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Production of citrinin-free Monascus pigments by submerged culture at low pH

机译:在低pH下通过深层培养生产不含柠檬绿素的红曲霉色素

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摘要

Microbial fermentation of citrinin-free Monascus pigments is of great interest to meetthe demand of food safety. In the present work, the effect of various nitrogen sources, such as monosodium glutamate (MSG), cornmeal, (NH_4)_2SO_4, and NaNO3, on Monascus fermentation was examined under different initial pH conditions. The composition of Monascus pigments and the final pH of fermentation broth after Monascus fermentation were determined. It was found that nitrogen source was directly related to the final pH and the final pH regulated the composition of Monascus pigments and the biosynthesis of citrinin. Thus, an ideal nitrogen source can be selected to control the final pH and then the citrinin biosynthesis. Citrinin-free orange pigments were produced at extremely low initial pH in the medium with (NH4)_2SO4 or MSG as nitrogen source. No citrinin biosynthesis at extremely low pH was further confirmed by extractive fermentation of intracellular pigments in the nonionic surfactant Triton X-100 micelle aqueous solution. This is the first report about the production of citrinin-free Monascus pigments at extremely low pH.
机译:不含柠檬绿素的红曲霉色素的微生物发酵对于满足食品安全的需求非常重要。在目前的工作中,在不同的初始pH条件下,考察了各种氮源(例如谷氨酸钠(MSG),玉米面,(NH_4)_2SO_4和NaNO3)对红曲霉发酵的影响。测定红曲霉色素的组成和红曲霉发酵后发酵液的最终pH。发现氮源与最终pH直接相关,并且最终pH调节红曲色素的组成和柠檬素的生物合成。因此,可以选择理想的氮源来控制最终的pH,然后控制柠檬绿素的生物合成。在以(NH4)_2SO4或MSG为氮源的培养基中,在初始pH值极低的条件下生产不含柠檬绿素的橙色颜料。通过在非离子型表面活性剂Triton X-100胶束水溶液中进行细胞内色素的萃取发酵,进一步证实了在极低pH值下没有柠檬素生物合成。这是有关在极低的pH值下生产不含柠檬绿素的红曲霉色素的第一份报告。

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