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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Co-cultivation of Trichoderma reesei RutC30 with three black Aspergillus strains facilitates efficient hydrolysis of pretreated wheat straw and shows promises for on-site enzyme production
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Co-cultivation of Trichoderma reesei RutC30 with three black Aspergillus strains facilitates efficient hydrolysis of pretreated wheat straw and shows promises for on-site enzyme production

机译:里氏木霉RutC30与三种黑色曲霉菌株的共培养有助于预处理小麦秸秆的有效水解,并显示出现场酶生产的希望

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摘要

Co-cultivation of fungi may be an excellent system for on-site production of cellulolytic enzymes in a single bioreactor. Enzyme supernatants from mixed cultures of Trichoderma reesei RutC30, with either the novel Aspergillus saccharolyticus AP, Aspergillus carbonarius ITEM 5010 or Aspergillus niger CBS 554.65 cultivated in solid-state fermentation were tested for avicelase, FPase, endoglucanase and beta-glucosidase activity as well as in hydrolysis of pretreated wheat straw. Around 30% more avicelase activity was produced in co-cultivation of T. reesei and A. saccharolyticus than in T. reesei monoculture, suggesting synergistic interaction between those fungi. Fermentation broths of mixed cultures of T. reesei with different Aspergillus strains resulted in approx. 80% efficiency of hydrolysis which was comparable to results obtained using blended supernatants from parallel monocultures. This indicates that co-cultivation of T. reesei with A. saccharolyticus or A. carbonarius could be a competitive alternative for monoculture enzyme production and a cheaper alternative to commercial enzymes.
机译:真菌的共培养可能是在单个生物反应器中现场生产纤维素分解酶的绝佳系统。测试了在固态发酵中培养的里氏木霉RutC30与新型解糖曲霉AP,碳曲霉ITEM 5010或黑曲霉CBS 554.65混合培养物中的酶上清液的吞噬酶,FPase,内切葡聚糖酶和β-葡萄糖苷酶活性以及预处理的麦秸水解。与里氏木霉单培养相比,里氏木霉和解糖曲霉的共培养产生的avicelase活性高出里氏木霉单培养约30%,表明这些真菌之间具有协同作用。里氏木霉与不同曲霉菌株的混合培养物的发酵液产生了大约80%的水解效率与使用平行单培养的混合上清液获得的结果相当。这表明里氏木霉与解糖曲霉或碳曲霉的共培养可能是生产单培养酶的竞争选择,也是商业酶的廉价选择。

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