首页> 外文期刊>Journal of industrial microbiology & biotechnology >Ethanol production from alkali-treated rice straw via simultaneous saccharification and fermentation using newly isolated thermotolerant Pichia kudriavzevii HOP-1
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Ethanol production from alkali-treated rice straw via simultaneous saccharification and fermentation using newly isolated thermotolerant Pichia kudriavzevii HOP-1

机译:使用新分离的耐热毕赤酵母(Pichia kudriavzevii HOP-1)通过同时糖化和发酵从碱处理过的稻草中生产乙醇

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In this study, simultaneous saccharification and fermentation (SSF) was employed to produce ethanol from 1% sodium hydroxide-treated rice straw in a thermostatically controlled glass reactor using 20 FPU gds(-1) cellulase, 50 IU gds(-1) beta-glucosidase, 15 IU gds(-1) pectinase and a newly isolated thermotolerant Pichia kudriavzevii HOP-1 strain. Scanning electron micrograph images showed that the size of the P. kudriavzevii cells ranged from 2.48 to 6.93 mu m in diameter while the shape of the cells varied from oval, ellipsoidal to elongate. Pichia kudriavzevii cells showed extensive pseudohyphae formation after 5 days of growth and could assimilate sugars like glucose, sucrose, galactose, fructose, and mannose but the cells could not assimilate xylose, arabinose, cellobiose, raffinose, or trehalose. In addition, the yeast cells could tolerate up to 40% glucose and 5% NaCl concentrations but their growth was inhibited at 1% acetic acid and 0.01% cyclohexamide concentrations. Pichia kudriavzevii produced about 35 and 200% more ethanol than the conventional Saccharomyces cerevisiae cells at 40 and 45A degrees C, respectively. About 94% glucan in alkali-treated rice straw was converted to glucose through enzymatic hydrolysis within 36 h. Ethanol concentration of 24.25 g l(-1) corresponding to 82% theoretical yield on glucan basis and ethanol productivity of 1.10 g l(-1) h(-1) achieved using P. kudriavzevii during SSF hold promise for scale-up studies. An insignificant amount of glycerol and no xylitol was produced during SSF. To the best of our knowledge, this is the first study reporting ethanol production from any lignocellulosic biomass using P. kudriavzevii.
机译:在这项研究中,同时糖化和发酵(SSF)用于在恒温控制的玻璃反应器中使用20 FPU gds(-1)纤维素酶,50 IU gds(-1)β-葡糖苷酶,15 IU gds(-1)果胶酶和新分离的耐热毕赤酵母毕赤酵母HOP-1菌株。扫描电子显微镜图像显示,库氏假单胞菌细胞的大小在2.48至6.93μm的直径范围内,而细胞的形状从椭圆形,椭圆形到细长形不等。毕赤氏毕赤酵母细胞在生长5天后显示出广泛的假菌丝形成,可以同化葡萄糖,蔗糖,半乳糖,果糖和甘露糖等糖,但不能同化木糖,阿拉伯糖,纤维二糖,棉子糖或海藻糖。此外,酵母细胞可耐受高达40%的葡萄糖和5%的NaCl浓度,但在1%的乙酸和0.01%的环己酰胺浓度下其生长受到抑制。在40和45摄氏度下,库尔德毕赤酵母比常规酿酒酵母细胞分别生产的乙醇多出约35%和200%。碱处理的稻草中约94%的葡聚糖在36小时内通过酶水解转化为葡萄糖。乙醇浓度为24.25 g l(-1),相当于以葡聚糖为基础的理论产率的82%,使用S. kudriavzevii在SSF中获得的乙醇生产率为1.10 g l(-1)h(-1),这有望扩大规模。 SSF期间产生的甘油量很小,没有木糖醇产生。据我们所知,这是第一项报道使用库氏假单胞菌从任何木质纤维素生物质生产乙醇的研究。

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