Bonomo M G, Cafaro C, Guerrieri A, Crispo F, Milella L, Calabrone L, Salzano G
Dipartimento di Scienze, Università degli Studi della Basilicata, Potenza, Italy.
J Appl Microbiol. 2017 Jun;122(6):1615-1626. doi: 10.1111/jam.13466. Epub 2017 May 7.
This study aimed to investigate the dynamics and physiological heterogeneity of Oenococcus oeni under different conditions, cell membrane fluidity and permeability variations, and assessment of changes in cell surface charging rates.
Flow cytometry, membrane fatty acid analysis and capillary electrophoresis were performed to study ethanol-induced variations. Different physiological states were assessed, revealing cell subpopulations able to adapt and withstand to environmental stress, in order to recover their functionality. Moreover, total results demonstrated changes in cell surface and membrane fatty acid redistribution with a saturation degree and an unsaturated/saturated fatty acid ratio fairly steady in control and in different ethanol stresses.
This study revealed a great variability among O. oeni strains and the importance to investigate the mechanisms by a multiparametric approach based on the structural and physiological bacterial adjustments in different stresses tolerance.
Intermediate physiological state assessment in O. oeni with recovery possibility could be an important criterion for potential starter culture application. The flow cytometry application with changes in monitoring membrane fatty acid composition and in surface charging rates allowed the characterization of sorted subpopulations that may contribute to further understanding of diversity and heterogeneity in physiology of bacterial populations.
本研究旨在探究不同条件下酒类酒球菌(Oenococcus oeni)的动态变化及生理异质性、细胞膜流动性和通透性变化,以及评估细胞表面电荷速率的变化。
采用流式细胞术、膜脂肪酸分析和毛细管电泳研究乙醇诱导的变化。评估了不同的生理状态,揭示了能够适应和耐受环境压力以恢复其功能的细胞亚群。此外,总体结果表明,在对照和不同乙醇胁迫下,细胞表面和膜脂肪酸重新分布发生了变化,饱和度以及不饱和/饱和脂肪酸比率相当稳定。
本研究揭示了酒类酒球菌菌株之间存在很大变异性,以及通过基于不同胁迫耐受性下细菌结构和生理调整的多参数方法研究其机制的重要性。
对具有恢复可能性的酒类酒球菌中间生理状态进行评估可能是潜在发酵剂应用的一个重要标准。流式细胞术在监测膜脂肪酸组成和表面电荷速率变化方面的应用,使得对分选的亚群进行表征成为可能,这可能有助于进一步理解细菌群体生理多样性和异质性。