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Hydrolysis of various thai agricultural biomasses using the crude enzyme from Aspergillus aculeatus iizuka FR60 isolated from soil

机译:使用从土壤中分离的刺曲霉Iizuka FR60的粗酶水解泰国各种农业生物质

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摘要

In this study, forty-two fungi from soil were isolated and tested for their carboxymethyl cellulase (CMCase) and xylanase activities. From all isolates, the fungal isolate FR60, which was identified as Aspergillus aculeatus Iizuka, showed high activities in both CMCase and xylanase with 517 mU/mg protein and 550 mU/mg protein, respectively. The crude enzyme from A. aculeatus Iizuka FR60 could hydrolyze several agricultural residues such as corncob, and sweet sorghum leaf and stalk at comparable rates with respect to the tested commercial enzymes and with a maximum rate in rice hull hydrolysis (29 μg sugar g-1 dry weight substrate mg-1 enzyme hr-1). The highest amount of glucose was obtained from corncob by using the crude enzyme from A. aculeatus Iizuka FR60 (10.1 g/100 g dry substrate). From overall enzymatic treatment results, the lowest sugar yield was from rice hulls treatment (1.6 g/100 g dry weight) and the highest amount of reducing sugar was obtained from rice straw treatment (15.3 g/100 g dry weight). Among tested agricultural wastes, rice hull could not be effectively hydrolyzed by enzymes, whereas sugarcane leaf and stalk, and peanut shell could be effectively hydrolyzed (30-31% total sugar comparing with total sugar yield from acid treatment).
机译:在这项研究中,从土壤中分离出42种真菌,并测试了它们的羧甲基纤维素酶(CMCase)和木聚糖酶活性。在所有分离物中,真菌分离物FR60被鉴定为棘孢曲霉Iizuka,在CMCase和木聚糖酶中均表现出高活性,分别具有517 mU / mg蛋白和550 mU / mg蛋白。 Aculeatus Iizuka FR60的粗酶可以水解几种农业残留物,例如玉米芯,甜高粱叶和茎,其水解率与测试的商业酶相当,稻壳水解的最大速率(29μg糖g -1 干重底物mg -1 酶hr -1 )。通过使用棘孢曲霉饭冢FR60的粗酶(10.1 g / 100 g干底物),从玉米芯中获得最高量的葡萄糖。从总体酶处理结果来看,最低的糖产量来自稻壳处理(1.6 g / 100 g干重),最高的还原糖量来自稻草处理(15.3 g / 100 g干重)。在经过测试的农业废料中,稻壳不能被酶有效地水解,而甘蔗叶和茎,花生壳可以被有效地水解(与酸处理的总糖产量相比,总糖含量为30-31%)。

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