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Metabolic Engineering of Clostridium cellulolyticum for Production of Isobutanol from Cellulose▿

机译:纤维素分解梭菌的代谢工程,用于由纤维素生产异丁醇

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摘要

Producing biofuels directly from cellulose, known as consolidated bioprocessing, is believed to reduce costs substantially compared to a process in which cellulose degradation and fermentation to fuel are accomplished in separate steps. Here we present a metabolic engineering example for the development of a Clostridium cellulolyticum strain for isobutanol synthesis directly from cellulose. This strategy exploits the host's natural cellulolytic activity and the amino acid biosynthesis pathway and diverts its 2-keto acid intermediates toward alcohol synthesis. Specifically, we have demonstrated the first production of isobutanol to approximately 660 mg/liter from crystalline cellulose by using this microorganism.
机译:与其中纤维素在单独的步骤中降解和发酵成燃料的过程相比,直接从纤维素生产生物燃料(称为合并生物处理)被认为可以大大降低成本。在这里,我们为直接从纤维素合成异丁醇的纤维素分解梭状芽胞杆菌菌株的开发提供了一个代谢工程实例。该策略利用宿主的天然纤维素分解活性和氨基酸生物合成途径,并将其2-酮酸中间体转移至醇合成。具体而言,我们证明了使用该微生物首先从结晶纤维素中生产出约660 mg / L的异丁醇。

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