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Improved ethanol production by a xylose-fermenting recombinant yeast strain constructed through a modified genome shuffling method

机译:通过改良的基因组改组方法构建的木糖发酵重组酵母菌株提高了乙醇产量

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摘要

BackgroundXylose is the second most abundant carbohydrate in the lignocellulosic biomass hydrolysate. The fermentation of xylose is essential for the bioconversion of lignocelluloses to fuels and chemicals. However the wild-type strains of Saccharomyces cerevisiae are unable to utilize xylose. Many efforts have been made to construct recombinant yeast strains to enhance xylose fermentation over the past few decades. Xylose fermentation remains challenging due to the complexity of lignocellulosic biomass hydrolysate. In this study, a modified genome shuffling method was developed to improve xylose fermentation by S. cerevisiae. Recombinant yeast strains were constructed by recursive DNA shuffling with the recombination of entire genome of P. stipitis with that of S. cerevisiae.
机译:背景木糖是木质纤维素生物质水解物中第二大的碳水化合物。木糖的发酵对于木质纤维素向燃料和化学物质的生物转化至关重要。然而,酿酒酵母的野生型菌株不能利用木糖。在过去的几十年中,已经做出许多努力来构建重组酵母菌株以增强木糖发酵。由于木质纤维素生物质水解产物的复杂性,木糖发酵仍然具有挑战性。在这项研究中,开发了一种改良的基因组改组方法来改善酿酒酵母对木糖的发酵。重组酵母菌株是通过递归DNA改组与重组毕赤酵母和酿酒酵母的全基因组重组而构建的。

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