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Application of fermentation process control to increase l-tryptophan production in Escherichia coli

机译:发酵过程控制在大肠杆菌中提高L-色氨酸生产的应用

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摘要

In this study, process engineering and process control were applied to increase the production of l-tryptophan using Escherichia coli Dmtr/pta-Y. Different dissolved oxygen (DO) and pH control strategies were applied in l-tryptophan production. DO and pH were maintained at [20% (0-20 hr); 30% (20-40 hr)] and [7.0 (0-20 hr), 6.5 (20-40 hr)], respectively, which increased l-tryptophan production, glucose conversion percentage [g (l-tryptophan)/g (glucose)], and transcription levels of key genes for tryptophan biosynthesis and tryptophan biosynthesis flux, and decreased the accumulation of acetate and transcription levels of genes related to acetate synthesis and acetate synthesis flux. Using E. coli Dmtr/pta-Y with optimized DO [20% (0-20 hr); 30% (20-40 hr)] and pH [7.0 (0-20 hr), 6.5 (20-40 hr)] values, the highest l-tryptophan production (52.57 g/L) and glucose conversion percentage (20.15%) were obtained. The l-tryptophan production was increased by 26.58%, the glucose conversion percentage was increased by 22.64%, and the flux of tryptophan biosynthesis was increased to 21.5% compared with different conditions for DO [50% (0-20 hr), 20% (20-40 hr)] and pH [7.0].
机译:在该研究中,应用工艺工程和过程控制来增加使用大肠杆菌DMTR / PTA-Y来增加L-色氨酸的产生。在L-色氨酸生产中应用了不同的溶解氧(DO)和pH控制策略。 DO和pH维持在[20%(0-20小时); 30%(20-40小时)]和[7.0(0-20小时),6.5(20-40小时),增加L-色氨酸生产,葡萄糖转化百分比[g(l-色氨酸)/ g(葡萄糖)]和色氨酸生物合成和色氨酸生物合成通量的关键基因的转录水平,并降低了醋酸酯合成和醋酸酯合成通量相关基因的积累和转录水平。使用优化的大肠杆菌DMTR / PTA-Y [20%(0-20小时); 30%(20-40小时)]和pH [7.0(0-20小时),6.5(20-40小时)]值,最高的L-色氨酸生产(52.57克/升)和葡萄糖转化率(20.15%)获得了。 L-色氨酸产量增加26.58%,葡萄糖转化率增加22.64%,色氨酸生物合成的通量增加到21.5%,与DO的不同条件[50%(0-20小时),20% (20-40小时)]和pH [7.0]。

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