葡萄糖酸
发酵
代谢工程
生物化学
生物反应器
化学
生物合成
工业微生物学
葡萄糖氧化酶
代谢途径
生物过程
食品科学
酶
醋酸菌
新陈代谢
氧化酶试验
原材料
拉伤
细菌
生物
作者
Kai Wang,Enpeng Zhang,Xiancheng Wang,Haixia Yang,Jianjun Qiao,Mingzhang Wen
标识
DOI:10.1021/acs.jafc.5c13595
摘要
Gluconic acid is an organic acid with extensive applications in food additives, pharmaceuticals, and chemical manufacturing. Recently, the integration of synthetic biology and microbial fermentation technologies has intensified interest in gluconic acid production. In this study, Aureobasidium melanogenum TSYW-58, isolated from natural environments and exhibiting an innate gluconic acid production capability, was employed as the starting chassis. Key genes responsible for the biosynthesis of pullulan, polymalic acid, liamocin, and melanin were deleted to reduce byproducts. Subsequently, overexpression of the endogenous glucose oxidase gene led to the creation of strain PPLMPG-6. Shake flask fermentation achieved a titer of up to 166.33 ± 8.08 g/L, while fed-batch fermentation in a 5 L bioreactor yielded 453.89 ± 16.50 g/L of gluconic acid, representing the highest production level reported to date. This work not only establishes a robust high-yield strain for industrial gluconic acid biosynthesis but also offers valuable insights for the microbial production of other organic acids.
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