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Influence of Reduced Water Activity on Lactose Metabolism by Lactococcus lactis subsp. cremoris at Different pH Values

机译:水分活度降低对乳酸乳球菌亚种乳糖代谢的影响。不同pH值下的蜡菊

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摘要

The influence of reduced water activity (aw) on lactose metabolism by Lactococcus lactis subsp. cremoris 2254 and 2272 was studied at different pH values. In control incubations (aw, 0.99) with nongrowing cells in pH-controlled phosphate buffer, the levels of carbon recovered as l-(+)-lactate were 92% at pH 6.1 and 5.3 and 78% at pH 4.5. However, the levels of recovery decreased to ∼50% at all pH values tested when the aw was 0.88 (with glycerol as the humectant). When growing cells in broth controlled at pH 6.3 were used, a reduction in the aw from 0.99 to 0.96 resulted in a decrease in the level of lactose carbon recovered as l-(+)-lactate from 100 to 71%. Low levels of l-(+)-lactate carbon recovery (<50%) were also observed with cells resuspended in pH-uncontrolled reconstituted skim milk at aw values of 0.99 and 0.87 and in young cheese curds. The missing lactose carbon could not be accounted for by acetate, ethanol, formate, acetaldehyde, or pyruvate. Attempts were made to determine where the missing lactose carbon was diverted to under the stress conditions used. Some of the missing lactose carbon was recovered as galactose (0.1 to 2.5 mM) in culture supernatants. Decreasing either the aw or the pH resulted in increased galactose accumulation by nongrowing cells; adjusting both environmental factors together potentiated the effect. The sensitivities of the two lactococcal strains tested were different; strain 2272 was more prone to accumulate galactose under stress conditions. A methyl pentose(s) and additional galactose were found in acid-hydrolyzed supernatants from cultures containing both growing and nongrowing cells, indicating that a saccharide(s) rich in these components was formed by lactococci under low-aw and low-pH stress conditions.
机译:水分活度降低(aw)对乳酸乳球菌亚种乳糖代谢的影响。在不同的pH值下研究了cremoris 2254和2272。在非受控细胞在pH受控的磷酸盐缓冲液中进行的对照温育(aw,0.99)中,以1-(+)-乳酸的形式回收的碳水平在pH 6.1和5.3下为92%,在pH 4.5下为78%。但是,当aw为0.88(使用甘油作为保湿剂)时,在所有测试的pH值下,回收率均降至约50%。当使用在pH值控制为6.3的肉汤中生长细胞时,aw值从0.99降低至0.96导致回收的1-(+)-乳酸盐乳糖碳含量从100%降低至71%。还观察到低水平的L-(+)-乳酸碳回收率(<50%),细胞重悬于pH值不受控制的脱脂牛奶中,aw值分别为0.99和0.87,还存在于年轻的奶酪凝乳中。乙酸,乙醇,甲酸盐,乙醛或丙酮酸不能解释缺失的乳糖碳。尝试确定在所使用的压力条件下缺失的乳糖碳被转移到何处。在培养上清液中,一些缺失的乳糖碳被回收为半乳糖(0.1至2.5 mM)。降低aw或pH会导致未生长的细胞增加半乳糖的积累;同时调整两个环境因素可增强效果。所测试的两种乳球菌菌株的敏感性不同。菌株2272在胁迫条件下更易于积聚半乳糖。在含有生长细胞和不生长细胞的培养物中经酸水解的上清液中发现了甲基戊糖和其他半乳糖,这表明富含乳酸酶的乳球菌在低aw和低pH条件下形成了富含这些成分的糖。 。

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