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首页> 外文期刊>Applied Microbiology and Biotechnology >Influence of extracellular pH on growth, viability, cell size, acidification activity, and intracellular pH of Lactococcus lactis in batch fermentations
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Influence of extracellular pH on growth, viability, cell size, acidification activity, and intracellular pH of Lactococcus lactis in batch fermentations

机译:分批发酵中细胞外pH对乳酸乳球菌生长,活力,细胞大小,酸化活性和细胞内pH的影响

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In this study, we investigated the influence of three extracellular pH (pH(ex)) values (i.e., 5.5, 6.5, and 7.5) on the growth, viability, cell size, acidification activity in milk, and intracellular pH (pH(i)) of Lactococcus lactis subsp. lactis DGCC1212 during pH-controlled batch fermentations. A universal parameter (e.g., linked to pH(i)) for the description or prediction of viability, specific acidification activity, or growth behavior at a given pH(ex) was not identified. We found viability as determined by flow cytometry to remain high during all growth phases and irrespectively of the pH set point. Furthermore, regardless of the pH(ex), the acidification activity per cell decreased over time which seemed to be linked to cell shrinkage. Flow cytometric pH(i) determination demonstrated an increase of the averaged pH(i) level for higher pH set points, while the pH gradient (pH(i)-pH(ex)) and the extent of pH(i) heterogeneity decreased. Cells maintained positive pH gradients at a low pH(ex) of 5.5 and even during substrate limitation at the more widely used pH(ex) 6.5. Moreover, the strain proved able to grow despite small negative or even absent pH gradients at a high pH(ex) of 7.5. The larger pH(i) heterogeneity at pH(ex) 5.5 and 6.5 was associated with more stressful conditions resulting, e.g., from higher concentrations of non-dissociated lactic acid, while the low pH(i) heterogeneity at pH(ex) 7.5 most probably corresponded to lower concentrations of non-dissociated lactic acid which facilitated the cells to reach the highest maximum active cell counts of the three pH set points.
机译:在这项研究中,我们调查了三个细胞外pH(pH(ex))值(即5.5、6.5和7.5)对牛奶的生长,生存力,细胞大小,酸化活性以及细胞内pH(i ))乳酸乳球菌亚种。 pH控制的分批发酵过程中的乳酸DGCC1212。尚未确定用于描述或预测生存力,比酸化活性或在给定pH(ex)下的生长行为的通用参数(例如,与pH(i)关联)。我们发现,通过流式细胞仪测定的活力在所有生长阶段均保持较高水平,而与pH设定点无关。此外,无论pH(ex)如何,每个细胞的酸化活性均随时间下降,这似乎与细胞收缩有关。流式细胞仪pH(i)测定显示较高pH设定点的平均pH(i)水平增加,而pH梯度(pH(i)-pH(ex))和pH(i)异质性程度降低。细胞在低pH(ex)5.5时甚至在更广泛使用的pH(ex)6.5的底物限制过程中都保持正pH梯度。此外,该菌株被证明能够在7.5的高pH(ex)下产生小的负值甚至没有pH梯度的情况下生长。 pH(ex)5.5和6.5时较大的pH(i)异质性与压力更大的条件相关,例如,由于较高浓度的未离解乳酸,而pH(ex)7.5较低的pH(i)非均质性可能对应于较低浓度的未离解乳酸,这有助于细胞达到三个pH设定点的最高最大活性细胞数。

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