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Transcriptomic analysis of Bifidobacterium longum subsp. longum BBMN68 in response to oxidative shock

机译:长双歧杆菌亚种的转录组学分析。长的BBMN68对氧化性休克的反应

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Bifidobacterium longum strain BBMN68 is sensitive to low concentrations of oxygen. A transcriptomic study was performed to identify candidate genes for B. longum BBMN68’s response to oxygen treatment (3%, v/v). Expression of genes and pathways of B. longum BBMN68 involved in nucleotide metabolism, amino acid transport, protein turnover and chaperones increased, and that of carbohydrate metabolism, translation and biogenesis decreased to adapt to the oxidative stress. Notably, expression of two classes of ribonucleotide reductase (RNR), which are important for deoxyribonucleotide biosynthesis, was rapidly and persistently induced. First, the class Ib RNR NrdHIEF was immediately upregulated after 5?min oxygen exposure, followed by the class III RNR NrdDG, which was upregulated after 20?min of exposure. The upregulated expression of branched-chain amino acids and tetrahydrofolate biosynthesis-related genes occurred in bifidobacteria in response to oxidative stress. These change toward to compensate for DNA and protein damaged by reactive oxygen species (ROS). In addition, oxidative stress resulted in improved B. longum BBMN68 cell hydrophobicity and autoaggregation. These results provide a rich resource for our understanding of the response mechanisms to oxidative stress in bifidobacteria.
机译:长双歧杆菌BBMN68菌株对低浓度的氧气敏感。进行了一项转录组研究,以鉴定长双歧杆菌BBMN68对氧气处理的应答的候选基因(3%,v / v)。长双歧杆菌BBMN68基因的表达和参与核苷酸代谢,氨基酸转运,蛋白质更新和伴侣的表达增加,而碳水化合物代谢,翻译和生物发生的表达减少以适应氧化应激。值得注意的是,对脱氧核糖核苷酸生物合成重要的两类核糖核苷酸还原酶(RNR)的表达被迅速并持续诱导。首先,Ib类RNR NrdHIEF暴露于氧气中5分钟后立即被上调,其次是III类RNR NrdDG,暴露于20min分钟后被上调。双歧杆菌响应氧化应激而出现支链氨基酸和四氢叶酸生物合成相关基因的表达上调。这些变化趋向于补偿被活性氧(ROS)破坏的DNA和蛋白质。另外,氧化应激导致长双歧杆菌BBMN68细胞疏水性和自动聚集。这些结果为我们理解双歧杆菌中氧化应激的响应机制提供了丰富的资源。

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