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Role of Escherichia coli in Biofuel Production

机译:大肠杆菌在生物燃料生产中的作用

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Increased energy consumption coupled with depleting petroleum reserves and increased greenhouse gas emissions have renewed our interest in generating fuels from renewable energy sources via microbial fermentation. Central to this problem is the choice of microorganism that catalyzes the production of fuels at high volumetric productivity and yield from cheap and abundantly available renewable energy sources. Microorganisms that are metabolically engineered to redirect renewable carbon sources into desired fuel products are contemplated as best choices to obtain high volumetric productivity and yield. Considering the availability of vast knowledge in genomic and metabolic fronts, Escherichia coli is regarded as a primary choice for the production of biofuels. Here, we reviewed the microbial production of liquid biofuels that have the potential to be used either alone or in combination with the present-day fuels. We specifically highlighted the metabolic engineering and synthetic biology approaches used to improve the production of biofuels from E. coli over the past few years. We also discussed the challenges that still exist for the biofuel production from E. coli and their possible solutions.
机译:能源消耗的增加,石油储备的枯竭以及温室气体排放的增加,重新激发了我们对通过微生物发酵从可再生能源中生产燃料的兴趣。该问题的关键是选择能够以高体积生产率和廉价廉价且可大量利用的可再生能源产生燃料的微生物。经代谢工程改造以将可再生碳源重新定向到所需燃料产品中的微生物被认为是获得高容积生产率和产率的最佳选择。考虑到在基因组和代谢方面广博的知识,大肠杆菌被视为生产生物燃料的首选。在这里,我们回顾了液体生物燃料的微生物生产,这些微生物有可能单独使用或与当今的燃料组合使用。我们特别强调了过去几年用于改善大肠杆菌生产生物燃料的代谢工程和合成生物学方法。我们还讨论了利用大肠杆菌生产生物燃料仍然面临的挑战及其可能的解决方案。

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