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Comparative proteomic analyses for elucidating metabolic changes during EPS production under different fermentation temperatures by Lactobacillus plantarum Q823

机译:比较蛋白质组学分析,以阐明植物乳杆菌Q823在不同发酵温度下EPS生产过程中的代谢变化

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Exopolysaccharide (EPS)-producing bacteria are of growing interest in industrial processes, mainly concerning food. Lactic acid bacteria are widely appreciated for their GRAS (generally recognized as safe) status and their ascertained or putative probiotic features. Detailed investigation on what happens at metabolic level during EPS production is scarce in the literature. The facultative heterofermenter Lactobacillus plantarum Q823 was studied in order to compare growth and EPS production at 30 degrees C and 37 degrees C. A higher growth rate was observed at 37 degrees C, whereas, a significantly higher (tenfold increase) EPS amount was produced at 30 degrees C. To understand the molecular mechanisms leading to the different EPS production in the two conditions, a comparative proteomic experiment was performed. The results of the in-gel proteomics revealed that: i) at 37 degrees C a higher abundance of proteins involved in carbon catabolism and nucleic acid biosynthesis together with a significant amount of stress proteins was observed; ii) at 30 degrees C the production of an atypical manganese-containing non-heme catalase (pseudocatalase) was increased, in agreement with previous data reporting that growth-rates of catalase negative Lactobacillus plantarum strains were greater than that of catalase positive strains. Taken together, all these findings provide further insights about the metabolic pathways stimulated during EPS production, and the mechanism that triggers EPS biosynthesis. (C) 2016 Elsevier B.V. All rights reserved.
机译:产生胞外多糖(EPS)的细菌在工业过程中越来越受到关注,主要涉及食品。乳酸菌因其GRAS(通常被认为是安全的)状态及其确定的或推定的益生菌特征而广受赞赏。在文献中很少有关于在EPS产生期间代谢水平发生什么的详细研究。为了比较在30摄氏度和37摄氏度下的生长和EPS产量,研究了兼性异化发酵的植物乳杆菌Q823。在37摄氏度下观察到了更高的生长速率,而在30摄氏度下产生了显着更高的EPS量(增加了十倍)。 30摄氏度。为了解导致在两种条件下产生不同EPS的分子机制,进行了比较蛋白质组学实验。凝胶内蛋白质组学的结果表明:i)在37摄氏度时,观察到了更多的参与碳分解代谢和核酸生物合成的蛋白质以及大量的应激蛋白质; ii)在30摄氏度时,非典型的含锰非血红素过氧化氢酶(假过氧化氢酶)的产量增加了,这与以前的数据一致,即过氧化氢酶阴性植物乳杆菌的生长速率高于过氧化氢酶阳性菌株的生长速率。综上所述,所有这些发现为EPS生产过程中刺激的代谢途径以及触发EPS生物合成的机制提供了进一步的见解。 (C)2016 Elsevier B.V.保留所有权利。

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