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首页> 外文期刊>Journal of Biotechnology >Acetate production from lactose by Clostridium thermolacticum and hydrogen-scavenging microorganisms in continuous culture--effect of hydrogen partial pressure
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Acetate production from lactose by Clostridium thermolacticum and hydrogen-scavenging microorganisms in continuous culture--effect of hydrogen partial pressure

机译:乳酸梭菌和连续培养中的除氢微生物从乳糖中产生乙酸盐-氢分压的影响

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摘要

The effect of the addition of hydrogen-consuming microorganisms on the metabolism of Clostridium thermolacticum was studied. By growing this bacterium in continuous culture at 58 degrees C, on 29 mmol lactose l(-1) (10 gl(-1)) in the feed, with the H2-consuming microorganisms Methanothermobacter thermoautotrophicus and Moorella thermoautotrophica, the volumetric productivity of acetate was increased up to 3.9 mmol l(-1)h(-1) at a dilution rate of 0.058 h(-1). This was about three times higher than the maximal acetate volumetric productivity quantified when C. thermolacticum was cultivated alone. In the consortium, C. thermolacticum was the only species able to metabolize lactose; it produced not only acetate, but also hydrogen, carbon dioxide and lactate. The other species of the consortium were growing on these by-products. Meth. thermoautotrophicus played an important role as a very efficient hydrogen scavenger and decreased the hydrogen partial pressure drastically: hydrogen was converted to methane. Moor. thermoautotrophica converted lactate as well as hydrogen and carbon dioxide into acetate. As a consequence, lactose was efficiently consumed and the only organic product in the liquid phase was acetate.
机译:研究了添加耗氢微生物对乳酸梭菌代谢的影响。通过将该细菌在饲料中29 mmol乳糖l(-1)(10 gl(-1))上于58°C的连续培养条件下生长,并与消耗H2的微生物Methanothermobacter thermoautotrophicus和Moorella thermoautotrophica一起,乙酸的体积生产率以0.058 h(-1)的稀释率将其增加至3.9 mmol l(-1)h(-1)。这比单独培养嗜热梭状芽胞杆菌时定量的最大乙酸盐体积生产率高约三倍。在财团中,乳酸乳酸杆菌是唯一能够代谢乳糖的物种。它不仅产生乙酸盐,而且产生氢气,二氧化碳和乳酸盐。财团的其他物种也在这些副产品上生长。方法高温自养菌作为非常有效的除氢剂发挥了重要作用,并大大降低了氢的分压:氢转化为甲烷。泊。热自养菌将乳酸以及氢气和二氧化碳转化为乙酸盐。结果,乳糖被有效地消耗掉,液相中唯一的有机产物是乙酸盐。

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