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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Metabolic Engineering of Escherichia coli K12 for Homofermentative Production of l-Lactate from Xylose
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Metabolic Engineering of Escherichia coli K12 for Homofermentative Production of l-Lactate from Xylose

机译:大肠杆菌K12的代谢工程,用于木糖的L-乳酸乳酸盐的同质生产

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The efficient utilization of xylose is regarded as a technical barrier to the commercial production of bulk chemicals from biomass. Due to the desirable mechanical properties of polylactic acid (PLA) depending on the isomeric composition of lactate, biotechnological production of lactate with high optical pure has been increasingly focused in recent years. The main objective of this work was to construct an engineered Escherichia coli for the optically pure l-lactate production from xylose. Six chromosomal deletions (pflB, ldhA, ackA, pta, frdA, adhE) and a chromosomal integration of l-lactate dehydrogenase-encoding gene (ldhL) from Bacillus coagulans was involved in construction of E. coli KSJ316. The recombinant strain could produce l-lactate from xylose resulting in a yield of 0.91 g/g xylose. The chemical purity of l-lactate was 95.52%, and the optical purity was greater than 99%. Moreover, three strategies, including overexpression of l-lactate dehydrogenase, intensification of xylose catabolism, and addition of additives to medium, were designed to enhance the production. The results showed that they could increase the concentration of l-lactate by 32.90, 20.13, and 233.88% relative to the control, respectively. This was the first report that adding formate not only could increase the xylose utilization but also led to the fewer by-product levels.
机译:木糖的有效利用被认为是来自生物量的散装化学品的商业生产的技术障碍。由于聚乳酸(PLA)的理想机械性能取决于乳酸异构组合物,近年来,具有高光学纯净的生物技术生产越来越聚焦。这项工作的主要目标是为从木糖的光学纯净的L乳酸生产构建工程化的大肠杆菌。六染色体缺失(PFLB,LDHA,AckA,PTA,FRDA,ADHE)和L-乳酸脱氢酶编码基因(LDH1)的染色体整合来自Bacillus CoAgulans的基因大肠杆菌KsJ316的构建。重组菌株可以从木糖产生L-乳酸盐,得到0.91g / g木糖的产率。 L-乳酸的化学纯度为95.52%,光学纯度大于99%。此外,设计了三种策略,包括L-乳酸脱氢酶的过度表达,木糖分解代谢的强化,并向培养基添加添加剂,以提高生产。结果表明,它们可以分别将L-乳酸的浓度增加32.90,20.13和233.88%相对于对照。这是第一份报告,不仅可以增加木糖利用而添加格式,而且还导致了较少的副产品水平。

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