热醋酸摩尔氏菌:一种有前途的含细胞色素和醌的产醋酸细菌,可作为二氧化碳生物经济的平台

Florian P. Rosenbaum, Volker Müller
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引用次数: 1

摘要

基于化石的工业过程对环境的负面影响,特别是二氧化碳等温室气体的排放对全球变暖的影响,对人类构成了全球威胁。因此,社会需要技术来实现可持续和环境友好型经济。以糖为原料生产有价值产品的生物技术用途与例如食品生产相冲突。为了克服这个问题,从大气中提取的废物如合成气(H2、CO和CO2)或CO2对生物技术应用越来越感兴趣。产醋细菌已经在工业规模上被用于从合成气中生产可持续和环保的生物燃料。由于其生理灵活性,一种很有前途的候选者是嗜热丙酮Moorella thermoacetica。与大多数丙酮相反,M.thermoacetica并不局限于一个节能系统。除了Ech复合物,细胞色素和醌可能通过二甲基亚砜呼吸参与能量守恒。节省的额外能量可用于形成高价值但耗能高的产品。在这篇综述中,我们深入了解了这种丙酮的生理学,以及作为生物技术应用平台的热乙酸M.theroacetica的当前技术现状,并讨论了未来的前景。
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Moorella thermoacetica: A promising cytochrome- and quinone-containing acetogenic bacterium as platform for a CO2-based bioeconomy

The negative effect of fossil-based industrial processes on the environment, especially the contribution to global warming by emitting greenhouse gases such as CO2 causes a global threat to mankind. Therefore, technologies are demanded by the society for a sustainable and environmental friendly economy. The biotechnological use of sugar-based feedstocks to produce valuable products are in conflict with, for example, food production. In order to overcome this issue, waste products such as syngas (H2, CO and CO2) or CO2 taken from the atmosphere are of increasing interest for biotechnological applications. Acetogenic bacteria are already used at industrial scale to produce sustainable and environmentally friendly biofuels from syngas. A promising candidate due to its physiological flexibility is the thermophilic acetogen Moorella thermoacetica. In contrast to most acetogens M. thermoacetica is not restricted to one energy conserving system. In addition to the Ech complex, cytochromes and quinones maybe involved in energy conservation by, for example, DMSO respiration. The extra energy conserved can be used to form highly valuable but energy demanding products. In this review we give insights into the physiology of this acetogen, the current state of the art of M. thermoacetica as a platform for biotechnological applications and discuss future perspectives.

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