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首页> 外文期刊>Journal of Biotechnology >Continuous hydrogen production by the hyperthermophilic archaeon, Thermococcus kodakaraensis KOD1
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Continuous hydrogen production by the hyperthermophilic archaeon, Thermococcus kodakaraensis KOD1

机译:超嗜热古菌Thercococcus kodakaraensis KOD1连续产生氢

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The hydrogen (H2) production potential of the hyperthermophilic archaeon, Thermococcus kodakaraensis KOD1 was evaluated at 85 degrees C. In batch cultivation using a complex medium supplemented with elemental sulfur (S0), evolution of H2S and CO2 was observed in the gas phase. When S0 was omitted and pyruvate or starch was added in the medium, the cells produced H2 at high levels instead of H2S. As the level of H2 appeared to correlate with the specific growth rate, analysis in continuous cultures was performed to develop a continuous H2 production system. In a steady-state condition at a dilution rate of 0.2 h-1, a continuous H2 production rate (per gram dry weight, gdw) of 24.9 and 14.0 mmol gdw-1 h-1 was observed in media supplemented with pyruvate and starch, respectively. In both cultivations, a high accumulation of acetate and alanine was found as metabolites. When the dilution rates were elevated in the medium with pyruvate, steady-state growth was observed up to 0.8 h-1, and a maximum H2 production rate of 59.6 mmol gdw-1 h-1 was obtained. Based on the experimental results along with data of the entire genome sequence, the metabolic pathway of the strain relating to starch and pyruvate degradation is discussed.
机译:在85摄氏度下评估了超嗜热古生菌Kodakaraensis KOD1的氢(H2)生产潜力。在使用添加了元素硫(S0)的复杂培养基进行分批培养时,在气相中观察到H2S和CO2的逸出。当省略SO并在培养基中添加丙酮酸盐或淀粉时,细胞会产生高水平的H2而不是H2S。由于H2的水平似乎与特定的生长速率相关,因此在连续培养物中进行分析以建立连续的H2生产系统。在稳态条件下,稀释度为0.2 h-1,在补充丙酮酸和淀粉的培养基中观察到H2的连续生产速率(每克干重,gdw)为24.9和14.0 mmol gdw-1 h-1,分别。在两种栽培中,都发现乙酸和丙氨酸的高积累是代谢产物。当在具有丙酮酸的培养基中提高稀释速率时,观察到稳态生长直至0.8 h-1,并且获得的最大氢气产生速率为59.6 mmol gdw-1 h-1。基于实验结果以及整个基因组序列的数据,讨论了与淀粉和丙酮酸降解有关的菌株的代谢途径。

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