Affiliation:
1. School of Life Science, Ningxia University , Yinchuan 750021 , China
2. Ningxia Key Laboratory for Food Microbial-Applications Technology and Safety Control, School of Food Science and Engineering, Ningxia University , Yinchuan 750021 , China
Abstract
Abstract
Aims
Cytidine, as an important commercial precursor in the chemical synthesis of antiviral and antitumor drugs, is in great demand in the market. Therefore, the purpose of this study is to build a microbial cell factory with high cytidine production.
Methods and results
A mutant E. coli NXBG-11-F34 with high tolerance to uridine monophosphate structural analogs and good genetic stability was obtained by atmospheric room temperature plasma (ARTP) mutagenesis combined with high-throughput screening. Then, the udk and rihA genes involved in cytidine catabolism were knocked out by CRISPR/Cas9 gene editing technology, and the recombinant strain E. coli NXBG-13 was constructed. The titer, yield, and productivity of cytidine fermented in a 5 l bioreactor were 15.7 g l−1, 0.164 g g−1, and 0.327 g l−1 h−1, respectively. Transcriptome analysis of the original strain and the recombinant strain E. coli NXBG-13 showed that the gene expression profiles of the two strains changed significantly, and the cytidine de novo pathway gene of the recombinant strain was up-regulated significantly.
Conclusions
ARTP mutagenesis combined with metabolic engineering is an effective method to construct cytidine-producing strains.
Funder
National Natural Science Foundation of China
Ningxia Hui Autonomous Region Youth Top Talent Training Project
Ningxia Key Laboratory of Food Microbial Application Technology and Safety Control Platform Construction Project
Helanshan Scholars Program of Ningxia University
Publisher
Oxford University Press (OUP)
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献