首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Cell surface characteristics of Lactobacillus casei subsp. casei Lactobacillus paracasei subsp. paracasei and Lactobacillus rhamnosus strains.
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Cell surface characteristics of Lactobacillus casei subsp. casei Lactobacillus paracasei subsp. paracasei and Lactobacillus rhamnosus strains.

机译:干酪乳杆菌亚种的细胞表面特征。干酪乳杆菌副干酪乳杆菌亚种。副干酪和鼠李糖乳杆菌菌株。

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摘要

Hydrophilic and electrostatic cell surface properties of eight Lactobacillus strains were characterized by using the microbial adhesion to solvents method and microelectrophoresis, respectively. All strains appeared relatively hydrophilic. The strong microbial adhesion to chloroform, an acidic solvent, in comparison with microbial adhesion to hexadecane, an apolar n-alkane, demonstrated the particularity of lactobacilli to have an important electron donor and basic character and consequently their potential ability to generate Lewis acid-base interactions with a support. Regardless of their electrophoretic mobility (EM), strains were in general slightly negatively charged at alkaline pH. A pH-dependent behavior concerning cell surface charges was observed. The EM decreased progressively with more acidic pHs for the L. casei subsp. casei and L. paracasei subsp. paracasei strains until the isoelectric point (IEP), i.e., the pH value for which the EM is zero. On the other hand, the EM for the L. rhamnosus strains was stable from pH 8 to pH 3 to 4, at which point there was a shift near the IEP. Both L. casei subsp. casei and L. paracasei subsp. paracasei strains were characterized by an IEP of around 4, whereas L. rhamnosus strains possessed a markedly lower IEP of 2. The present study showed that the cell surface physicochemical properties of lactobacilli seem to be, at least in part and under certain experimental conditions, particular to the bacterial species. Such differences detected between species are likely to be accompanied by some particular changes in cell wall chemical composition.
机译:分别通过微生物对溶剂的粘附方法和微电泳来表征八株乳酸杆菌的亲水和静电细胞表面特性。所有菌株均表现为相对亲水的。与微生物与十六烷(一种非极性正构烷烃)的微生物粘附力相比,微生物对氯仿(一种酸性溶剂)的粘附力强,证明了乳酸杆菌具有特殊的电子供体和基本特性,因此具有潜在的产生路易斯酸碱能力的特殊性。与支持的互动。无论其电泳迁移率(EM)如何,菌株在碱性pH值下通常都带负电。观察到与细胞表面电荷有关的pH依赖行为。对于干酪乳杆菌亚种,随着更多的酸性pH,EM逐渐降低。干酪素和副干酪乳杆菌亚种。副干酪菌株应变直至等电点(IEP),即EM为零的pH值。另一方面,鼠李糖乳杆菌菌株的EM从pH 8到pH 3至4是稳定的,此时在IEP附近有一个偏移。两个干酪乳杆菌亚种。干酪素和副干酪乳杆菌亚种。副干酪乳杆菌菌株的IEP约为4,而鼠李糖乳杆菌菌株的IEP则显着较低,为2。本研究表明,乳杆菌的细胞表面理化性质至少在某些实验条件下似乎是,特别是细菌种类。物种之间检测到的这种差异可能伴随着细胞壁化学成分的某些特定变化。

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