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首页> 外文期刊>Applied and Environmental Microbiology >Influence of CO2-HCO3? Levels and pH on Growth, Succinate Production, and Enzyme Activities of Anaerobiospirillum succiniciproducens
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Influence of CO2-HCO3? Levels and pH on Growth, Succinate Production, and Enzyme Activities of Anaerobiospirillum succiniciproducens

机译:CO2-HCO3的影响?厌氧螺旋螺菌产琥珀酸的生长,琥珀酸生成和酶活性的水平和pH

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Growth and succinate versus lactate production from glucose by Anaerobiospirillum succiniciproducens was regulated by the level of available carbon dioxide and culture pH. At pH 7.2, the generation time was almost doubled and extensive amounts of lactate were formed in comparison with growth at pH 6.2. The succinate yield and the yield of ATP per mole of glucose were significantly enhanced under excess-CO2-HCO3? growth conditions and suggest that there exists a threshold level of CO2 for enhanced succinate production in A. succiniciproducens. Glucose was metabolized via the Embden-Meyerhof-Parnas route, and phosphoenolpyruvate carboxykinase levels increased while lactate dehydrogenase and alcohol dehydrogenase levels decreased under excess-CO2-HCO3? growth conditions. Kinetic analysis of succinate and lactate formation in continuous culture indicated that the growth rate-linked production rate coefficient (K) cells was much higher for succinate (7.2 versus 1.0 g/g of cells per h) while the non-growth-rate-related formation rate coefficient (K′) was higher for lactate (1.1 versus 0.3 g/g of cells per h). The data indicate that A. succiniciproducens, unlike other succinate-producing anaerobes which also form propionate, can grow rapidly and form high final yields of succinate at pH 6.2 and with excess CO2-HCO3? as a consequence of regulating electron sink metabolism.
机译:厌氧气螺螺旋菌产生的葡萄糖的生长以及琥珀酸对乳酸的产生受有效二氧化碳水平和培养物pH值的调节。在pH 7.2下,与在pH 6.2下生长相比,生成时间几乎增加了一倍,并且形成了大量的乳酸。在过量的CO2-HCO3?下,琥珀酸的产率和每摩尔葡萄糖的ATP的产率显着提高。生长条件,并建议在琥珀酸产假单胞菌中存在一个阈值水平的二氧化碳,以提高琥珀酸盐的产量。葡萄糖通过Embden-Meyerhof-Parnas途径代谢,在过量CO2-HCO3?下,磷酸烯醇丙酮酸羧化激酶水平升高,而乳酸脱氢酶和醇脱氢酶水平降低。生长条件。连续培养中琥珀酸和乳酸形成的动力学分析表明,琥珀酸的生长速率相关生产率系数(K)细胞要高得多(7.2对1.0 g / g细胞/小时),而与生长速率无关乳酸的形成速率系数(K')较高(1.1比0.3 g / g细胞/小时)。数据表明,与其他也会生成丙酸酯的产琥珀酸厌氧菌不同,产琥珀曲霉可以快速生长并在pH 6.2和过量的CO2-HCO3条件下形成高琥珀酸最终收率。由于调节电子吸收代谢。

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