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Metabolic Engineering and Adaptive Evolution of Clostridium beijerinckii To Increase Solvent Production from Corn Stover Hydrolysate

机译:Clostridium Beijerinckii的代谢工程和适应性演变,从玉米秸秆水解产物增加溶剂生产

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摘要

The production of acetone-butanol-ethanol by solventogenic Clostridium using lignocellulosic biomass can be a potential alternative to petroleum-based butanol. However, previous studies on nondetoxified lignocellulose hydrolysate could not provide better results when compared to those in synthetic medium. In this study, we engineered the pentose pathway of Clostridium beijerinckii NCIMB 8052, which was then subjected to adaptive laboratory evolution in the gradient mixture of synthetic medium and pretreated corn stover enzymatic hydrolysate (CSH) prepared according to the National Renewable Energy Laboratory (NREL) standard. The final resultant strain CIBTS1274A produced 20.7 g/L of total solvents in NREL CSH diluted to 6% initial total sugars, supplemented with ammonium acetate. This performance was comparable with that of corn-based butanol. In addition, this strain was successfully used in the scale-up operation using nondetoxified corn stover and corncob hydrolysate at Lignicell Refining Biotechnologies Ltd., which once was the only commercial biobutanol industry in the world.
机译:使用木质纤维素生物质的溶剂型梭菌乙醇丁醇乙醇的产生可以是石油基丁醇的潜在替代。然而,与合成介质中的那些相比,对非氧化木质纤维素水解产物的先前研究不能提供更好的结果。在这项研究中,我们设计了蛋白质牛仔尼突显NCIMB 8052的pentose途径,然后在根据国家可再生能源实验室(NRER)制备的合成培养基和预处理玉米玻璃酶水解产物(CSH)的梯度混合物中进行适应性实验室演化标准。最终所得菌株CIBTS1274A在NREL CSH中产生20.7g / L的总溶剂,稀释至6%初始总糖,补充乙酸铵。这种性能与基于玉米丁醇的性能相当。此外,这种菌株在使用非氧化玉米秸秆和玉米绒水解产物在Lignicell炼油生物技术有限公司的玉米菌水解物中成功地使用该菌株,这是世界上唯一是世界上唯一的商业生物丁醇行业。

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