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Effects and mechanism of riboflavin on the growth of Alcaligenes faecalis under bias conditions

机译:偏压条件下核黄素对粪便产碱菌生长的影响及其机制

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Some microorganisms can utilize photoelectrons and electrode electrons. Exogenous electrons generate enough energy for growth, and electron shuttles may accelerate this process. This research data supported photoelectron-responsive microorganism Alcaligenes faecalis was effected by the growth metabolism due to bias and electron shuttle riboflavin (RF) with an adaptive screening voltage under oligotrophic conditions. A slight change was observed in the redox property of RF. RF played the role of an electron shuttle. Microbial extracellular metabolites could bind additional nicotinamide adenine dinucleotide (NADH) species with RF. The intracellular protein content in the group of RF–Bias was 1.94, 1.93 and 4.02 times higher than those in the RF, bias and control groups, respectively, while the corresponding intracellular contents of humus were 1.10, 0.93 and 1.42 times higher. The content of CoA in RF–Bias, RF and bias increased to 116.0%, 108.5% and 103.8%, respectively. The organic acids of the RF–Bias group in the Krebs cycle are more advanced than those of other groups. Overall, in the Krebs cycle, RF and bias facilitated the growth and metabolism of A. faecalis . Finally, a mechanism was proposed, showing that the electron transfer chain and the Krebs cycle are stimulated by RF and bias.
机译:一些微生物可以利用光电子和电极电子。外源电子产生足够的能量来生长,电子飞船可能会加速这一过程。这项研究数据支持光电子反应性微生物粪便产碱杆菌(Alcaligenes faecalis)受到营养的影响,这是由于在贫营养条件下,偏压和电子穿梭核黄素(RF)具有自适应筛选电压。观察到RF的氧化还原特性略有变化。射频起着电子梭的作用。微生物细胞外代谢物可以与RF结合其他烟酰胺腺嘌呤二核苷酸(NADH)物种。 RF–Bias组的细胞内蛋白质含量分别是RF,斜交和对照组的1.94、1.93和4.02倍,而腐殖质的细胞内蛋白质含量分别是1.10、0.93和1.42倍。 RF–Bias,RF和bias中的CoA含量分别增加到116.0%,108.5%和103.8%。克雷布斯循环中RF–Bias组的有机酸比其他组的有机酸更高级。总体而言,在克雷布斯循环中,RF和偏倚促进粪屎曲霉的生长和代谢。最后,提出了一种机制,表明电子转移链和克雷布斯循环受到射频和偏压的刺激。

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