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Trash to treasure: production of biofuels and commodity chemicals via syngas fermenting microorganisms. (Special Issue: Energy biotechnology - environmental biotechnology.)

机译:垃圾成宝:通过合成气发酵微生物生产生物燃料和日用化学品。 (特刊:能源生物技术-环境生物技术。)

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摘要

Fermentation of syngas is a means through which unutilized organic waste streams can be converted biologically into biofuels and commodity chemicals. Despite recent advances, several issues remain which limit implementation of industrial-scale syngas fermentation processes. At the cellular level, the energy conservation mechanism of syngas fermenting microorganisms has not yet been entirely elucidated. Furthermore, there was a lack of genetic tools to study and ultimately enhance their metabolic capabilities. Recently, substantial progress has been made in understanding the intricate energy conservation mechanisms of these microorganisms. Given the complex relationship between energy conservation and metabolism, strain design greatly benefits from systems-level approaches. Numerous genetic manipulation tools have also been developed, paving the way for the use of metabolic engineering and systems biology approaches. Rational strain designs can now be deployed resulting in desirable phenotypic traits for large-scale production.
机译:合成气发酵是未利用的有机废物流可以通过生物学方式转化为生物燃料和日用化学品的一种手段。尽管有最近的进展,但是仍然存在一些问题,这些问题限制了工业规模的合成气发酵过程的实施。在细胞水平上,尚未完全阐明合成气发酵微生物的节能机制。此外,缺乏研究和最终增强其代谢能力的遗传工具。近来,在理解这些微生物的复杂节能机制方面已取得实质性进展。鉴于能量节省和新陈代谢之间的复杂关系,菌株设计从系统级方法中受益匪浅。还开发了许多遗传操作工具,为代谢工程和系统生物学方法的使用铺平了道路。现在可以部署合理的菌株设计,以实现大规模生产所需的表型性状。

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