Food Fermentation Laboratory, Agricultural Research Service, U.S. Department of Agriculture, and Department of Food Science, North Carolina Agricultural Research Service, North Carolina State University, Raleigh, North Carolina 27695-7624.
Appl Environ Microbiol. 1988 Jun;54(6):1627-9. doi: 10.1128/aem.54.6.1627-1629.1988.
Most species of lactic acid bacteria decarboxylate l-malate to lactate and CO(2) if an energy source such as glucose is present. A proton is taken up in the reaction, which prevents pH decreases in the growth medium caused by lactic acid production from glucose fermentation. MRS broth (pH 7.0) (Difco Laboratories) containing 10 mM glucose and various concentrations of l-malate (0, 25, 50, 75, and 100 mM) was used to cultivate Lactobacillus plantarum. After 72 h at 37 degrees C, all malate was decarboxylated and all glucose was fermented, with resultant final pH values of 4.5, 6.3, 6.9, 7.3, and 7.5, respectively. When d-malate (which cannot be decarboxylated) was substituted for l-malate, the final pH values were 4.5, 5.2, 5.6, 5.8, and 5.9. By varying the ratios of glucose to l-malate in the growth medium, it was possible to obtain pH values which were lower, the same, or higher than the initial pH values. In contrast, buffers such as phosphate only retard decreases in pH. l-Malate, when compared with K(2)PO(4) on an equal molar basis, provided greater resistance to decreases in pH. Higher specific growth rates were observed for L. plantarum and Leuconostoc mesenteroides when l-malate rather than K(2)PO(4) was incorporated into the growth medium.
大多数乳酸菌在有葡萄糖等能源物质存在的情况下会将 l-苹果酸脱羧转化为乳酸和 CO(2)。反应中会吸收一个质子,从而防止由于葡萄糖发酵产生的乳酸导致生长培养基的 pH 值下降。使用含有 10 mM 葡萄糖和不同浓度的 l-苹果酸(0、25、50、75 和 100 mM)的 MRS 肉汤(pH 7.0)(Difco 实验室)来培养植物乳杆菌。在 37°C 下培养 72 小时后,所有的苹果酸都被脱羧,所有的葡萄糖都被发酵,最终 pH 值分别为 4.5、6.3、6.9、7.3 和 7.5。当用 d-苹果酸(不能脱羧)代替 l-苹果酸时,最终 pH 值分别为 4.5、5.2、5.6、5.8 和 5.9。通过改变生长培养基中葡萄糖和 l-苹果酸的比例,可以获得比初始 pH 值更低、相同或更高的 pH 值。相比之下,缓冲液如磷酸盐只能减缓 pH 值的下降。与 K(2)PO(4) 等摩尔相比,l-苹果酸在降低 pH 值方面提供了更大的抵抗力。当 l-苹果酸而不是 K(2)PO(4) 被纳入生长培养基时,植物乳杆菌和肠膜明串珠菌的比生长速率更高。