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首页> 外文期刊>Industrial Crops and Products >Value-addition of agricultural wastes for augmented cellulase and xylanase production through solid-state tray fermentation employing mixed-culture of fungi.
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Value-addition of agricultural wastes for augmented cellulase and xylanase production through solid-state tray fermentation employing mixed-culture of fungi.

机译:通过使用真菌的混合培养进行固态托盘发酵来增加纤维素酶和木聚糖酶产量的农业废物的增值。

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摘要

Solid-state fermentation (SSF) was performed to evaluate the potential of agricultural residues for the production of cellulase and hemicellulase using individual and mixed cultures of Aspergillus niger and Trichoderma reseei. The maximum filter paper (FP) cellulase activity of 13.57 IU/gram dry substrate (gds), 22.89 IU/gds and 24.17 IU/gds and beta -glucosidase activities of 21.69 IU/gds, 13.58 IU/gds and 24.54 IU/gds were obtained with wheat bran medium at 96 h incubation period with A. niger, T. reseei and mixed-cultures of A. niger and T. reseei, respectively. Mixed-culture SSF using rice straw supplemented with wheat bran in the ratio 3:2 resulted in higher FP cellulase, beta -glucosidase, endoglucanase (CMCase) and xylanase activities, compared to the activities obtained using mono-cultures. Similarly, higher FP cellulase, beta -glucosidase, CMCase and xylanase activities of 35.8 IU/gds (96 h), 33.71 IU/gds (96 h), 131.34 IU/gds (120 h) and 3106.34 IU/gds (120 h) were achieved in the tray fermentation using rice straw with wheat bran in the ratio of 3:2. Results of present investigation showed that higher cellulase activity and an optimal combination of cellulase and beta -glucosidase can be achieved through mixed-culture SSF in trays. The approach of utilizing negative cost agricultural wastes through tray fermentation for cellulase and hemicellulase production is expected to serve the objectives of: (a) management of wastes which would otherwise cause environmental pollution problems; (b) production of hydrolytic enzymes at low cost and; (c) simple technique requiring no sophisticated instruments with practical applications.
机译:进行了固态发酵(SSF),以使用黑曲霉和里氏木霉的单独和混合培养物评估农业残留物生产纤维素酶和半纤维素酶的潜力。最大滤纸(FP)纤维素酶活性分别为13.57 IU / g干底物(gds),22.89 IU / gds和24.17 IU / gds和β-葡萄糖苷酶活性分别为21.69 IU / gds,13.58 IU / gds和24.54 IU / gds在与iA孵育96小时的过程中,用麦麸培养基获得。尼日尔, T。 reseei 和 A的混合文化。尼日尔和 T。 reseei 。与使用单一培养物获得的活性相比,使用以3:2的比例添加麦麸的稻草进行的混合培养SSF产生了更高的FP纤维素酶,β-葡萄糖苷酶,内切葡聚糖酶(CMCase)和木聚糖酶活性。同样,较高的FP纤维素酶,β-葡萄糖苷酶,CMCase和木聚糖酶活性分别为35.8 IU / gds(96 h),33.71 IU / gds(96 h),131.34 IU / gds(120 h)和3106.34 IU / gds(120 h)在使用稻草与麦麸的比例为3:2的盘式发酵中获得的糖分含量最高。目前的研究结果表明,通过在托盘中混合培养SSF,可以实现更高的纤维素酶活性以及纤维素酶和β-葡萄糖苷酶的最佳组合。通过盘式发酵利用低成本农业废料生产纤维素酶和半纤维素酶的方法有望达到以下目标:(a)管理否则会引起环境污染问题的废料; (b)以低成本生产水解酶;和(c)简单的技术,不需要具有实际应用的精密仪器。

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