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利用酵母菌生产有机酸的研究进展
引用本文:张瑞元,朱翊凡,曾杜文,魏士昊,樊亚超,廖莎,赵心清,张风丽,张霖.利用酵母菌生产有机酸的研究进展[J].生物工程学报,2023,39(6):2231-2247.
作者姓名:张瑞元  朱翊凡  曾杜文  魏士昊  樊亚超  廖莎  赵心清  张风丽  张霖
作者单位:上海交通大学生命科学技术学院 微生物代谢国家重点实验室, 上海 200240;中石化(大连)石油化工研究院有限公司, 辽宁 大连 116045
基金项目:国家重点研发计划(2022YFE0108500, 2021YFC2101300)
摘    要:有机酸是含有一种或多种低分子量酸性基团(如羧基、磺酸基)的可生物合成的有机化合物,广泛应用于食品、农业、医药、生物基材料工业等领域。酵母菌具有生物安全、抗逆性强、底物谱广泛、方便遗传改造,以及大规模培养技术成熟等独特优点,因此利用酵母菌生产有机酸的研究日益受到国内外学者的关注。目前利用酵母生产有机酸还存在浓度低、副产物多,以及发酵效率低等缺陷。随着酵母菌代谢工程和合成生物学技术的发展,利用酵母菌生产有机酸取得了快速进展。本文总结了利用酵母合成11种有机酸的研究,包括内源和异源合成的大宗羧酸和高价值有机酸,并对该领域的未来研究方向进行了展望。

关 键 词:酵母  有机酸  生物合成  生物基材料  代谢调控
收稿时间:2023/1/16 0:00:00

Advances on the production of organic acids by yeast
ZHANG Ruiyuan,ZHU Yifan,ZENG Duwen,WEI Shihao,FAN Yachao,LIAO Sh,ZHAO Xinqing,ZHANG Fengli,ZHANG Lin.Advances on the production of organic acids by yeast[J].Chinese Journal of Biotechnology,2023,39(6):2231-2247.
Authors:ZHANG Ruiyuan  ZHU Yifan  ZENG Duwen  WEI Shihao  FAN Yachao  LIAO Sh  ZHAO Xinqing  ZHANG Fengli  ZHANG Lin
Institution:State Key Laboratory of Microbial Metabolism, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China;SINOPEC Dalian Research Institute of Petroleum and Petrochemicals Co., Ltd., Dalian 116045, Liaoning, China
Abstract:Organic acids are organic compounds that can be synthesized using biological systems. They often contain one or more low molecular weight acidic groups, such as carboxyl group and sulphonic group. Organic acids are widely used in food, agriculture, medicine, bio-based materials industry and other fields. Yeast has unique advantages of biosafety, strong stress resistance, wide substrate spectrum, convenient genetic transformation, and mature large-scale culture technology. Therefore, it is appealing to produce organic acids by yeast. However, challenges such as low concentration, many by-products and low fermentation efficiency still exist. With the development of yeast metabolic engineering and synthetic biology technology, rapid progress has been made in this field recently. Here we summarize the progress of biosynthesis of 11 organic acids by yeast. These organic acids include bulk carboxylic acids and high-value organic acids that can be produced naturally or heterologously. Finally, future prospects in this field were proposed.
Keywords:yeast  organic acid  biosynthesis  biodegradable plastics (biodegradable polymers)  metabolic regulation
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