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Homofermentative production of optically pure L-lactic acid from xylose by genetically engineered Escherichia coli B

机译:基因工程大肠杆菌B从木糖中均发酵生产光学纯的L-乳酸

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摘要

BackgroundPolylactic acid (PLA), a biodegradable polymer, has the potential to replace (at least partially) traditional petroleum-based plastics, minimizing “white pollution”. However, cost-effective production of optically pure L-lactic acid is needed to achieve the full potential of PLA. Currently, starch-based glucose is used for L-lactic acid fermentation by lactic acid bacteria. Due to its competition with food resources, an alternative non-food substrate such as cellulosic biomass is needed for L-lactic acid fermentation. Nevertheless, the substrate (sugar stream) derived from cellulosic biomass contains significant amounts of xylose, which is unfermentable by most lactic acid bacteria. However, the microorganisms that do ferment xylose usually carry out heterolactic acid fermentation. As a result, an alternative strain should be developed for homofermentative production of optically pure L-lactic acid using cellulosic biomass.
机译:背景技术聚乳酸(PLA)是一种可生物降解的聚合物,具有替代(至少部分)替代传统石油基塑料的潜力,从而最大程度地减少了“白色污染”。但是,需要经济高效地生产光学纯的L-乳酸,才能充分发挥PLA的潜力。目前,基于淀粉的葡萄糖被乳酸菌用于L-乳酸发酵。由于其与食物资源的竞争,L-乳酸发酵需要替代性的非食物底物,例如纤维素生物质。然而,源自纤维素生物质的底物(糖流)包含大量的木糖,这是大多数乳酸菌无法发酵的。但是,发酵木糖的微生物通常进行杂乳酸发酵。因此,应开发一种替代菌株,以利用纤维素生物质进行发酵生产光学纯的L-乳酸。

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