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[高产乙醇酸菌株的筛选与发酵]

[Screening and fermentation of high-yield glycolic acid strains].

作者信息

Bao Qingqing, Yang Guang, Chen Feifei, Li Guohui, Deng Yu

机构信息

Key Laboratory of Industrial Biotechnology of Ministry of Education, Jiangnan University, Wuxi 214122, Jiangsu, China.

School of Biotechnology, Jiangnan University, Wuxi 214122, Jiangsu, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2024 Aug 25;40(8):2418-2431. doi: 10.13345/j.cjb.240142.

Abstract

Glycolic acid is an important chemical product widely used in various fields, including cosmetics, detergents, textiles, and more. Currently, microbial production of glycolic acid has disadvantages such as poor genetic stability, low yield, and high cost. Additionally, whole-cell catalytic production of glycolic acid typically requires the addition of relatively expensive sorbitol as a carbon source, which limits its industrial production. To develop an industrially applicable method for glycolic acid production, this study used ethylene glycol as a substrate to screen the glycolic acid-producing strains through whole-cell catalysis, obtaining a sp. capable of producing glycolic acid. The strain was then subjected to UV mutagenesis and high throughput screening, and the positive mutant strain RMGly-20 was obtained. After optimization in shake flasks, the glycolic acid titer of RMGly-20 reached 17.8 g/L, a 10.1-fold increase compared to the original strain. Using glucose as the carbon source and employing a fed-batch culture in a 5 L fermenter, strain RMGly-20 produced 61.1 g/L of the glycolic acid. This achievement marks the preliminary breeding of a genetically stable glycolic acid-producing strain using a cheap carbon source, providing a new host for the biosynthesis of glycolic acid and promoting further progress toward industrial production.

摘要

乙醇酸是一种重要的化工产品,广泛应用于化妆品、洗涤剂、纺织品等各个领域。目前,微生物法生产乙醇酸存在遗传稳定性差、产量低、成本高等缺点。此外,全细胞催化生产乙醇酸通常需要添加相对昂贵的山梨醇作为碳源,这限制了其工业化生产。为了开发一种适用于工业生产乙醇酸的方法,本研究以乙二醇为底物,通过全细胞催化筛选产乙醇酸菌株,获得了一株能够产乙醇酸的菌株。然后对该菌株进行紫外诱变和高通量筛选,得到阳性突变株RMGly-20。经摇瓶优化后,RMGly-20的乙醇酸产量达到17.8 g/L,较原始菌株提高了10.1倍。以葡萄糖为碳源,在5 L发酵罐中进行补料分批培养,菌株RMGly-20产乙醇酸61.1 g/L。这一成果标志着利用廉价碳源初步选育出遗传稳定的产乙醇酸菌株,为乙醇酸的生物合成提供了新的宿主,推动了其向工业化生产迈进的进一步发展。

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