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首页> 外文期刊>Applied and Environmental Microbiology >Novel Evolutionary Engineering Approach for Accelerated Utilization of Glucose, Xylose, and Arabinose Mixtures by Engineered Saccharomyces cerevisiae Strains
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Novel Evolutionary Engineering Approach for Accelerated Utilization of Glucose, Xylose, and Arabinose Mixtures by Engineered Saccharomyces cerevisiae Strains

机译:工程酿酒酵母菌株加速利用葡萄糖,木糖和阿拉伯糖混合物的新型进化工程方法

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摘要

Lignocellulosic feedstocks are thought to have great economic and environmental significance for future biotechnological production processes. For cost-effective and efficient industrial processes, complete and fast conversion of all sugars derived from these feedstocks is required. Hence, simultaneous or fast sequential fermentation of sugars would greatly contribute to the efficiency of production processes. One of the main challenges emerging from the use of lignocellulosics for the production of ethanol by the yeast Saccharomyces cerevisiae is efficient fermentation of d-xylose and l-arabinose, as these sugars cannot be used by natural S. cerevisiae strains. In this study, we describe the first engineered S. cerevisiae strain (strain IMS0003) capable of fermenting mixtures of glucose, xylose, and arabinose with a high ethanol yield (0.43 g g?1 of total sugar) without formation of the side products xylitol and arabinitol. The kinetics of anaerobic fermentation of glucose-xylose-arabinose mixtures were greatly improved by using a novel evolutionary engineering strategy. This strategy included a regimen consisting of repeated batch cultivation with repeated cycles of consecutive growth in three media with different compositions (glucose, xylose, and arabinose; xylose and arabinose; and only arabinose) and allowed rapid selection of an evolved strain (IMS0010) exhibiting improved specific rates of consumption of xylose and arabinose. This evolution strategy resulted in a 40% reduction in the time required to completely ferment a mixture containing 30 g liter?1 glucose, 15 g liter?1 xylose, and 15 g liter?1 arabinose.
机译:木质纤维素原料被认为对于未来的生物技术生产过程具有重大的经济和环境意义。对于具有成本效益和高效的工业流程,需要完全,快速地转化所有源自这些原料的糖。因此,糖的同时或快速顺序发酵将大大有助于生产过程的效率。由木质酵母用于酿酒酵母生产乙醇的主要挑战之一是d-木糖和1-阿拉伯糖的有效发酵,因为这些糖不能被天然酿酒酵母菌株使用。在这项研究中,我们描述了第一个工程酿酒酵母菌株(IMS0003菌株),该菌株能够发酵葡萄糖,木糖和阿拉伯糖的混合物,且乙醇产率高(总糖含量为0.43 gg?1),而不会形成副产物木糖醇和阿拉伯糖醇。葡萄糖-木糖-阿拉伯糖混合物的厌氧发酵动力学通过使用新的进化工程策略得到了极大的改善。该策略包括一种方案,该方案包括在具有不同成分(葡萄糖,木糖和阿拉伯糖;木糖和阿拉伯糖;仅阿拉伯糖)的三种培养基中重复分批培养,并具有连续不断的连续生长周期,并允许快速选择具有以下特征的进化菌株(IMS0010):提高了木糖和阿拉伯糖的消耗率。这种进化策略使完全发酵包含30克升?1葡萄糖,15克升?1木糖和15克升?1阿拉伯糖的混合物所需的时间减少了40%。

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