Sørensen Kim I, Kjærbølling Inge, Neves Ana Rute, Machielsen Ronnie, Johansen Eric
Discovery, Research and Development, Chr. Hansen A/S, Hørsholm, Denmark.
Emerging Technology, Chr. Hansen A/S, Hørsholm, Denmark.
Front Bioeng Biotechnol. 2021 Jan 13;8:623700. doi: 10.3389/fbioe.2020.623700. eCollection 2020.
Many antibiotics and antimicrobial agents have the bacterial cell envelope as their primary target, interfering with functions such as synthesis of peptidoglycan, membrane stability and permeability, and attachment of surface components. The cell envelope is the outermost barrier of the bacterial cell, conferring protection against environmental stresses, and maintaining structural integrity and stability of the growing cell, while still allowing for required metabolism. In this work, inhibitory concentrations of several different cell envelope targeting antibiotics and antimicrobial agents were used to select for derivatives of lactic acid bacteria (LAB) with improved properties for dairy applications. Interestingly, we observed that for several LAB species a fraction of the isolates had improved milk texturizing capabilities. To further improve our understanding of the mechanisms underlying the improved rheology and to validate the efficacy of this method for strain improvement, genetic and physiological characterization of several improved derivatives was performed. The results showed that the identified genetic changes are diverse and affect also other cellular functions than the targeted cell surface. In short, this study describes a new versatile and powerful toolbox based on targeting of the cell envelope to select for LAB derivatives with improved phenotypic traits for dairy applications.
许多抗生素和抗菌剂以细菌细胞壁为主要作用靶点,干扰诸如肽聚糖合成、膜稳定性与通透性以及表面成分附着等功能。细胞壁是细菌细胞的最外层屏障,可抵御环境压力,维持生长中细胞的结构完整性与稳定性,同时仍允许进行所需的新陈代谢。在本研究中,使用几种不同的靶向细胞壁的抗生素和抗菌剂的抑制浓度来筛选具有更适合乳制品应用特性的乳酸菌(LAB)衍生物。有趣的是,我们观察到对于几种LAB菌株,一部分分离株具有改善的牛奶质地形成能力。为了进一步加深对改善流变学背后机制的理解,并验证该方法用于菌株改良的有效性,对几种改良衍生物进行了遗传和生理学特征分析。结果表明,所鉴定出的基因变化多种多样,并且除了靶向的细胞表面外,还影响其他细胞功能。简而言之,本研究描述了一种基于靶向细胞壁的新型通用且强大的工具箱,用于筛选具有更适合乳制品应用表型特征的LAB衍生物。