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Loss of Lactose Metabolism in Lactic Streptococci

机译:乳酸链球菌中乳糖代谢的损失

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Lactose-negative mutants occurred spontaneously in broth cultures of Streptococcus lactis C2F. Instability of lactose metabolism was noted in other strains of S. lactis, in strains of S. cremoris, and in S. diacetilactis. Colonies of S. lactis C2F grown with lactose as the carbohydrate source also possessed lac- cells. Treatment of lactic streptococci with the mutagen acriflavine (AF) increased the number of non-lactose-fermenting variants. The effect of AF on growth and on loss of lactose-fermenting ability in S. lactis C2F was consequently further examined. The presence of AF appears to favor competitively the growth of spontaneously occurring lactose-negative cells and appears to act in the conversion of lactose-positive to non-lactose-fermenting cells. The lactose-negative mutants partially revert to lactose-positive variants which remain defective in lactose metabolism and remain unable to coagulate milk. The lactose-negative cells become dominant in continuous culture growth and provide evidence that alterations in the characteristics of starter strains can be produced by continuous culture, in this case, the complete loss in ability to ferment lactose.
机译:乳糖阴性突变体在乳酸链球菌C2F的肉汤培养物中自发出现。在其他乳酸链球菌,Cremoris链球菌和双乙酰乳酸链球菌中都发现了乳糖代谢的不稳定性。以乳糖为糖源生长的乳酸链球菌C2F菌落也拥有lac-细胞。用诱变性cri啶黄素(AF)处理乳酸链球菌可增加非乳糖发酵变体的数量。因此,进一步检查了AF对乳酸链球菌C2F中的生长和乳糖发酵能力丧失的影响。 AF的存在似乎在竞争上有利于自发出现的乳糖阴性细胞的生长,并且似乎在乳糖阳性细胞向非乳糖发酵细胞的转化中起作用。乳糖阴性突变体部分还原为乳糖阳性变异体,这些变异体在乳糖代谢中仍然存在缺陷,并且无法凝结牛奶。乳糖阴性细胞在连续培养生长中占主导地位,并提供证据表明可以通过连续培养产生发酵菌株特性的改变,在这种情况下,发酵乳糖的能力完全丧失。

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