Systems Metabolic Engineering of Industrial Microorganisms
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Xueqin Lv | B. Ji | Xiaojun Ji | Yu Wang
[1] B. Ebert,et al. Current Metabolic Engineering Strategies for Photosynthetic Bioproduction in Cyanobacteria , 2023, Microorganisms.
[2] Hongwu Ma,et al. ecBSU1: A Genome-Scale Enzyme-Constrained Model of Bacillus subtilis Based on the ECMpy Workflow , 2023, Microorganisms.
[3] Jing Li,et al. Metabolic Engineering of Escherichia coli for High-Level Production of (R)-Acetoin from Low-Cost Raw Materials , 2023, Microorganisms.
[4] Yang Liu,et al. Metabolic Engineering of Bacillus subtilis for Riboflavin Production: A Review , 2023, Microorganisms.
[5] A. Augustyniak,et al. The Influence of Hydrodynamic Conditions in a Laboratory-Scale Bioreactor on Pseudomonas aeruginosa Metabolite Production , 2022, Microorganisms.
[6] H. Huo,et al. Mechanisms of BPA Degradation and Toxicity Resistance in Rhodococcus equi , 2022, Microorganisms.
[7] Y. Jung,et al. Safety Evaluation of Bacillus subtilis IDCC1101, Newly Isolated from Cheonggukjang, for Industrial Applications , 2022, Microorganisms.
[8] L. Gouveia,et al. Production of Mannosylerythritol Lipids Using Oils from Oleaginous Microalgae: Two Sequential Microorganism Culture Approach , 2022, Microorganisms.
[9] J. Twizere,et al. Closing the Gap between Bio-Based and Petroleum-Based Plastic through Bioengineering , 2022, Microorganisms.
[10] Ping Chen,et al. New Technique for Enhancing Residual Oil Recovery from Low-Permeability Reservoirs: The Cooperation of Petroleum Hydrocarbon-Degrading Bacteria and SiO2 Nanoparticles , 2022, Microorganisms.
[11] X. Bao,et al. Engineering Cell Polarization Improves Protein Production in Saccharomyces cerevisiae , 2022, Microorganisms.
[12] Xueqin Lv,et al. Combinatorial Metabolic Engineering and Enzymatic Catalysis Enable Efficient Production of Colanic Acid , 2022, Microorganisms.
[13] J. Nielsen,et al. Advancing metabolic engineering through systems biology of industrial microorganisms. , 2015, Current opinion in biotechnology.
[14] Marjan De Mey,et al. Multivariate modular metabolic engineering for pathway and strain optimization. , 2014, Current opinion in biotechnology.
[15] M. Chang,et al. Microbial tolerance engineering toward biochemical production: from lignocellulose to products. , 2014, Current opinion in biotechnology.
[16] J. Chen,et al. Metabolic evolution of two reducing equivalent-conserving pathways for high-yield succinate production in Escherichia coli. , 2014, Metabolic engineering.
[17] Jens Nielsen,et al. Metabolic engineering of yeast for production of fuels and chemicals. , 2013, Current opinion in biotechnology.
[18] J. Keasling,et al. Microbial engineering for the production of advanced biofuels , 2012, Nature.
[19] Jeong Wook Lee,et al. Systems metabolic engineering of microorganisms for natural and non-natural chemicals. , 2012, Nature chemical biology.
[20] Yan Zhu,et al. Engineering the robustness of industrial microbes through synthetic biology. , 2012, Trends in microbiology.
[21] Jeong Wook Lee,et al. Microbial production of building block chemicals and polymers. , 2011, Current opinion in biotechnology.
[22] A. Burgard,et al. Metabolic engineering of Escherichia coli for direct production of 1,4-butanediol. , 2011, Nature chemical biology.
[23] Jens Nielsen,et al. Impact of systems biology on metabolic engineering of Saccharomyces cerevisiae. , 2008, FEMS yeast research.
[24] C. Nakamura,et al. Metabolic engineering for the microbial production of 1,3-propanediol. , 2003, Current opinion in biotechnology.
[25] M. Penttilä,et al. Metabolic engineering applications to renewable resource utilization. , 2000, Current opinion in biotechnology.