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Mycotoxin Research|April 23, 2013
Mycotoxin production in a carbendazim-resistant strain of fusarium sporotrichioidesJ P D'Mello, A M Macdonald, L BriereMycotoxin Research|April 23, 2013
Natural occurrence of deoxynivalenol, 3-acetyl-deoxynivalenol, 15-acetyl-deoxynivalenol, nivalenol, 4,7-dideoxynivalenol, and zearalenone in polish wheatJ Perkowski, R Plattner, P Goliński, et al.Mycotoxin Research|April 23, 2013
Evaluation of trichothecene and nontrichothecene mycotoxins produced byFusarium in soybeansH Abbas, U BoschMycotoxin Research|April 23, 2013
Evaluation of cultivar susceptibility and storage periods towards aflatoxin B1 contamination on pistachio nutsFatma Bensassi, Ali Rhouma, Mohamed Ghrab, et al.Mycotoxin Research|April 23, 2013
Simple and efficient cell disruption of extremely small quantities of mycelium of phytopathogenic mycotoxin-producing moulds for quantitative extraction of genomic DNAV Saß, J Milles, J Krämer, et al.Mycotoxin Research|April 23, 2013
An innovative LC/MS approach applied to the determination of zeralenone in maize: Alternate Isotope-coded Derivatization Assay (AIDA)C Dall'asta, S Sforza, A Moseriti, et al.Mycotoxin Research|April 23, 2013
Ultrastructural and cytochemical studies on the infection of wheat spikes byFusarium culmorum as well as on degradation of cell wall components and localization of mycotoxins in the host tissueZ Kang, H BuchenauerMycotoxin Research|April 23, 2013
Deoxynivalenol in grain and grain productsH Taschan, G Puchtinger, U Waller, et al.Mycotoxin Research|April 23, 2013
Development of deoxynivalenol contents in relation to the PCR detection of potentially trichothecene producingFusarium spp. during storage of wheatB Birzele, A Prange, J Schönling, et al.Pageof 126