首页> 外文期刊>Journal of industrial microbiology & biotechnology >Bioconversion of Agave tequilana fructans by exo-inulinases from indigenous Aspergillus niger CH-A-2010 enhances ethanol production from raw Agave tequilana juice
【24h】

Bioconversion of Agave tequilana fructans by exo-inulinases from indigenous Aspergillus niger CH-A-2010 enhances ethanol production from raw Agave tequilana juice

机译:来自本地黑曲霉CH-A-2010的外切菊糖酶对龙舌兰龙舌兰酒果糖的生物转化可提高龙舌兰龙舌兰酒原汁的乙醇产量

获取原文
获取原文并翻译 | 示例
           

摘要

Agave tequilana fructans are the source of fermentable sugars for the production of tequila. Fructans are processed by acid hydrolysis or by cooking in ovens at high temperature. Enzymatic hydrolysis is considered an alternative for the bioconversion of fructans. We previously described the isolation of Aspergillus niger CH-A-2010, an indigenous strain that produces extracellular inulinases. Here we evaluated the potential application of A. niger CH-A-2010 inulinases for the bioconversion of A. tequilana fructans, and its impact on the production of ethanol. Inulinases were analyzed by Western blotting and thin layer chromatography. Optimal pH and temperature conditions for inulinase activity were determined. The efficiency of A. niger CH-A-2010 inulinases was compared with commercial enzymes and with acid hydrolysis. The hydrolysates obtained were subsequently fermented by Saccharomyces cerevisiae to determine the efficiency of ethanol production. Results indicate that A. niger CH-A-2010 predominantly produces an exo-inulinase activity. Optimal inulinase activity occurred at pH 5.0 and 50 degrees C. Hydrolysis of raw agave juice by CH-A-2010 inulinases yielded 33.5 g/l reducing sugars, compared with 27.3 g/l by FructozymeReg. (Novozymes Corp, Bagsvaerd, Denmark) and 29.4 g/l by acid hydrolysis. After fermentation of hydrolysates, we observed that the conversion efficiency of sugars into ethanol was 97.5% of the theoretical ethanol yield for enzymatically degraded agave juice, compared to 83.8% for acid-hydrolyzed juice. These observations indicate that fructans from raw Agave tequilana juice can be efficiently hydrolyzed by using A. niger CH-A-2010 inulinases, and that this procedure impacts positively on the production of ethanol.
机译:龙舌兰龙舌兰酒果聚糖是龙舌兰酒生产中可发酵糖的来源。果糖是通过酸水解或在高温烤箱中烹饪而制成的。酶水解被认为是果聚糖生物转化的替代方法。我们之前曾描述过黑曲霉CH-A-2010(一种产生细胞外菊粉酶的本地菌株)的分离。在这里,我们评估了黑曲霉CH-A-2010菊粉酶在A. tequilana fructans的生物转化中的潜在应用及其对乙醇生产的影响。通过蛋白质印迹和薄层色谱法分析菊粉酶。确定了菊粉酶活性的最佳pH和温度条件。将黑曲霉CH-A-2010菊粉酶的效率与市售酶和酸水解进行了比较。随后将获得的水解物通过酿酒酵母发酵以确定乙醇生产的效率。结果表明,黑曲霉CH-A-2010主要产生外切菊粉酶活性。最佳菊粉酶活性在pH 5.0和50摄氏度下发生。CH-A-2010菊粉酶水解龙舌兰原汁可产生33.5 g / l的还原糖,而FructozymeReg则为27.3 g / l。 (Novozymes Corp,Bagsvaerd,丹麦)和29.4 g / l通过酸水解。水解产物发酵后,我们观察到,酶法降解的龙舌兰汁中糖类向乙醇的转化效率为理论乙醇产率的97.5%,而酸水解汁为83.8%。这些观察结果表明,使用黑曲霉CH-A-2010菊粉酶可以有效地水解龙舌兰龙舌兰汁原汁中的果聚糖,并且该过程对乙醇的生产有积极影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号