Sarrafzadeh Mohammad H, Schorr-Galindo Sabine, La Hyun-Joon, Oh Hee-Mock
School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, P.O. Box 11155-4563, Iran.
J Microbiol. 2014 Jul;52(7):597-603. doi: 10.1007/s12275-014-3547-9. Epub 2014 Jun 28.
The metabolism of Bacillus thuringiensis during its sporulation process was investigated under different concentrations of oxygen. At the beginning of sporulation, the aeration conditions were regulated to obtain different oxygen transfer rates (OTR) in four separate fermentations, representing interrupted, limited, non-limited, and saturated oxygenation, respectively. A higher OTR resulted in a higher pH, up to about 9 in the case of saturated oxygenation, while the interrupted oxygenation resulted in a significantly acidic culture. In contrast, the absence of oxygen resulted in rapid sporangia lysis and caused acidification of the medium, indicating a distinctly different sporangia composition and different metabolism. The bacterium also showed different CO2 production rates during sporulation, although a maximum point was observed in every case.With a higher OTR, the maximal value was observed after a longer time and at a lower value (40, 26, and 13 mmol/L/h for limited, non-limited, and saturated cases, respectively). Despite the exhaustion of glucose prior to the sporulation phase, the interrupted oxygenation resulted in acetate, lactate, and citrate in the medium with a maximum concentration of 4.8, 1.3, and 5.0 g/L, respectively. Notwithstanding, while the metabolic events differed visibly in the absence of oxygen, once sporulation was triggered, it was completed, even in the case of an interrupted oxygen supply.
在不同氧气浓度下研究了苏云金芽孢杆菌芽孢形成过程中的代谢情况。在芽孢形成开始时,调节通气条件,在四个独立发酵中获得不同的氧传递速率(OTR),分别代表间断、有限、非有限和饱和氧合。较高的OTR导致较高的pH值,在饱和氧合情况下可达约9,而间断氧合导致培养物显著酸化。相反,无氧导致芽孢囊迅速裂解并使培养基酸化,表明芽孢囊组成明显不同且代谢不同。该细菌在芽孢形成过程中也表现出不同的二氧化碳产生速率,尽管每种情况下都观察到一个最大值。OTR越高,达到最大值的时间越长且值越低(有限、非有限和饱和情况下分别为40、26和13 mmol/L/h)。尽管在芽孢形成阶段之前葡萄糖已耗尽,但间断氧合导致培养基中出现乙酸盐、乳酸盐和柠檬酸盐,最大浓度分别为4.8、1.3和5.0 g/L。尽管如此,虽然在无氧情况下代谢事件明显不同,但一旦触发芽孢形成,即使在氧气供应中断的情况下也能完成。