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Production of Cellulolytic Enzymes by Fungi Acrophialophora nainiana and Ceratocystis paradoxa Using Different Carbon Sources

机译:用不同碳源生产真菌贲门酰基氏菌和Ceratocystis悖论的纤维素溶解酶

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Although a number of filamentous fungi, such as Trichoderma and Aspergillus, are well known as producers of cellulases, xylanases, and accessory cellulolytic enzymes, the search for new strains and new enzymes has become a priority with the increase in diversity of biomass sources. Moreover, according to the type of pretreatment applied, biomass of the same type may require different enzyme blends to be efficiently hydrolyzed. This study evaluated cellulases, xylanases, and β-glucosidases produced by two fungi, the thermotolerant Acrophialophora nainiana and Ceratocystis paradoxa. Cells were grown in submerged culture on three carbon sources: lactose, wheat bran, or steam-pretreated sugarcane bagasse, a commonly used cattle feed in Brazil. Xylanase and endo-1-4-3-glucanase (CMCase) highest production were found in A. nainiana growing on lactose and reached levels of 2,200 and 2,016 IU/L, respectively. C. paradoxa showed highest activity for xylanase when grown on wheat bran and for β-glucosidase when grown on steam-treated bagasse, at levels of 12,728 and 1,068 IU/mL, respectively.
机译:虽然许多丝状真菌,如Trichoderma和曲霉,众所周知,纤维素酶,木聚糖酶和辅助纤维素酶的生产者,但对新菌株和新酶的寻找成为优先于生物质来源的多样性的增加。此外,根据所施加的预处理的类型,相同类型的生物质可能需要不同的酶共混物被有效地水解。该研究评估了由两种真菌,热电子古氏药毛刺肽和Ceratocystis悖论产生的纤维素酶,木聚糖酶和β-葡糖苷酶。细胞在三种碳源上淹没培养物中生长:乳糖,小麦麸或蒸汽预处理甘蔗甘蔗甘蔗,在巴西常用的牛饲料。木聚糖酶和Endo-1-4-3-葡聚糖酶(CMCASE)在乳糖生长的Niniana中发现最高产量,分别达到2,200和2,016 IU / L水平。 C. Paradoxa在小麦麸皮和β-葡糖苷酶上生长时,帕拉德曲面表现为木聚糖酶的最高活性分别在蒸汽处理的甘蔗渣中生长,分别为12,728和1,068 IU / mL。

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