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Influence of Media Heat Sterilization Process on Growth Performance of Representative Strains of the Genus Lactobacillus

机译:培养基热灭菌过程对乳酸菌属典型菌生长性能的影响

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Lactic acid bacteria (LAB) are widely applied microorganisms in food, feed, and beverage applications, where they can provide essential functionality for product modification, increase product shelf life, or act as beneficial organisms after consumption. Among these, strains of the genus Lactobacillus are often used as starters, probiotics, or biopreservatives. For all these types of bacterial preparations, a transportable shelf-stable form of concentrated bacteria, preserving their intrinsic properties, is essential for commercial distribution. Former studies revealed a relationship between the culture medium, cellular morphology, and the robustness of Lactobacillus acidophilus NCFM (name derived from North Carolina Food Microbiology) cultures. Due to these insights, a multitude of Lactobacillus strains representative of the genus were screened regarding their sensitivity to thermal medium pretreatment possibly accompanied by the alteration of their chemical composition, such as the formation of Maillard reaction products (MRPs). This study reveals a quite diverse and different growth behavior of those strains in the form of altered or non-altered cell concentrations and the size distributions of the populations, whereby five strains of the L. delbrueckii group in particular showed increased cell concentrations combined with decreased mean cell volumes. The results are of both scientific and industrial relevance, as they highlight the necessity to consider and understand the effects of media sterilization for the applied production strain.
机译:乳酸菌(LAB)是在食品,饲料和饮料中广泛应用的微生物,它们可以为产品改性提供必要的功能,延长产品的保质期或在食用后充当有益生物。其中,乳酸杆菌属的菌株通常用作发酵剂,益生菌或生物防腐剂。对于所有这些类型的细菌制剂,保留其固有特性的浓缩细菌的可运输保存稳定形式对于商业销售至关重要。以前的研究表明,培养基,细胞形态和嗜酸乳杆菌NCFM(名称源自北卡罗莱纳州食品微生物学)培养物的牢固性之间存在关联。由于这些见解,就其对热介质预处理的敏感性(可能伴随其化学成分的改变,例如美拉德反应产物(MRPs)的形成)筛选了代表该属的多种乳酸杆菌菌株。这项研究揭示了这些菌株以改变的或未改变的细胞浓度以及种群大小分布的形式表现出相当不同的生长行为,其中五种德氏乳杆菌菌株特别显示出细胞浓度增加而降低平均细胞体积。结果具有科学和工业意义,因为它们突出了考虑和理解培养基灭菌对所应用生产菌株的影响的必要性。

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