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首页> 外文期刊>Applied and Environmental Microbiology >A Bile Salt-Resistant Derivative of Bifidobacterium animalis Has an Altered Fermentation Pattern When Grown on Glucose and Maltose
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A Bile Salt-Resistant Derivative of Bifidobacterium animalis Has an Altered Fermentation Pattern When Grown on Glucose and Maltose

机译:当在葡萄糖和麦芽糖上生长时,动物双歧杆菌的抗盐胆汁衍生物具有改变的发酵模式。

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The growth of Bifidobacterium animalis subsp. lactis IPLA 4549 and its derivative with acquired resistance to bile, B. animalis subsp. lactis 4549dOx, was evaluated in batch cultures with glucose or the glucose disaccharide maltose as the main carbon source. The acquisition of bile salt resistance caused a change in growth pattern for both sugars, which mainly resulted in a preferential use of maltose compared to glucose, whereas the mother strain used both carbohydrates in a similar way. High-performance liquid chromatography and gas chromatography-mass spectrometry analyses were performed to determine the amounts of glucose consumption and organic acid and ethanol formation from glucose by buffered resting cells taken at different points during growth. Resting cells of the bile-adapted strain generally consumed less glucose than those of the nonadapted one but showed an enhanced production of ethanol and higher acetic acid-to-lactic acid as well as formic acid-to-lactic acid ratios. These findings suggest a shift in the catabolism of carbohydrates promoted by the acquisition of bile resistance that may cause changes in the redox potential and improvements in the cellular ATP yield.
机译:动物双歧杆菌亚种的生长乳酸菌IPLA 4549及其衍生物,具有获得性的抗胆汁双歧杆菌动物亚种。在葡萄糖或葡萄糖二糖麦芽糖作为主要碳源的分批培养中评估了乳酸4549dOx。胆汁抗盐性的获得导致两种糖的生长方式发生变化,这主要导致与葡萄糖相比优先使用麦芽糖,而母菌株以相似的方式使用两种碳水化合物。进行了高效液相色谱和气相色谱-质谱分析,以确定在生长过程中不同时间点通过缓冲的静止细胞从葡萄糖中消耗的葡萄糖量以及有机酸和乙醇的形成量。适应胆汁的菌株的静息细胞通常消耗的葡萄糖比不适应胆汁的菌株少,但是显示出乙醇的产生增加,乙酸与乳酸的比率更高,甲酸与乳酸的比率更高。这些发现表明,胆汁抗性的获得促进了碳水化合物分解代谢的改变,这可能导致氧化还原电位的改变和细胞ATP产量的提高。

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