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fusarium
The cell extract showed activity against Candida albicans, Aspergillus niger, Trichoderma viridae, Fusarium moniliforme and Alternaria brassicicola.
      
Biological Evaluation of a Secondary Metabolite, 9-O-methylfusarubin, from Fusarium oxysporum
      
urophylla can inhibit the proliferation of pathogenic fungi Fusarium oxysporum, Pyriculerie grisea, Glorosprium musa rum and Phytophthora capsici.
      
Maize Response to Salicylic Acid and Fusarium moniliforme
      
Effects of salicylic acid and Fusarium moniliformeon trypsin inhibitor activity, lectin activity, lectin carbohydrate specificity, and salicylic acid content in maize seedlings were studied.
      
Changes in trypsin inhibitor activity, lectin activity, and the content of endogenous salicylic acid after administration of exogenous salicylic acid or a pathogen were shown to depend on the resistance of maize strains to Fusarium.
      
Production of Fumonisins by Fusarium moniliforme Strains Isolated from Corn Grain
      
Fusarium moniliforme is the predominant fusarium species in the grain mycoflora of corn grown in the northern Caucasus, accounting for 95% of fusarium isolates.
      
Eighty-five Fusarium moniliforme strains were grown on a grain substrate and checked for the presence of fumonisins (B1 + B2 + B3) by indirect solid-phase enzyme immunoassay.
      
Fusarium moniliforme strains were subdivided into three morphological types.
      
Properties of nitrate reductase from Fusarium oxysporum 11dn1 fungi grown under anaerobic conditions
      
Experiments were performed with Fusarium oxysporum 11dn1, a fungus capable of producing nitrous oxide as the end product of denitrification.
      
Studies of nitrate reductase from the mycelium of Fusarium oxysporum 11dn1, grown under aerobic and anaerobic conditions, showed that this enzyme belongs to molybdenum-containing nitrate reductases.
      
Study varieties of leguminous and cereal cultures were shown to contain endogenous inhibitors specific to proteinases of phytopathogenic fungi Fusarium, Colletotrichum, Helminthosporium, and Botrytis.
      
Hexaenes from the strains under study inhibited the growth of phytopathogenic fungi Fusarium culmorum, F.
      
Biosynthesis of Naphthoquinone Pigments by Fungi of the Genus Fusarium
      
We studied the biosynthesis of colored naphthoquinone metabolites by Fusarium decemcellulare, F.
      
We studied the fungicidal activity of a biological preparation from the fungi of the genus Chaetomium against soil phytopathogenic fungi Rhizoctonia solani and Fusarium oxysporum.
      
An increase in the soil pool of Trichoderma harzianum as a result of application of a biological preparation based on this antagonistic fungus correlated with its effectiveness against the soil pathogen Fusarium sp., which causes root rot.
      
Extracellular proteinases from the phytopathogenic fungus Fusarium culmorum
      
 

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