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Isobutyraldehyde production from Escherichia coli by removing aldehyde reductase activity

机译:通过去除醛还原酶活性从大肠杆菌生产异丁醛

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摘要

BackgroundIncreasing global demand and reliance on petroleum-derived chemicals will necessitate alternative sources for chemical feedstocks. Currently, 99% of chemical feedstocks are derived from petroleum and natural gas. Renewable methods for producing important chemical feedstocks largely remain unaddressed. Synthetic biology enables the renewable production of various chemicals from microorganisms by constructing unique metabolic pathways. Here, we engineer Escherichia coli for the production of isobutyraldehyde, which can be readily converted to various hydrocarbons currently derived from petroleum such as isobutyric acid, acetal, oxime and imine using existing chemical catalysis. Isobutyraldehyde can be readily stripped from cultures during production, which reduces toxic effects of isobutyraldehyde.
机译:背景技术全球需求的增长和对石油衍生化学品的依赖将需要化学原料的替代来源。当前,化学原料的99%来自石油和天然气。生产重要化学原料的可更新方法在很大程度上仍未解决。合成生物学通过构建独特的代谢途径,可以从微生物再生生产各种化学物质。在这里,我们对大肠杆菌进行工程改造以生产异丁醛,利用现有的化学催化方法,可以很容易地将其转化为目前衍生自石油的各种碳氢化合物,例如异丁酸,乙缩醛,肟和亚胺。异丁醛在生产过程中很容易从培养物中剥离出来,从而降低了异丁醛的毒性作用。

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