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Coupling of Methanothermobacter thermautotrophicus Methane Formation and Growth in Fed-Batch and Continuous Cultures under Different H2 Gassing Regimens

机译:在不同的氢气充注条件下分批补料和连续培养中甲烷甲烷嗜热自养甲烷甲烷的形成与生长的耦合

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摘要

In nature, H2- and CO2-utilizing methanogenic archaea have to couple the processes of methanogenesis and autotrophic growth under highly variable conditions with respect to the supply and concentration of their energy source, hydrogen. To study the hydrogen-dependent coupling between methanogenesis and growth, Methanothermobacter thermautotrophicus was cultured in a fed-batch fermentor and in a chemostat under different 80% H2-20% CO2 gassing regimens while we continuously monitored the dissolved hydrogen partial pressures (pH2). In the fed-batch system, in which the conditions continuously changed the uptake rates by the growing biomass, the organism displayed a complex and yet defined growth behavior, comprising the consecutive lag, exponential, and linear growth phases. It was found that the in situ hydrogen concentration affected the coupling between methanogenesis and growth in at least two respects. (i) The microorganism could adopt two distinct theoretical maximal growth yields (YCH4 max), notably approximately 3 and 7 g (dry weight) of methane formed mol−1, for growth under low (pH2 < 12 kPa)- and high-hydrogen conditions, respectively. The distinct values can be understood from a theoretical analysis of the process of methanogenesis presented in the supplemental material associated with this study. (ii) The in situ hydrogen concentration affected the “specific maintenance” requirements or, more likely, the degree of proton leakage and proton slippage processes. At low pH2 values, the “specific maintenance” diminished and the specific growth yields approached YCH4 max, indicating that growth and methanogenesis became fully coupled.
机译:在自然界中,利用H2和CO2的产甲烷古菌必须在其能源氢的供应和浓度高度变化的条件下,将甲烷生成和自养生长过程耦合起来。为了研究甲烷生成与生长之间的氢依赖性偶联作用,在不同的80%H2-20%CO2放气方案下,在分批补料发酵罐和化学恒温器中培养嗜热甲烷甲烷杆菌,同时我们持续监测溶解的氢分压(pH2)。在分批补料系统中,条件不断改变生物量的增长,从而使生物体表现出复杂但尚未定义的生长行为,包括连续的滞后,指数和线性生长阶段。已经发现,原位氢浓度至少在两个方面影响了甲烷生成和生长之间的耦合。 (i)微生物可以在低(pH2 <12)下生长时采用两种截然不同的理论最大生长产量(YCH4 max),特别是大约3和7 g(干重)形成的mol -1 甲烷生成kPa)和高氢条件。从与本研究相关的补充材料中提出的甲烷生成过程的理论分析可以理解不同的值。 (ii)原位氢浓度影响“特定维护”要求,或者更可能影响质子泄漏和质子滑动过程的程度。在低pH2值下,“特定维持”降低,并且特定生长产量接近YCH4 max,表明生长和甲烷生成完全耦合。

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