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首页> 外文期刊>Bioscience, Biotechnology, and Biochemistry >Enhancement of (R)-1,3-butanediol production by engineered Escherichia coli using a bioreactor system with strict regulation of overall oxygen transfer coefficient and pH
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Enhancement of (R)-1,3-butanediol production by engineered Escherichia coli using a bioreactor system with strict regulation of overall oxygen transfer coefficient and pH

机译:使用生物反应器系统的工程大肠杆菌生产(R)-1,3-丁二醇生产的增强,使用生物反应器系统严格调节整体氧转移系数和pH值

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摘要

(R)-1,3-butanediol ((R)-1,3-BD) is an important substrate for the synthesis of industrial chemicals. Despite its large demand, a bioprocess for the efficient production of 1,3-BD from renewable resources has not been developed. We previously reported the construction of recombinant Escherichia coli that could efficiently produce (R)-1,3-BD from glucose. In this study, the fermentation conditions were optimized to further improve 1,3-BD production by the recombinant strain. A batch fermentation was performed with an optimized overall oxygen transfer coefficient (82.3 h(-1)) and pH (5.5); the 1,3-BD concentration reached 98.5 mM after 36 h with high-yield (0.444 mol (mol glucose)(-1)) and a high maximum production rate (3.63 mM h(-1)). In addition, a fed-batch fermentation enabled the recombinant strain to produce 174.8 mM 1,3-BD after 96 h cultivation with a yield of 0.372 mol (mol glucose)(-1), a maximum production rate of 3.90 mM h(-1), and a 98.6% enantiomeric excess (% ee) of (R)-1,3-BD.
机译:(R)-1,3-丁二醇((R)-1,3-BD)是合成工业化学品的重要基材。尽管需求较大,但尚未开发出从可再生资源的高效生产1,3-BD的生物过程。我们之前报道了重组大肠杆菌的构建,可以有效地从葡萄糖产生(R)-1,3-BD。在该研究中,优化发酵条件以进一步通过重组菌株进一步改善1,3-BD产生。用优化的整体氧转移系数(82.3H(-1))和pH(5.5)进行分批发酵;在36小时后,1,3-BD浓度达到98.5mm,高产率(0.444mol(mol葡萄糖)( - 1))和高的最高生产率(3.63mm H(-1))。此外,在96小时培养后,使复合分批发酵使重组菌株在96小时培养后产生174.8mm 1,3-Bd(Mol葡萄糖)( - 1),最大的生产率为3.90mm H( - 1)和(R)-1,3-BD的98.6%对映体过量(%EE)。

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