Laboratory of Chemistry of Natural Molecules, Gembloux Agro-Bio Tech, Liege University, Passage des déportés 2, 5030 Gembloux, Belgium.
Mycotoxin Prevention and Applied Microbiology Unit, United States Department of Agriculture (USDA), Agriculture Research Service, National Center for Agricultural Utilization Research, 1815 N. University St. Peoria, IL 61604, USA.
Food Chem. 2024 Apr 16;438:138004. doi: 10.1016/j.foodchem.2023.138004. Epub 2023 Nov 15.
Fusarium verticillioides, a major fungal pathogen of maize, produces fumonisins, mycotoxins of global food safety concern. Control practices are needed to reduce the negative health and economic impacts of fumonisins. Therefore, we investigated volatile organic compounds (VOCs) emitted by fumonisin-producing (wild-type) and nonproducing (mutant) strains of F. verticillioides. VOC emissions were analyzed by gas chromatography-mass spectrometry following inoculation of maize kernels, and fumonisin accumulation was analyzed by high-performance liquid chromatography. Mutants emitted VOCs, including ethyl 3-methylbutanoate, that the wild type did not emit. In particular, ANOVA analysis showed significant differences between mutants and wild type for 4 VOCs which emission was correlated with absence of fumonisins. Exogenous ethyl 3-methylbutanoate reduced growth and fumonisin production in wild-type F. verticillioides, showing its potential in biocontrol. Together, our findings offer valuable insights into how mycotoxin production can impact VOC emissions from F. verticillioides and reveal a potential biocontrol strategy to reduce fumonisin contamination.
镰刀菌(Fusarium verticillioides)是一种主要的玉米真菌病原体,可产生伏马菌素,这是一种全球食品安全关注的真菌毒素。需要采取控制措施来减少伏马菌素对健康和经济的负面影响。因此,我们研究了产伏马菌素(野生型)和不产伏马菌素(突变型)的镰刀菌(F. verticillioides)菌株所排放的挥发性有机化合物(VOCs)。接种玉米籽粒后,通过气相色谱-质谱法对 VOC 排放进行分析,并通过高效液相色谱法对伏马菌素积累进行分析。突变体排放了一些 VOCs,包括野生型不排放的 3-甲基丁酸乙酯。特别是,方差分析表明,突变体和野生型之间在 4 种 VOC 的排放上存在显著差异,这些 VOC 的排放与伏马菌素的缺失有关。外源性 3-甲基丁酸乙酯降低了野生型 F. verticillioides 的生长和伏马菌素的产生,显示出其在生物防治中的潜力。总之,我们的研究结果提供了有关伏马菌素产生如何影响镰刀菌(F. verticillioides)VOC 排放的有价值的见解,并揭示了一种减少伏马菌素污染的潜在生物防治策略。