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EFS12- Book of abstracts - Contact

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Oral Presentations Abstracts<br />

Opening<br />

LECTURE AND POSTER INDEX<br />

Fusarium pathogenomics: How to become a cereal killer? 27<br />

Session 1: Fusarium - Genetics, Genomics and Systems Biology<br />

Systems biology in the yeast Saccharomyces cerevisiae: a model for all fungi? 29<br />

Comparative genomics between 3- and 15-ADON F. graminearum<br />

chemotypes 30<br />

EBR1, a master regulator shaping the transcriptional landscape <strong>of</strong> Fusarium<br />

graminearum 31<br />

The GABA shunt <strong>of</strong> Fusarium graminearum is essential for successful<br />

colonization <strong>of</strong> wheat spikes 32<br />

Fgap1-mediated response to oxidative stress in trichothecene-producing<br />

Fusarium graminearum. 33<br />

Using redox-proteomics to identify targets <strong>of</strong> NADPH oxidase-generated<br />

reactive oxygen species in Fusarium graminearum. 34<br />

Eukaryotic translation initiation factor 5A regulates reactive oxygen species,<br />

DON, and virulence <strong>of</strong> Fusarium graminearum and its activation is essential<br />

for cell viability. 35<br />

Transcriptomic pr<strong>of</strong>iling <strong>of</strong> fumonisin B biosynthesis by Fusarium verticillioides 36<br />

Molecular network <strong>of</strong> nitrate sensing and assimilation in Fusarium fujikuroi 37<br />

The linoleate synthase gene lds1 thoroughly affects conidiogenesis and<br />

fumonisin synthesis in Fusarium verticillioides 38<br />

Session 2: Secondary Metabolites - Biochemistry, Biosynthesis, Feed<br />

and Food Safety<br />

Metabolisation <strong>of</strong> deoxynivalenol in planta: Old and new compounds and their<br />

role in food safety 39<br />

Cellular adaptations for trichothecene biosynthesis in Fusarium graminearum 40<br />

Ecological role <strong>of</strong> mycotoxins produced by Fusarium graminearum 41<br />

Elucidation <strong>of</strong> the F. graminearum butenolide biosynthetic gene cluster 42<br />

Fusarium graminearum in depth: a novel method to identify new metabolites<br />

by isotopic labelling and high resolution mass spectrometry 43<br />

13

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