Institute of Sciences of Food Production, CNR, via Amendola 122/0, 70126 Bari, Italy.
Int J Food Microbiol. 2012 Feb 1;153(1-2):148-53. doi: 10.1016/j.ijfoodmicro.2011.10.031. Epub 2011 Nov 15.
Fumonisins are a group of mycotoxins, mainly found in maize and maize-based food and feed, associated with several diseases in animals. The impact of these toxins on the economy and health worldwide has driven several efforts to clarify the role of environmental factors that can influence fumonisin biosynthesis by the toxigenic species. We analyzed the influence of light of varying wavelength on growth and fumonisin biosynthesis by the fungus Fusarium proliferatum ITEM 1719. Light in general had a positive influence on growth, with a mean increase of the grow rate of about 40% under light exposure in comparison to the dark incubation. Wavelengths from both sides of the spectrum, from long (627 nm) to short wavelength (470-455 nm) had a stimulating effect on fumonisin biosynthesis compared to the dark incubation: fumonisins B(1) (FB(1)) and B(2) (FB(2)) production increased of about 40 fold under red, 35 fold under blue, 20 fold under royal blue, 10 fold under green, 5 fold under yellow and 3 fold under white light in comparison to the dark incubation. The transcriptional regulation of the FUM1 fumonisin biosynthesis gene was analyzed by Real time reverse transcriptase PCR quantification, revealing a correlation between fumonisin biosynthesis and gene expression. These findings show a role of light on the growth and the modulation of fumonisin biosynthesis and provide new information on the physiology of an important toxigenic maize pathogen.
伏马菌素是一类真菌毒素,主要存在于玉米及其制品和饲料中,与动物的多种疾病有关。这些毒素对全球经济和健康的影响促使人们努力阐明环境因素对产毒真菌产生伏马菌素的生物合成的影响。我们分析了不同波长的光对真菌增生镰孢菌 ITEM 1719 的生长和伏马菌素生物合成的影响。总的来说,光对生长有积极的影响,与黑暗孵育相比,暴露在光下时生长速度平均提高了约 40%。与黑暗孵育相比,来自光谱两端的波长(从长波长 627nm 到短波长 470-455nm)对伏马菌素生物合成有刺激作用:与黑暗孵育相比,红光下 FB(1)(伏马菌素 B(1))和 FB(2)(伏马菌素 B(2))的产量增加了约 40 倍,蓝光下增加了 35 倍,皇家蓝增加了 20 倍,绿光增加了 10 倍,黄光增加了 5 倍,白光增加了 3 倍。通过实时逆转录定量 PCR 分析了 FUM1 伏马菌素生物合成基因的转录调控,揭示了伏马菌素生物合成与基因表达之间的相关性。这些发现表明光在生长和伏马菌素生物合成的调节中起作用,并为重要产毒玉米病原体的生理学提供了新的信息。