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Metabolic Profiling and Cold-Starvation Stress Response of Oxygen-Tolerant Lactobacillus gasseri Strains Cultured in Batch Bioreactor

机译:在批量生物反应器中培养的耐受钙质乳酸杆菌菌株的代谢分析和冷饥饿应激响应

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摘要

Phenotypic and genotypic evidence indicates that many LAB strains can grow in presence of oxygen and can shift from fermentative to aerobic and/or respiratory metabolism. The aerobic and respiratory growth of several LAB species have been studied, allowing the selection of strains showing improved biomass production, long-term survival, and resistance under oxygen and stress conditions. The aim of this work was to observe the adaptation of two Lactobacillus gasseri strains, described in a previous work, to aerobic (air injection) and respiratory (air injection plus hemin and menaquionone) conditions obtained in a batch bioreactor. One strain showed the higher biomass production and oxygen consumption as well as the lower acidification in respiratory condition. Instead, the other one grew better in aerobic condition, even though the higher resistance to cold-starvation stress was registered in respiratory condition. In silico analysis revealed notable differences between AL3 and AL5 genomes and that of the type strain. This work contributes to understanding the adaptation response of lactobacilli to aerobic and respiratory metabolism. We demonstrated that the supposed activation of respiratory metabolism may provide several modifications to cell physiology. These features may be relevant in some technological and health-promoting applications, including starter and probiotic formulations.
机译:表型和基因型证据表明,许多实验室菌株可以在氧气存在下生长,并且可以从发酵和/或呼吸代谢的发酵转变。研究了几种实验室种类的有氧和呼吸生长,允许选择改善的生物质生产,长期存活和耐氧气条件下的抗性。这项工作的目的是观察在先前的工作中描述的两种乳酸杆菌菌株的适应,以有氧(空气喷射)和呼吸(空气喷射加血红素和MENAQUIONONE)条件在批量生物反应器中获得。一种菌株显示出更高的生物量产生和氧气消耗以及呼吸状况的较低酸化。相反,另一个在呼吸状况中登记了较高的冷饥饿胁迫性耐高采烈的抗性,另一个人的增长更好。在硅分析中,Al 3和Al5基因组的显着差异和类型菌株的显着差异。这项工作有助于了解乳酸杆菌对有氧和呼吸代谢的适应响应。我们证明,假定的呼吸代谢激活可以为细胞生理学提供几种修饰。这些特征在一些技术和健康促进应用中可能是相关的,包括起始和益生菌制剂。

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