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瘤胃拟杆菌b14菌株的代谢与生长产量

Metabolism and growth yields in Bacteroides ruminicola strain b14.

作者信息

Howlett M R, Mountfort D O, Turner K W, Roberton A M

出版信息

Appl Environ Microbiol. 1976 Aug;32(2):274-83. doi: 10.1128/aem.32.2.274-283.1976.

Abstract

Metabolism of D-glucose by Bacteroides ruminicola subsp. brevis, strain B14, has been examined. Growth yield studies gave molar growth yields, corrected for storage polysaccharide, of approximately 66 g (dry weight)/mol of glucose fermented. The storage polysaccharide amounted to about 14% of the total dry weight, or 55% of the total cellular carbohydrate, at full growth. After correcting glucose utilization for incorporation into cellular carbohydrate, measurement of product formation showed that 1.1 succinate, 0.8 acetate, and 0.35 formate are produced and 0.5 CO2 net is taken up during the fermentation of 1 glucose under the conditions used. The implication of these results with respect to adenosine 5'-triphosphate (ATP) molar growth yield calculations is discussed. If substrate-level phosphorylation reactions alone are responsible for ATP generation, then the ATP molar growth yield must be about 23 g (dry weight)/mol of ATP. Alternatively, if anaerobic electron transfer-linked phosphorylation also occurs, the ATP molar growth yield will be lower.

摘要

已对短瘤胃拟杆菌亚种B14菌株对D-葡萄糖的代谢进行了研究。生长产率研究得出,经储存多糖校正后的摩尔生长产率约为每发酵1摩尔葡萄糖产生66克(干重)。在生长完全时,储存多糖占总干重的约14%,或占总细胞碳水化合物的55%。在将葡萄糖用于合成细胞碳水化合物的量校正后,产物形成的测量结果表明,在所用条件下,每发酵1分子葡萄糖会产生1.1分子琥珀酸、0.8分子乙酸和0.35分子甲酸,并净吸收0.5分子二氧化碳。讨论了这些结果对于腺苷5'-三磷酸(ATP)摩尔生长产率计算的意义。如果仅底物水平磷酸化反应负责ATP的生成,那么ATP摩尔生长产率必定约为每摩尔ATP产生23克(干重)。或者,如果也发生厌氧电子传递相关的磷酸化作用,ATP摩尔生长产率将会更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c25/170048/13562efae04b/aem00007-0095-a.jpg

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