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首页> 外文期刊>Applied and Environmental Microbiology >Responses of Listeria monocytogenes to Acid Stress and Glucose Availability Revealed by a Novel Combination of Fluorescence Microscopy and Microelectrode Ion-Selective Techniques
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Responses of Listeria monocytogenes to Acid Stress and Glucose Availability Revealed by a Novel Combination of Fluorescence Microscopy and Microelectrode Ion-Selective Techniques

机译:单核细胞增生李斯特菌对酸胁迫和葡萄糖利用率的反应通过荧光显微镜和微电极离子选择技术的新型组合揭示。

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Fluorescence ratio imaging microscopy and microelectrode ion flux estimation techniques were combined to study mechanisms of pH homeostasis in Listeria monocytogenes subjected to acid stress at different levels of glucose availability. This novel combination provided a unique opportunity to measure changes in H+ at either side of the bacterial membrane in real time and therefore to evaluate the rate of H+ flux across the bacterial plasma membrane and its contribution to bacterial pH homeostasis. Responses were assessed at external pHs (pHo) between 3.0 and 6.0 for three levels of glucose (0, 1, and 10 mM) in the medium. Both the intracellular pH (pHi) and net H+ fluxes were affected by the glucose concentration in the medium, with the highest absolute values corresponding to the highest glucose concentration. In the presence of glucose, the pHi remained above 7.0 within a pHo range of 4 to 6 and decreased below pHo 4. Above pHo 4, H+ extrusion increased correspondingly, with the maximum value at pHo 5.5, and below pHo 4, a net H+ influx was observed. Without glucose in the medium, the pHi decreased, and a net H+ influx was observed below pHo 5.5. A high correlation (R = 0.75 to 0.92) between the pHi and net H+ flux changes is reported, indicating that the two processes are complementary. The results obtained support other reports indicating that membrane transport processes are the main contributors to the process of pHi homeostasis in L. monocytogenes subjected to acid stress.
机译:结合荧光比率成像显微镜和微电极离子通量估计技术,研究了在葡萄糖水平不同的情况下,单核细胞增生李斯特氏菌在酸胁迫下pH稳态的机制。这种新颖的组合提供了一个独特的机会,可以实时测量细菌膜两侧的H +变化,从而评估穿过细菌质膜的H +通量的速率及其对细菌pH稳态的贡献。在3.0至6.0的外部pH(pHo)下,评估了培养基中葡萄糖的三个水平(0、1和10 mM)的响应。细胞内pH(pHi)和净H +通量均受培养基中葡萄糖浓度的影响,其中绝对值最高对应于最高葡萄糖浓度。在葡萄糖存在下,pHi在4至6的pHo范围内保持在7.0以上,并在pHo 4以下下降。在pHo 4以上,H +挤出量相应增加,在pHo 5.5时达到最大值,在pHo 4以下时,净H +观察到大量涌入。在培养基中没有葡萄糖的情况下,pHi降低,并且在pHo 5.5以下观察到净H +流入。据报道,pHi与净H +通量变化之间存在高度相关性(R = 0.75至0.92),表明这两个过程是互补的。获得的结果支持其他报道,表明膜运输过程是遭受酸胁迫的单核细胞增生李斯特氏菌pHi动态平衡过程的主要贡献者。

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