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Evaluation of industrial Saccharomyces cerevisiae strains as the chassis cell for second-generation bioethanol production

机译:评估工业酿酒酵母菌株作为第二代生物乙醇生产的底盘细胞

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摘要

To develop a suitable Saccharomyces cerevisiae industrial strain as a chassis cell for ethanol production using lignocellulosic materials, 32 wild-type strains were evaluated for their glucose fermenting ability, their tolerance to the stresses they might encounter in lignocellulosic hydrolysate fermentation and their genetic background for pentose metabolism. The strain BSIF, isolated from tropical fruit in Thailand, was selected out of the distinctly different strains studied for its promising characteristics. The maximal specific growth rate of BSIF was as high as 0.65 h−1 in yeast extract peptone dextrose medium, and the ethanol yield was 0.45 g g−1 consumed glucose. Furthermore, compared with other strains, this strain exhibited superior tolerance to high temperature, hyperosmotic stress and oxidative stress; better growth performance in lignocellulosic hydrolysate; and better xylose utilization capacity when an initial xylose metabolic pathway was introduced. All of these results indicate that this strain is an excellent chassis strain for lignocellulosic ethanol production.
机译:为了开发合适的酿酒酵母工业菌株作为使用木质纤维素材料生产乙醇的底盘细胞,评估了32种野生型菌株的葡萄糖发酵能力,对木质纤维素水解产物发酵可能遇到的压力的耐受性以及戊糖的遗传背景。代谢。从泰国热带水果中分离出的BSIF菌株是从其有前途的特征的不同菌株中选出的。在酵母提取蛋白ept右旋糖培养基中,BSIF的最大比生长速率高达0.65 h -1 ,乙醇产量为0.45 0.4g g -1 消耗的葡萄糖。此外,与其他菌株相比,该菌株对高温,高渗胁迫和氧化胁迫表现出优异的耐受性。木质纤维素水解物中的生长性能更好;引入了最初的木糖代谢途径后,木糖的利用率更高。所有这些结果表明,该菌株是木质纤维素乙醇生产的优良底盘菌株。

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