Groppi Emie, Haddad Mohamed, Cristofoli Valérie, Vansteelandt Marieke, Gadea Alice
UMR 152, PharmaDev, Université de Toulouse, IRD, UPS, France.
Chem Biodivers. 2025 Jan;22(1):e202401747. doi: 10.1002/cbdv.202401747. Epub 2024 Oct 31.
Fusarium verticillioides is a prevalent plant pathogenic fungus known to produce harmful mycotoxins, including fumonisins and emerging toxins. This study aimed to investigate the influence of substrate on the temporal patterns of mycotoxin biosynthesis by F. verticillioides, employing a combined OSMAC (One Strain-Many Compounds) strategy and metabolomics approach. The fungus was cultured under various media conditions, and samples were collected over time. LC-MS/MS analyses and a dereplicative workflow were used to profile the secondary metabolite production, focusing on mycotoxins. The results demonstrated that modifying the culture conditions led to significant variations in fungal growth and the nature and relative concentrations of mycotoxins produced. Corn meal agar (CMA) medium was favorable for fumonisins A and B, while malt extract agar (MEA) favored fumonisins A and B. The study also identified the production of other mycotoxins related compounds as fusarins, bikaverin derivatives and fumonisins analogs, under different growth conditions. This study highlights the potential of combining OSMAC and metabolomics to unravel the substrate-dependent and time-dependent variations in mycotoxin biosynthesis by F. verticillioides. The insights gained provide a better understanding of the ecophysiology of this fungus and the occurrence of its mycotoxins, which can inform targeted mitigation strategies to ensure food and feed safety.
轮枝镰孢菌是一种常见的植物病原真菌,已知会产生包括伏马菌素和新兴毒素在内的有害霉菌毒素。本研究旨在采用OSMAC(一株多化合物)策略与代谢组学方法相结合的方式,研究底物对轮枝镰孢菌霉菌毒素生物合成时间模式的影响。将该真菌在各种培养基条件下培养,并随时间收集样本。采用液相色谱-串联质谱(LC-MS/MS)分析和去重复工作流程对次生代谢产物进行分析,重点关注霉菌毒素。结果表明,改变培养条件会导致真菌生长以及所产生霉菌毒素的性质和相对浓度发生显著变化。玉米粉琼脂(CMA)培养基有利于伏马菌素A和B的产生,而麦芽提取物琼脂(MEA)则有利于伏马菌素A和B的产生。该研究还确定了在不同生长条件下,其他与霉菌毒素相关的化合物如镰刀菌素、比卡维林衍生物和伏马菌素类似物的产生情况。本研究强调了结合OSMAC和代谢组学来揭示轮枝镰孢菌霉菌毒素生物合成中底物依赖性和时间依赖性变化的潜力。所获得的见解有助于更好地理解这种真菌的生态生理学及其霉菌毒素的产生情况,从而为确保食品和饲料安全的针对性缓解策略提供依据。