specific microarray analysis were performed to identify genes responding to Fusarium graminearum inoculation in specific organs of wheat spikes.
ORGANISM(S): Triticum aestivum 

Non-targeted metabolomics was performed to investigate the metabolic differences between fertile and sterile wheat anthers, and to identify anther-derived metabolites that promote Fusarium head blight infection. Wheat anthers (fertile, sterile, and fertile anthers co-cultured with Fusarium gramin...

2026-06-23 | MTBLS14831 | MetaboLights
The plant pathogenic fungus Fusarium graminearum (Fgr) creates economic and health risks in cereals agriculture. Fgr causes head blight (or scab) of wheat and stalk rot of corn, reducing yield, degrading grain quality and polluting downstream food products with mycotoxins. Fungal plant pathogens mus...
ORGANISM(S): Gibberella zeae (strain PH-1 / ATCC MYA-4620 / FGSC 9075 / NRRL 31084) (Wheat head blight fungus) (Fusarium graminearum) 
2015-10-06 | PXD002786 | Pride
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