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首页> 外文期刊>Applied Microbiology and Biotechnology >Subcellular membrane fluidity of Lactobacillus delbrueckii subsp bulgaricus under cold and osmotic stress
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Subcellular membrane fluidity of Lactobacillus delbrueckii subsp bulgaricus under cold and osmotic stress

机译:乳酸杆菌的亚细胞膜流动性在寒冷和渗透胁迫下的乳白菌株潜伏药

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摘要

Cryopreservation of lactic acid bacteria may lead to undesirable cell death and functionality losses. The membrane is the first target for cell injury and plays a key role in bacterial cryotolerance. This work aimed at investigating at a subcellular resolution the membrane fluidity of two populations of Lactobacillus delbrueckii subsp. bulgaricus when subjected to cold and osmotic stresses associated to freezing. Cells were cultivated at 42 A degrees C in mild whey medium, and they were exposed to sucrose solutions of different osmolarities (300 and 1800 mOsm L-1) after harvest. Synchrotron fluorescence microscopy was used to measure membrane fluidity of cells labeled with the cytoplasmic membrane probe 1-[4 (trimethylamino) phenyl]-6-phenyl-1,3,5-hexatriene (TMA-DPH). Images were acquired at 25 and 0 A degrees C, and more than a thousand cells were individually analyzed. Results revealed that a bacterial population characterized by high membrane fluidity and a homogeneous distribution of fluidity values appeared to be positively related to freeze-thaw resistance. Furthermore, rigid domains with different anisotropy values were observed and the occurrence of these domains was more important in the freeze-sensitive bacterial population. The freeze-sensitive cells exhibited a broadening of existing highly rigid lipid domains with osmotic stress. The enlargement of domains might be ascribed to the interaction of sucrose with membrane phospholipids, leading to membrane disorganization and cell degradation.
机译:乳酸菌的冷冻保存可能导致不希望的细胞死亡和功能损失。膜是细胞损伤的第一个靶标,并在细菌冷冻机中发挥关键作用。这项工作旨在在亚细胞分辨率下进行调查,该亚细胞分辨率是乳酸杆菌的两种群体的膜流动性。对冻结相关的冷和渗透胁迫时的保加利菌。以温和的乳清培养基以42℃培养细胞,在收获后,将它们暴露于不同渗透压(300和1800mOsm L-1)的蔗糖溶液。同步荧光显微镜用于测量用细胞质膜探针1- [4(三甲基氨基)苯基] -6-苯基-1,3,5-己二烯(TMA-DPH)标记的细胞的膜流动性。在25和0度下获得图像,分析了多于千个细胞。结果表明,具有高膜流动性的细菌群和流动性值的均匀分布似乎与冻融抗性有关。此外,观察到具有不同各向异性值的刚性结构域,并且这些结构域的发生在冻敏细菌群体中更重要。冻敏细胞表现出具有渗透胁迫的现有高度刚性脂质结构域的扩大。结构域的扩大可能归因于蔗糖与膜磷脂的相互作用,导致膜紊乱和细胞降解。

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