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利用酵母细胞工厂合成丁二酸的研究进展 被引量:1

Advances in synthesis of succinic acid using yeast cell factories
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摘要 丁二酸(又称琥珀酸)是一种重要的C4平台化合物,可作为1,4-丁二醇、四氢呋喃以及生物可降解塑料聚丁二酸丁二醇酯(polybutylene succinate,PBS)的生产原料。与传统的以顺酐为原料的石化基路线相比,采用微生物发酵法生产丁二酸不仅具有更高的经济可持续性,同时也展现出更佳的环境友好性。酵母具有良好的耐酸性,能够实现丁二酸的低pH发酵,从而大幅降低产物提取成本。因此,通过代谢工程改造构建高产丁二酸酵母菌株受到越来越多的关注。本文系统介绍了丁二酸的应用价值及其市场规模,总结了微生物中参与丁二酸合成的途径及其关键酶,详细阐述了利用酵母细胞工厂合成丁二酸的最新研究进展,同时还展示了酵母工程菌株以甘油、乙酸、木质纤维素水解液等非粮原料为底物进行丁二酸合成的现状,最后对基于酵母细胞工厂的低pH丁二酸生物制造进行了展望。 Succinic acid is an important C4 platform compound that serves as a raw material for the production of 1,4-butanediol,tetrahydrofuran,and biodegradable plastics such as polybutylene succinate(PBS).Compared to the traditional petrochemical-based route that uses maleic anhydride as a raw material,the microbial fermentation method for producing succinic acid offers more sustainable economic value and environmental friendliness.Yeasts with good acid tolerance can achieve low-pH fermentation of succinic acid,significantly reducing the cost of product extraction.Therefore,constructing high-yield succinic acid yeast strains through metabolic engineering has garnered increasing attention.This paper systematically introduced the application value and market size of succinic acid,summarized the pathways and key enzymes involved in succinic acid synthesis in microorganisms,and elaborated on the latest research progress in the synthesis of succinic acid using yeast cell factories.It also presented the current status of succinic acid synthesis using non-food raw materials such as glycerol,acetic acid,lignocellulosic hydrolysate,and others as substrates by engineered yeast strains.Finally,the paper provided a prospect for low-pH succinic acid biomanufacturing based on yeast cell factories.
作者 钟驭涛 尚长宇 王言东 李建华 刘成才 崔志勇 祁庆生 ZHONG Yutao;SHANG Changyu;WANG Yandong;LI Jianhua;LIU Chengcai;CUI Zhiyong;QI Qingsheng(State Key Laboratory of Microbial Technology,Shandong University,Qingdao 266237,Shandong,China;Qiqihar Longjiang Fufeng Biotechnology Co.,Ltd.,Qiqihar 161031,Heilongjiang,China)
出处 《生物工程学报》 CAS CSCD 北大核心 2024年第8期2644-2665,共22页 Chinese Journal of Biotechnology
基金 国家重点研发计划(2021YFC2100500) 国家自然科学基金(32200081)。
关键词 丁二酸 酵母 代谢工程 细胞工厂 低pH生物制造 succinic acid yeast metabolic engineering cell factory low-pH biomanufacturing
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  • 1王庆昭,吴巍,赵学明.生物转化法制取琥珀酸及其衍生物的前景分析[J].化工进展,2004,23(7):794-798. 被引量:43
  • 2杨明琰,张晓琦,沈俭,郭爱莲.有机溶剂二次沉淀法提取纯化酵母菌超氧化物歧化酶的研究[J].食品科学,2005,26(2):159-161. 被引量:5
  • 3静天玉,赵晓瑜.用终止剂改进超氧化物歧化酶邻苯三酚测活法[J].生物化学与生物物理进展,1995,22(1):84-86. 被引量:170
  • 4王庆昭,赵学明.琥珀酸发酵菌种研究进展[J].生物工程学报,2007,23(4):570-576. 被引量:19
  • 5Cardona F, Carrasco P, Perez-Ortin JE, et al. A novel ap- proach for the improvement of stress resistance in wine yeasts [ J ]. International Journal of Food Microbiology, 2007,114(1): 83 -91.
  • 6Orij R, Brul S, Smits G J. Intracellular pH is a tightly controlled signal in yeast [ J ]. Biochimica et Biophysica Acta,2011,1810(10): 933 -944.
  • 7Mira N P, Teixeira M C, Sa-Correia I. Adaptive response and tolerance to weak acids in Saccharomyces cerevisiae: A genome-wide view[J]. Omics-a Journal of Integrative Biology,2010,14(5) : 525 -540.
  • 8Hartke A, Bouche S, Giard J C,et al. The lactic acid stress response of Lactococcus lactis subsp, lactis [ J]. Current Microbiology, 1996,33 (3) : 194 - 199.
  • 9Kulakov Y K, GuigueTalet P G, Ramuz M R, et al. Response of Brucella suis 1330 and B. canis RM6/66 to growth at acid pH and induction of an adaptive acid tolerance response[ J]. Research in Microbiology, 1997,148 ( 2 ) : 145 - 151.
  • 10Nielsen M K, Arneborg N. The effect of citric acid and pH on growth and metabolism of anaerobic Saccharomyces cerevislae and ZygoSaccharomyces bailii cultures[ J]. Food microbiology,2007, 24( 1 ) : 101 - 105.

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