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首页> 外文期刊>International Biodeterioration & Biodegradation >Spent mushroom compost as substrate for the production of industrially important hydrolytic enzymes by fungi Trichoderma spp. and Aspergillus niger in solid state fermentation
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Spent mushroom compost as substrate for the production of industrially important hydrolytic enzymes by fungi Trichoderma spp. and Aspergillus niger in solid state fermentation

机译:用蘑菇堆肥作为基板,用于通过真菌Trichoderma SPP生产工业上重要的水解酶。 在固态发酵中的曲霉尼日尔

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摘要

Mushroom production is the biggest solid state fermentation industry in the world. Disposal and storage of spent mushroom compost (SMC) that remains after mushroom harvest poses a big economic and environmental problem. Production of industrially important hydrolytic enzymes by fungi on various agro-industrial wastes is a significant, open chapter in biotechnology. This paper proposes a novel application of SMC as substrate for cultivation of fungi in solid state fermentation (SSF) in order to obtain the enzymes cellulase, xylanase, amylase and beta-glucosidase. SMC can be used as a good substrate for cultivation of Trichoderma and Aspergillus without the addition of supplementary (nutritive) elements. Starting amount of SMC was reduced by 30% due to hydrolysis by a complex of cellulolytic enzymes. Material that is left behind is a more suitable fertilizer for horticulture. One fungal isolate was pointed out as a promising producer (Trichoderma atroviride isolate T42). It produced the greatest amount of total protein (0.204 mg mL(-1)), five isoforms of beta-glucosidase and the highest level (12 isoforms) of both endocellulase (0.76 U mL(-1)) and xylanase (2.31 U mL(-1)). The capacity of T42 to produce all examined enzymes in such a high number of isoforms demonstrates successful adaptation to new substrates. (C) 2015 Elsevier Ltd. All rights reserved.
机译:蘑菇生产是世界上最大的固态发酵产业。在蘑菇收获之后的废蘑菇堆肥(SMC)的处置和储存构成了大量的经济和环境问题。在各种农业工业废物上通过真菌生产的工业上重要的水解酶是生物技术的重要开放章。本文提出了一种新的SMC作为固态发酵(SSF)培养真菌底物的新施用,以获得酶纤维素酶,木聚糖酶,淀粉酶和β-葡糖苷酶。 SMC可用作良好的基质,用于培养Trichoderma和曲霉,而不添加补充(营养)元素。由于纤维素分解酶的复合物水解,SMC的起始量减少了30%。留下的材料是一种更合适的园艺肥料。指出了一种真菌孤立,作为一个有前途的生产商(Trichoderma阿托哌啶idateT42)。它产生了最多的总蛋白质(0.204mg ml(-1)),β-葡糖苷酶的五种同种型,内纤维素酶(0.76uml(-1))和木聚糖酶的最高水平(12同种型)(2.31u ml (-1))。在这种大量同种型中产生所有检查酶的T42的容量证明了对新基材的成功改编。 (c)2015 Elsevier Ltd.保留所有权利。

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