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In Situ Determination of the Intracellular pH of Lactococcus lactis and Lactobacillus plantarum during Pressure Treatment

机译:加压处理过程中乳酸乳球菌和植物乳杆菌的细胞内pH值的原位测定

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摘要

Hydrostatic pressure may affect the intracellular pH of microorganisms by (i) enhancing the dissociation of weak organic acids and (ii) increasing the permeability of the cytoplasmic membrane and inactivation of enzymes required for pH homeostasis. The internal pHs of Lactococcus lactis and Lactobacillus plantarum during and after pressure treatment at 200 and 300 MPa and at pH values ranging from 4.0 to 6.5 were determined. Pressure treatment at 200 MPa for up to 20 min did not reduce the viability of either strain at pH 6.5. Pressure treatment at pH 6.5 and 300 MPa reduced viable cell counts of Lactococcus lactis and Lactobacillus plantarum by 5 log after 20 and 120 min, respectively. Pressure inactivation was faster at pH 5 or 4. At ambient pressure, both strains maintained a transmembrane pH gradient of 1 pH unit at neutral pH and about 2 pH units at pH 4.0. During pressure treatment at 200 and 300 MPa, the internal pH of L. lactis was decreased to the value of the extracellular pH during compression. The same result was observed during treatment of Lactobacillus plantarum at 300 MPa. Lactobacillus plantarum was unable to restore the internal pH after a compression-decompression cycle at 300 MPa and pH 6.5. Lactococcus lactis lost the ability to restore its internal pH after 20 and 4 min of pressure treatment at 200 and 300 MPa, respectively. As a consequence, pressure-mediated stress reactions and cell death may be considered secondary effects promoted by pH and other environmental conditions.
机译:静水压力可通过(i)增强弱有机酸的离解和(ii)增加细胞质膜的通透性以及使pH稳态所需的酶失活来影响微生物的细胞内pH。确定了在200和300 MPa的压力处理期间和之后以及在4.0到6.5的pH值下乳酸乳球菌和植物乳杆菌的内部pH值。在200 MPa压力下进行长达20分钟的加压处理不会降低任何一种菌株在pH 6.5时的生存能力。在pH值6.5和300 MPa下进行加压处理,分别在20和120分钟后将乳酸乳球菌和植物乳杆菌的活细胞数减少了5 log。在pH值为5或4时,压力失活更快。在环境压力下,两种菌株的跨膜pH梯度在中性pH下均保持1 pH单位,在pH 4.0时保持约2 pH单位。在200和300 MPa的压力处理过程中,乳酸乳球菌的内部pH降低到压缩过程中的细胞外pH值。在300 MPa的植物乳杆菌治疗期间,观察到相同的结果。植物乳杆菌在300 MPa和pH 6.5的压缩-减压循环后无法恢复内部pH。乳酸乳球菌分别在200和300 MPa的压力处理20和4分钟后失去了恢复其内部pH的能力。结果,压力介导的应激反应和细胞死亡可能被认为是pH和其他环境条件所促进的次级效应。

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