首页> 外文期刊>Journal of Agricultural and Food Chemistry >Solid-substrate fermentation of corn fiber by Phanerochaete chrysosporium and subsequent fermentation of hydrolysate into ethanol
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Solid-substrate fermentation of corn fiber by Phanerochaete chrysosporium and subsequent fermentation of hydrolysate into ethanol

机译:Phanerochaete chrysosporium对玉米纤维进行固体基质发酵,然后将水解产物发酵为乙醇

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The goal of this study was to develop a fungal process for ethanol production from corn fiber. Laboratory-scale solid-substrate fermentation was performed using the white-rot fungus Phanerochaete chrysosporium in 1 L polypropylene bottles as reactors via incubation at 37 degrees C for up to 3 days. Extracellular enzymes produced in situ by P. chrysosporium degraded lignin and enhanced saccharification of polysaccharides in corn fiber. The percentage biomass weight loss and Klason lignin reduction were 34 and 41%, respectively. Anaerobic incubation at 37 degrees C following 2 day incubation reduced the fungal sugar consumption and enhanced the in situ cellulolytic enzyme activities. Two days of aerobic solid-substrate fermentation of corn fiber with P. chrysosporium, followed by anaerobic static submerged-culture fermentation resulted in 1.7 g of ethanol/100 g of corn fiber in 6 days, whereas yeast (Saccharomyces cerevisiae) cocultured with P. chrysosporium demonstrated enhanced ethanol production of 3 g of ethanol/100 g of corn fiber. Specific enzyme activity assays suggested starch and hemi/cellulose contribution of fermentable sugar.
机译:这项研究的目的是开发一种从玉米纤维生产乙醇的真菌工艺。实验室规模的固体底物发酵是通过将白腐真菌Phanerochaete chrysosporium在1 L聚丙烯瓶中作为反应器,通过在37°C下孵育3天来进行的。金黄色葡萄球菌原位产生的细胞外酶降解木质素并增强玉米纤维中多糖的糖化作用。生物质失重百分比和Klason木质素减少百分比分别为34%和41%。在培养2天后于37摄氏度进行无氧培养,减少了真菌糖的消耗并增强了原位纤维素分解酶的活性。用金黄色葡萄球菌对玉米纤维进行两天的需氧固体底物发酵,然后进行厌氧静态深层培养发酵,在6天内产生1.7 g乙醇/ 100 g玉米纤维,而酵母(Saccharomyces cerevisiae)与P.共培养。金孢菌证明了3克乙醇/ 100克玉米纤维的乙醇产量增加。特定的酶活性测定表明可发酵糖的淀粉和半/纤维素含量。

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