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Isobutanol production freed from biological limits using synthetic biochemistry

机译:使用合成生物化学的异丁醇生产免于生物限制

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Cost competitive conversion of biomass-derived sugars into biofuel will require high yields, high volumetric productivities and high titers. Suitable production parameters are hard to achieve in cell-based systems because of the need to maintain life processes. As a result, next-generation biofuel production in engineered microbes has yet to match the stringent cost targets set by petroleum fuels. Removing the constraints imposed by having to maintain cell viability might facilitate improved production metrics. Here, we report a cell-free system in a bioreactor with continuous product removal that produces isobutanol from glucose at a maximum productivity of 4?g?L -1 h -1 , a titer of 275?g?L -1 and 95% yield over the course of nearly 5 days. These production metrics exceed even the highly developed ethanol fermentation process. Our results suggest that moving beyond cells has the potential to expand what is possible for bio-based chemical production.
机译:生物质衍生的糖的成本竞争转化为生物燃料将需要高产率,高容量的生产率和高滴度。由于需要维持生命过程,合适的生产参数很难在基于细胞的系统中实现。因此,工程微生物的下一代生物燃料生产尚未匹配石油燃料所设定的严格成本目标。除去必须维持细胞存活率所施加的约束可能有助于改进的生产指标。在这里,我们在生物反应器中报告一种无细胞系统,其具有连续产物去除,其产生从葡萄糖的异丁醇,以4μl≤1-1h -1,滴度为275Ω·l -1和95%在近5天的过程中产生。这些生产指标甚至超过高度发达的乙醇发酵过程。我们的研究结果表明,超越电池具有扩展基于生物的化学生产的可能性。

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