triazoles has been researched along with deoxynivalenol in 15 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (13.33) | 29.6817 |
2010's | 10 (66.67) | 24.3611 |
2020's | 3 (20.00) | 2.80 |
Authors | Studies |
---|---|
Draper, MA; Hershman, DE; Lipps, PE; Madden, LV; McMullen, MP; Paul, PA | 1 |
Boon, PE; Brüschweiler, BJ; Muri, SD; van der Voet, H; van Klaveren, JD | 1 |
Audenaert, K; Callewaert, E; De Saeger, S; Haesaert, G; Höfte, M | 1 |
Fu, J; Jiang, J; Ma, Z; Wang, Z; Wu, J | 1 |
Dickin, ET; Edwards, SG; Kharbikar, LL | 1 |
Kalih, R; McDonald, BA; Miedaner, T; Talas, F | 1 |
Balardin, RS; Dias, JV; Dos Santos, ID; Marques, LN; Pizzutti, IR; Serafini, PT; Stefanello, MT | 1 |
Chulze, SN; Palazzini, JM; Torres, AM | 1 |
Diao, X; Han, Y; Liu, C | 1 |
Bergstrom, GC; Bradley, CA; Dalla Lana, F; Dill-Macky, R; Esker, PD; Grybauskas, A; Kirk, WW; Madden, LV; McMullen, M; Milus, E; Paul, PA; Ruden, K; Wise, KA | 1 |
Chen, W; Duan, Y; Fraaije, BA; Li, T; Wang, J; Xiao, X; Zhou, M | 1 |
Del Ponte, EM; Machado, FJ; Nicolli, CP; Spolti, P | 1 |
Fan, S; Li, C; Liu, C; Tan, Z; Wen, Y | 1 |
Gao, B; He, Z; Shi, D; Wang, M; Wang, Z; Zhang, J; Zhang, Y | 1 |
Li, C; Liu, C | 1 |
15 other study(ies) available for triazoles and deoxynivalenol
Article | Year |
---|---|
Efficacy of triazole-based fungicides for fusarium head blight and deoxynivalenol control in wheat: a multivariate meta-analysis.
Topics: Fungicides, Industrial; Fusarium; Meta-Analysis as Topic; Midwestern United States; Multivariate Analysis; Plant Diseases; Triazoles; Trichothecenes; Triticum | 2008 |
Comparison of human health risks resulting from exposure to fungicides and mycotoxins via food.
Topics: Food Microbiology; Fungicides, Industrial; Humans; Models, Statistical; Mycotoxins; Risk Assessment; Risk Reduction Behavior; Spiro Compounds; Triazoles; Trichothecenes; Zearalenone | 2009 |
Hydrogen peroxide induced by the fungicide prothioconazole triggers deoxynivalenol (DON) production by Fusarium graminearum.
Topics: Biomass; Catalase; Fungicides, Industrial; Fusarium; Hydrogen Peroxide; Methacrylates; Oxidative Stress; Oximes; Pyrimidines; Spores, Fungal; Statistics, Nonparametric; Strobilurins; Triazoles; Trichothecenes; Triticum | 2010 |
Cystathionine gamma-synthase is essential for methionine biosynthesis in Fusarium graminearum.
Topics: Antifungal Agents; Carbon-Oxygen Lyases; Fungal Proteins; Fusarium; Gene Deletion; Gene Expression Regulation, Fungal; Methionine; Plant Diseases; Triazoles; Trichothecenes; Triticum; Virulence | 2013 |
Impact of post-anthesis rainfall, fungicide and harvesting time on the concentration of deoxynivalenol and zearalenone in wheat.
Topics: Animal Feed; Animals; Edible Grain; Food Contamination; Fungicides, Industrial; Fusarium; Mycotoxins; Plant Diseases; Rain; Time Factors; Triazoles; Trichothecenes; Triticum; Zearalenone | 2015 |
Genome-Wide Association Study Identifies Novel Candidate Genes for Aggressiveness, Deoxynivalenol Production, and Azole Sensitivity in Natural Field Populations of Fusarium graminearum.
Topics: Fungal Proteins; Fungicides, Industrial; Fusarium; Gene Expression Regulation, Fungal; Genome-Wide Association Study; Quantitative Trait Loci; Triazoles; Trichothecenes | 2016 |
Occurrence of mycotoxins in wheat grains exposed to fungicides on fusarium head blight control in southern Brazil.
Topics: Animals; Brazil; Food Contamination; Fungicides, Industrial; Fusarium; Mycotoxins; Plant Diseases; Triazoles; Trichothecenes; Triticum | 2017 |
Tolerance of triazole-based fungicides by biocontrol agents used to control Fusarium head blight in wheat in Argentina.
Topics: Antibiosis; Argentina; Bacillus; Biological Control Agents; Brevibacillus; Fungicides, Industrial; Fusarium; Plant Diseases; Streptomyces; Triazoles; Trichothecenes; Triticum | 2018 |
The Fungicidal Activity of Tebuconazole Enantiomers against Fusarium graminearum and Its Selective Effect on DON Production under Different Conditions.
Topics: Fungal Proteins; Fungicides, Industrial; Fusarium; Gene Expression Regulation, Fungal; Plant Diseases; Triazoles; Trichothecenes; Triticum | 2018 |
Effects of Pre- and Postanthesis Applications of Demethylation Inhibitor Fungicides on Fusarium Head Blight and Deoxynivalenol in Spring and Winter Wheat.
Topics: Demethylation; Fungicides, Industrial; Fusarium; Plant Diseases; Triazoles; Trichothecenes; Triticum | 2018 |
Impact of epoxiconazole on Fusarium head blight control, grain yield and deoxynivalenol accumulation in wheat.
Topics: Benzimidazoles; Carbamates; Drug Resistance, Fungal; Edible Grain; Epoxy Compounds; Fungicides, Industrial; Fusarium; Plant Diseases; Triazoles; Trichothecenes; Triticum | 2018 |
Fitness Traits of Deoxynivalenol and Nivalenol-Producing Fusarium graminearum Species Complex Strains from Wheat.
Topics: Drug Resistance, Fungal; Fungicides, Industrial; Fusarium; Genotype; Host-Pathogen Interactions; Mycelium; Plant Diseases; Species Specificity; Spores, Fungal; Triazoles; Trichothecenes; Triticum; Virulence | 2018 |
Enantioselective Effect of Flutriafol on Growth, Deoxynivalenol Production, and
Topics: Fungal Proteins; Fungicides, Industrial; Fusarium; Gene Expression Regulation, Fungal; Plant Diseases; Stereoisomerism; Triazoles; Trichothecenes; Triticum | 2021 |
Deoxynivalenol in
Topics: Fusarium; Plant Diseases; Stereoisomerism; Triazoles; Trichothecenes | 2021 |
Enantioselective effect of chiral fungicide prothioconazole on Fusarium graminearum: Fungicidal activity and DON biosynthesis.
Topics: Animals; Fungicides, Industrial; Fusarium; Plant Diseases; Stereoisomerism; Triazoles; Trichothecenes | 2022 |