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Strategies for improved isopropanol–butanol production by a Clostridium strain from glucose and hemicellulose through consolidated bioprocessing

机译:梭状芽胞杆菌菌株通过合并生物处理提高葡萄糖和半纤维素梭菌生产异丙醇-丁醇的策略

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摘要

BackgroundHigh cost of traditional substrates and formation of by-products (such as acetone and ethanol) in acetone–butanol–ethanol (ABE) fermentation hindered the large-scale production of biobutanol. Here, we comprehensively characterized a newly isolated solventogenic and xylanolytic Clostridium species, which could produce butanol at a high ratio with elimination of ethanol and conversion of acetone to more value-added product, isopropanol. Ultimately, direct butanol production from hemicellulose was achieved with efficient expression of indigenous xylanase by the novel strain via consolidated bioprocessing.
机译:背景技术传统底物的高成本以及丙酮-丁醇-乙醇(ABE)发酵过程中副产物(如丙酮和乙醇)的形成阻碍了生物丁醇的大规模生产。在这里,我们全面地表征了新分离的产溶剂的和木聚糖分解的梭菌属物种,该物种可以高比率生产丁醇,并且消除了乙醇,并将丙酮转化为高附加值的产品异丙醇。最终,通过新的菌株通过整合的生物加工过程有效表达了天然木聚糖酶,从而实现了半纤维素直接丁醇生产。

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