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The potential of agro-industrial residues for production of holocellulase from filamentous fungi

机译:农用工业残留物从丝状真菌生产全纤维素酶的潜力

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Fungal species, including Aspergillus oryzae, Aspergillus terreus, Emericella nidulans, Penicillium citrinum, Fusarium verticillioides, Fusarium proliferatum and Paecilomyces lilacinum, were isolated from cotton processing residues. They were screened for their ability to produce holocellulases when grown in liquid-state media containing agro-industrial residues as the carbon sources. Experiments on the growth of filamentous fungi on culture media containing cotton residue as the carbon source is reported for the first time. For convenience, cultivation conditions (other than temperature) and enzyme assays were the same for all fungi, i.e., no attempt at optimization of individual was made. The objective of this work was to identify fungi and holocellulase (cellulase, hemicellulase and pectinase) of academic interest and as well as of potential commercial application. The pattern of holocellulase production was influenced by the type of agro-industrial residue present in the medium. The best yields of holocellulases were obtained from extracts of A. oryzae and A. terreus. Enzyme multiplicity was evidenced by fractionation of the crude extracts on ultrafiltration, gel filtration and ion-exchange chromatography procedures and zymogram analysis.
机译:真菌物种包括米曲霉,土曲霉,构巢曲霉,柠檬青霉菌,网状镰刀菌从棉花加工残留物中分离出/ i>, Fusarium proliferatum 和淡紫色拟青霉。在含有农业工业残留物作为碳源的液态培养基中生长时,筛选了它们产生全纤维素酶的能力。首次报道了丝状真菌在以棉花残渣为碳源的培养基上生长的实验。为方便起见,所有真菌的培养条件(除温度外)和酶测定均相同,即未尝试对个体进行优化。这项工作的目的是确定具有学术兴趣并具有潜在商业用途的真菌和全纤维素酶(纤维素酶,半纤维素酶和果胶酶)。全纤维素酶生产的模式受培养基中存在的农业工业残留物类型的影响。从iA的提取物中获得最佳的全纤维素酶产量。稻米和 A。地雷。通过在超滤,凝胶过滤和离子交换色谱程序以及酶谱分析上对粗提物进行分级分离来证明酶的多样性。

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