Boutigny Anne-Laure, Barreau Christian, Atanasova-Penichon Vessela, Verdal-Bonnin Marie-Noëlle, Pinson-Gadais Laëtitia, Richard-Forget Florence
Institut de Recherches Technologiques Agroalimentaires des Céréales, 66 rue La Boëtie, 75008 Paris, France.
Mycol Res. 2009 Jun-Jul;113(Pt 6-7):746-53. doi: 10.1016/j.mycres.2009.02.010. Epub 2009 Feb 26.
The effect of ferulic acid, the most abundant phenolic acid in wheat bran, was studied in vitro on type B trichothecene biosynthesis by Fusarium. It was demonstrated that ferulic acid is an efficient inhibitor of mycotoxin production by all strains of Fusarium tested, including different chemotypes and species. To analyse the mechanism of toxin biosynthesis inhibition by ferulic acid, expression of representative Tri genes, involved in the trichothecene biosynthesis pathway, was monitored by real-time RT-PCR. A decrease in the level of Tri gene expression was measured, suggesting that inhibition of toxin synthesis by ferulic acid could be regulated at the transcriptional level. Moreover, toxin production was shown to be reduced proportionally to the initial amount of ferulic acid added in the culture medium. Addition of ferulic acid either at the spore germination step or to a mycelial culture resulted in the same final inhibitory effect on mycotoxin accumulation. A cumulative inhibitory effect on trichothecene biosynthesis was even observed with successive supplementation of ferulic acid. Ferulic acid, which content varies among wheat varieties, could then play an important role in modulating trichothecene biosynthesis by Fusarium in some wheat varieties.
对麸皮中含量最为丰富的酚酸——阿魏酸,就其对镰刀菌B型单端孢霉烯族毒素生物合成的体外效应进行了研究。结果表明,阿魏酸对所测试的所有镰刀菌菌株(包括不同化学型和物种)的霉菌毒素产生均具有高效抑制作用。为分析阿魏酸抑制毒素生物合成的机制,通过实时逆转录聚合酶链反应监测了参与单端孢霉烯族毒素生物合成途径的代表性Tri基因的表达。结果检测到Tri基因表达水平下降,这表明阿魏酸对毒素合成的抑制作用可能在转录水平受到调控。此外,毒素产量显示与培养基中添加的阿魏酸初始量成比例降低。在孢子萌发阶段或向菌丝体培养物中添加阿魏酸,对霉菌毒素积累均产生相同的最终抑制效果。连续添加阿魏酸甚至可观察到对单端孢霉烯族毒素生物合成的累积抑制作用。阿魏酸含量在不同小麦品种间存在差异,因此在某些小麦品种中,阿魏酸可能在调节镰刀菌单端孢霉烯族毒素生物合成方面发挥重要作用。