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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Enhanced Coproduction of Cell-Bound Zeaxanthin and Secreted Exopolysaccharides by Sphingobium sp. via Metabolic Engineering and Optimized Fermentation
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Enhanced Coproduction of Cell-Bound Zeaxanthin and Secreted Exopolysaccharides by Sphingobium sp. via Metabolic Engineering and Optimized Fermentation

机译:通过鞘豆SP增强细胞结合的胃部黄质和分泌的脱寡糖。 通过代谢工程和优化的发酵

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摘要

Zeaxanthin is a value-added carotenoid with wide applications. This study aims to manipulate a generally recognized as safe and carotenoid-producing bacterium, Sphingobium sp., for enhanced production of zeaxanthin and exopolysaccharides. First, whole-genome sequencing and analysis of pathway genes were applied to define the carotenoid pathway in Sphingobium sp. Second, a Sphingobium transformation system was established to engineer metabolite flux into zeaxanthin. By a combination of chemical mutagenesis and removal of bottlenecks of carotenoid biosynthesis via overexpression of three rate-limiting enzymes, the genetically modified Sphingobium DIZ strain produced 21.26 mg/g dry cell weight of zeaxanthin, which was about 4-fold higher than the wild type. Upon optimization of culture conditions, the DIZ strain produced 479.5 mg/L of zeaxanthin with the productivity of 4.99 mg/L/h and 21.9 g/L of exopolysaccharides using a fed-batch fermentation strategy. This study represents the first genetic manipulation of Sphingobium sp., a biotechnologically important bacterium, for high-yield production of value-added metabolites.
机译:玉米蛋白是一种增值的类胡萝卜素,具有广泛的应用。本研究旨在操纵通常被认为是安全和类胡萝卜素的细菌,鞘豆SP。,用于增强玉米黄芩苷和外核的生产。首先,施用全基因组测序和途径基因分析以在鞘盆SP中定义类胡萝卜素途径。其次,建立了一系列鞘醋栗转化系统,以将代谢物通量工程到玉米蛋白中。通过化学诱变和通过过表达的三种速率限制酶除去类胡萝卜素生物合成的瓶颈的组合,遗传改性的鞘氨基喹啉菌株产生了21.26mg / g干细胞重量,其比野生型高约4倍。在优化培养条件后,DIZ菌株在479.5mg / L的玉米蛋白产生479.5mg / L的胃部,使用FED分批发酵策略生产4.99mg / L / h和21.9g / L的外核。该研究代表了Sphingobium SP的第一个遗传操作。,生物技术上重要的细菌,用于高产的增值代谢物产生。

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