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用于生产顺式,顺式-粘康酸的微生物细胞工厂的构建与优化

[Construction and optimization of microbial cell factories for producing cis, cis-muconic acid].

作者信息

Song Guotian, Jiang Xiaolong, Chen Wujiu, Peng Yanfeng, Lu Fuping, Wang Qinhong

机构信息

College of Biotechnology, Tianjin University of Science & Technology, Tianjin 300457, China.

CAS Key Laboratory of Systems Microbial Biotechnology, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Science, Tianjin 300308, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2016 Sep 25;32(9):1212-1223. doi: 10.13345/j.cjb.150541.

Abstract

cis, cis-muconic acid (MA) is an important platform chemical. Now, majority of reported engineered strains are genetically instable, the exogenous genes are expressed under the control of expensive inducer and the components of their fermentation medium are complex, thus large-scale microbial production of MA is limited due to the lack of suitable strains. Hence, it is still necessary to construct novel high-performance strain that is genetically stable, no induction and grows in simple inorganic fermentation medium. In this study, after 3 exogenous genes (aroZ, aroY, catA) for biosynthesis of MA were integrated into previously constructed 3-hydroshikimate producing Escherichia coli WJ060 strain and combinatorially regulated with 3 constitutive promoters with different strengths, 27 engineered strains were constructed. The best engineered strain, E. coli MA30 could produce 1.7 g/L MA in the simple inorganic fermentation medium without induction. To further enhance the production capacity of MA, the mutant library of E. coli MA30 was constructed by genome replication engineering and screened via high-throughput assay. After two-round screening, the new strain, E. coli MA30-G2 with improved production of MA was obtained, and the titer of MA increased more than 8%. Under the condition of 5 L fed-batch fermentation, E. coli MA30-G2 could produce about 11.5 g/L MA. Combinatorial regulation and high-throughput screening provide important reference to microbial production of other bio-based chemicals.

摘要

顺式,顺式粘康酸(MA)是一种重要的平台化学品。目前,大多数已报道的工程菌株遗传不稳定,外源基因在昂贵诱导剂的控制下表达,且其发酵培养基成分复杂,因此由于缺乏合适的菌株,MA的大规模微生物生产受到限制。因此,构建遗传稳定、无需诱导且能在简单无机发酵培养基中生长的新型高性能菌株仍然很有必要。在本研究中,将用于MA生物合成的3个外源基因(aroZ、aroY、catA)整合到先前构建的产3-羟基莽草酸的大肠杆菌WJ060菌株中,并与3个不同强度的组成型启动子进行组合调控,构建了27株工程菌株。最佳工程菌株大肠杆菌MA30在简单无机发酵培养基中无需诱导即可产生1.7 g/L的MA。为进一步提高MA的生产能力,通过基因组复制工程构建了大肠杆菌MA30的突变文库,并通过高通量测定进行筛选。经过两轮筛选,获得了MA产量提高的新菌株大肠杆菌MA30-G2,MA的产量提高了8%以上。在5 L补料分批发酵条件下,大肠杆菌MA30-G2可产生约11.5 g/L的MA。组合调控和高通量筛选为其他生物基化学品的微生物生产提供了重要参考。

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