Louesdon Séverine, Charlot-Rougé Séverine, Tourdot-Maréchal Raphaëlle, Bouix Marielle, Béal Catherine
UMR 782 Génie et Microbiologie des Procédés Alimentaires, AgroParisTech - INRA, Thiverval-Grignon, 78850, France; Laboratoire Procédés Bactéries, Lallemand SAS, Blagnac Cedex, 31702, France.
Microb Biotechnol. 2015 Mar;8(2):311-8. doi: 10.1111/1751-7915.12132. Epub 2014 Jul 1.
Determinations of membrane fatty acid composition and fluidity were used together with acidification activity and viability measurements to characterize the physiological state after freezing of Lactobacillus buchneri R1102 and Bifidobacterium longum R0175 cells harvested in the exponential and stationary growth phases. For both strains, lower membrane fluidity was achieved in cells harvested in the stationary growth phase. This change was linked to a lower unsaturated-to-saturated fatty acid ratio for both strains and a higher cyclic-to-saturated fatty acid ratio for L. buchneri R1102 alone. These membrane properties were linked to survival and to maintenance of acidification activity of the cells after freezing, which differed according to the strain and the growth phase. Survival of B. longum R0175 was increased by 10% in cells with low membrane fluidity and high relative saturated fatty acid contents, without any change in acidification activity. Acidification activity was more degraded (70 min) in L. buchneri R1102 cells displaying low membrane fluidity and high saturated and cyclic fatty acid levels. Finally, this study showed that membrane modifications induced by the growth phase differed among bacterial strains in terms of composition. By lowering membrane fluidity, these modifications could be beneficial for survival of B. longum R0175 during the freezing process but detrimental for maintenance of acidification activity of L. buchneri R1102.
测定膜脂肪酸组成和流动性,并结合酸化活性和活力测量,以表征布氏乳杆菌R1102和长双歧杆菌R0175在指数生长期和稳定生长期收获的细胞冷冻后的生理状态。对于这两种菌株,在稳定生长期收获的细胞中膜流动性较低。这种变化与两种菌株较低的不饱和脂肪酸与饱和脂肪酸比例以及仅布氏乳杆菌R1102较高的环脂肪酸与饱和脂肪酸比例有关。这些膜特性与冷冻后细胞的存活和酸化活性的维持有关,这因菌株和生长阶段而异。在膜流动性低且相对饱和脂肪酸含量高的长双歧杆菌R0175细胞中,存活率提高了10%,酸化活性没有任何变化。在膜流动性低且饱和脂肪酸和环脂肪酸水平高的布氏乳杆菌R1102细胞中,酸化活性降解更严重(70分钟)。最后,这项研究表明,生长阶段诱导的膜修饰在细菌菌株之间的组成方面存在差异。通过降低膜流动性,这些修饰可能有利于长双歧杆菌R0175在冷冻过程中的存活,但不利于布氏乳杆菌R1102酸化活性的维持。