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Uncoupling of Methanogenesis from Growth of Methanosarcina barkeri by Phosphate Limitation

机译:磷酸盐限制下甲烷甲烷八叠球菌的生长与甲烷生成的解偶联

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摘要

Production of methane by Methanosarcina barkeri from H2-CO2 was studied in fed-batch culture under phosphate-limiting conditions. A transition in the kinetics of methanogenesis from an exponentially increasing rate to a constant rate was due to depletion of phosphate from the medium. The period of exponentially increasing rate of methanogenesis was extended by increasing the initial concentration of phosphate in the medium. Addition of phosphate during the constant period changed the kinetics to an exponentially increasing rate of methanogenesis, indicating the reversibility of phosphate depletion. The relation between methanogenesis and growth of M. barkeri was investigated by measuring the incorporation of phosphorus, supplied as KH232PO4, in the medium. At a low (1 μM) initial concentration of phosphate in the medium and during the constant period of methanogenesis, there was no net cell growth. At a higher (10 μM) initial concentration of phosphate, cell growth proceeded linearly with time after phosphate had been removed from the medium by uptake into cells.
机译:在磷酸盐限制条件下,在分批补料培养中研究了由甲烷化甲烷从H2-CO2产生甲烷的过程。甲烷生成动力学从指数增加速率过渡到恒定速率是由于培养基中磷酸盐的消耗。通过增加培养基中磷酸盐的初始浓度,延长了甲烷生成速率的指数增长期。在恒定时期内添加磷酸盐将动力学改变为成甲烷速率的指数增加,表明磷酸盐消耗的可逆性。通过测量培养基中磷(以KH2 32 PO4的形式供应)的掺入量,研究了巴氏甲烷八叠球甲烷生成与生长之间的关系。在培养基中磷酸盐的初始浓度低(1μM)的同时,在甲烷生成的恒定时期内,没有净细胞生长。在较高的磷酸盐初始浓度(10μM)下,磷酸盐通过吸收进入细胞而从培养基中去除后,细胞的生长随时间线性增长。

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