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有机复合化合物对嗜热解淀粉芽孢杆菌生长及葡萄糖发酵的影响

Effect of organic complex compounds on Bacillus thermoamylovorans growth and glucose fermentation.

作者信息

Combet-Blanc Y, Dieng M C, Kergoat P Y

机构信息

Laboratoire de Microbiologie IRD, Université de Provence, 13288 Marseille Cedex 9, France.

出版信息

Appl Environ Microbiol. 1999 Oct;65(10):4582-5. doi: 10.1128/AEM.65.10.4582-4585.1999.

Abstract

The effect of the concentration of a mixture (1/1 [wt/wt]) of yeast extract and bioTrypcase (YE+bT) on the growth and physiology of a new species, Bacillus thermoamylovorans, a moderately thermophilic, non-spore-forming, lactic acid-producing bacterium isolated from palm wine, was studied. At an initial glucose concentration of 100 mM, B. thermoamylovorans growth was limited when the concentration of YE+bT was lower than 5.0 g liter(-1); under these conditions, cellular yield reached a maximum value of 0.4 g of cells per g of YE+bT. Growth limitation due to deficiency in growth factors led to a significant shift in glucose metabolism towards lactate production. Lactate constituted 27.5 and 76% of the end products of glucose fermentation in media containing YE+bT at 20.0 and 1.0 g liter(-1), respectively. This result markedly differed from published data for lactic bacteria, which indicated that fermentative metabolism remained homolactic regardless of the concentration of YE. Our results showed that the ratio between cellular synthesis and energy production increased with the concentration of YE+bT in the culture medium. They indicate that the industrial production of lactic acid through glucose fermentation by B. thermoamylovorans can be optimized by using a medium where glucose is present in excess and the organic additives are limiting.

摘要

研究了酵母提取物与生物胰蛋白胨(YE+bT)的混合物(1/1 [重量/重量])浓度对一种新物种嗜热解淀粉芽孢杆菌生长和生理的影响,该菌是从棕榈酒中分离出的嗜热、不产芽孢、产乳酸的细菌。在初始葡萄糖浓度为100 mM时,当YE+bT浓度低于5.0 g/L时,嗜热解淀粉芽孢杆菌的生长受到限制;在这些条件下,细胞产量达到每克YE+bT产生0.4克细胞的最大值。由于生长因子缺乏导致的生长限制使葡萄糖代谢显著转向乳酸生成。在含有20.0和1.0 g/L YE+bT的培养基中,乳酸分别占葡萄糖发酵终产物的27.5%和76%。这一结果与已发表的乳酸菌数据明显不同,后者表明无论YE浓度如何,发酵代谢仍为同型乳酸发酵。我们的结果表明,细胞合成与能量产生的比率随着培养基中YE+bT浓度的增加而增加。结果表明,通过嗜热解淀粉芽孢杆菌对葡萄糖进行发酵来工业化生产乳酸时,可通过使用葡萄糖过量而有机添加剂有限的培养基来实现优化。

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