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首页> 外文期刊>Journal of Bioscience and Bioengineering >Glycerol acts as alternative electron sink during syngas fermentation by thermophilic anaerobe Moorella thermoacetica
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Glycerol acts as alternative electron sink during syngas fermentation by thermophilic anaerobe Moorella thermoacetica

机译:甘油在嗜热厌氧厌氧菌Moorella thermoacetica的合成气发酵过程中充当替代电子沉

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Moorella thermoacetica is an anaerobic thermophilic acetogen that is capable of fermenting sugars, H-2/CO2 and syngas (H-2/CO). For this reason, this bacterium is potentially useful for biotechnology applications, particularly the production of biofuel from CO2. A soil isolate of M. thermoacetica, strain Y72, produces both ethanol and acetate from H-2/CO2; however, the maximum concentrations of these two products are too low to enable commercialization of the syngas fermentation process. In the present study, glycerol was identified as a novel electron sink among the fermentation products of strain Y72. Notably, a 1.5-fold increase in the production of ethanol (1.4 mM) was observed in cultures supplemented with glycerol during syngas fermentation. This discovery is expected to aid in the development of novel methods that allow for the regulation of metabolic pathways to direct and increase the production of desirable fermentative compounds. (C) 2015, The Society for Biotechnology, Japan. All rights reserved.
机译:Moorella thermoacetica是一种厌氧嗜热产乙酸菌,能够发酵糖,H-2 / CO2和合成气(H-2 / CO)。由于这个原因,该细菌潜在地可用于生物技术应用,特别是从二氧化碳生产生物燃料。一种土壤热腐莫拉氏菌的分离株,菌株Y72,从H-2 / CO2产生乙醇和乙酸盐;然而,这两种产物的最大浓度太低而不能使合成气发酵过程商业化。在本研究中,甘油被鉴定为菌株Y72的发酵产物中的新型电子库。值得注意的是,在合成气发酵期间,在补充有甘油的培养物中观察到乙醇产量(1.4 mM)增长了1.5倍。预期该发现将有助于开发新方法,该方法允许调节代谢途径以指导和增加所需发酵化合物的产生。 (C)2015年,日本生物技术学会。版权所有。

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