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Production of Biovanillin by One-Step Biotransformation Using Fungus Pycnoporous cinnabarinus

机译:真菌比拟朱砂通过一步生物转化生产生物香草醛

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The current study proposes a one-step biotransformation process for vanillin production from ferulic acid using the wild fungal strain Pycnoporous cinnabarinus belonging to the family Basidiomycete. Improvement of biotransformation conditions was performed in two steps; initially a one factor at a time method was used to investigate effects of medium composition variables (i.e., carbon, nitrogen) and environmental factors such as pH on vanillin production. Subsequently, concentrations of medium components were optimized using an orthogonal matrix method. After primary screening, glucose as carbon source and corn steep liquor and ammonium chloride as organic and inorganic nitrogen source, respectively, supported maximum biotransformation of ferulic acid to vanillin. Under statistically optimum conditions vanillin production from ferulic acid by P. cinnabarinus was 126 mg/L with a molar yield of 54%. The overall molar yield of vanillin production increased by 4 times.
机译:当前的研究提出了一种使用属于巴斯德霉菌属的野生真菌菌株碧萝(Pycnoporous cinnabarinus)从阿魏酸生产香草醛的一步法生物转化方法。生物转化条件的改善分两个步骤进行:最初,一次使用一个因素的方法来研究培养基组成变量(即碳,氮)和环境因素(例如pH)对香兰素生产的影响。随后,使用正交矩阵法优化培养基成分的浓度。初步筛选后,葡萄糖作为碳源,玉米浆和氯化铵分别作为有机和无机氮源,支持了阿魏酸向香兰素的最大生物转化。在统计学上最佳的条件下,朱砂假单胞菌从阿魏酸中产生香兰素的产量为126 mg / L,摩尔产率为54%。香兰素生产的总摩尔产量增加了4倍。

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