首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Construction of a Xylan-Fermenting Yeast Strain through Codisplay of Xylanolytic Enzymes on the Surface of Xylose-Utilizing Saccharomyces cerevisiae Cells
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Construction of a Xylan-Fermenting Yeast Strain through Codisplay of Xylanolytic Enzymes on the Surface of Xylose-Utilizing Saccharomyces cerevisiae Cells

机译:通过木糖利用酿酒酵母细胞表面的木聚糖分解酶的共同展示构建木聚糖发酵酵母菌株。

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摘要

Hemicellulose is one of the major forms of biomass in lignocellulose, and its essential component is xylan. We used a cell surface engineering system based on α-agglutinin to construct a Saccharomyces cerevisiae yeast strain codisplaying two types of xylan-degrading enzymes, namely, xylanase II (XYNII) from Trichoderma reesei QM9414 and β-xylosidase (XylA) from Aspergillus oryzae NiaD300, on the cell surface. In a high-performance liquid chromatography analysis, xylose was detected as the main product of the yeast strain codisplaying XYNII and XylA, while xylobiose and xylotriose were detected as the main products of a yeast strain displaying XYNII on the cell surface. These results indicate that xylan is sequentially hydrolyzed to xylose by the codisplayed XYNII and XylA. In a further step toward achieving the simultaneous saccharification and fermentation of xylan, a xylan-utilizing S. cerevisiae strain was constructed by codisplaying XYNII and XylA and introducing genes for xylose utilization, namely, those encoding xylose reductase and xylitol dehydrogenase from Pichia stipitis and xylulokinase from S. cerevisiae. After 62 h of fermentation, 7.1 g of ethanol per liter was directly produced from birchwood xylan, and the yield in terms of grams of ethanol per gram of carbohydrate consumed was 0.30 g/g. These results demonstrate that the direct conversion of xylan to ethanol is accomplished by the xylan-utilizing S. cerevisiae strain.
机译:半纤维素是木质纤维素中生物质的主要形式之一,其主要成分是木聚糖。我们使用基于α-凝集素的细胞表面工程系统来构建啤酒酵母酵母菌株,该菌株共展示两种类型的木聚糖降解酶,即里氏木霉QM9414的木聚糖酶II(XYNII)和米曲霉NiaD300的β-木糖苷酶(XylA)。 ,在细胞表面。在高效液相色谱分析中,木糖被检测为共同展示XYNII和XylA的酵母菌株的主要产物,而木糖和木糖被检测为在细胞表面上展示XYNII的酵母菌株的主要产物。这些结果表明,木聚糖被共展示的XYNII和XylA顺序水解为木糖。在实现木糖同时糖化和发酵的进一步步骤中,通过共展示XYNII和XylA并引入用于木糖利用的基因,即编码木糖还原酶和木糖醇脱氢酶的编码毕赤酵母和木糖醇激酶的基因,构建利用木聚糖的酿酒酵母菌株。来自酿酒酵母。发酵62小时后,从桦木木聚糖中直接生产出每升7.1 g乙醇,以每克消耗的碳水化合物克乙醇的产量为0.30 g / g。这些结果表明,木聚糖直接转化为乙醇是通过利用木聚糖的酿酒酵母菌株完成的。

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