首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Unravelling the capability of Pyrenophora phaeocomes S-1 for the production of ligno-hemicellulolytic enzyme cocktail and simultaneous bio-delignification of rice straw for enhanced enzymatic saccharification
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Unravelling the capability of Pyrenophora phaeocomes S-1 for the production of ligno-hemicellulolytic enzyme cocktail and simultaneous bio-delignification of rice straw for enhanced enzymatic saccharification

机译:揭示Pyrenophora phaeocomes S-1产生木质半纤维素分解酶鸡尾酒的能力以及稻草同时进行生物脱木质以增强酶促糖化的能力

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摘要

A natural variant of Pyrenophora phaeocomes isolated from natural biodiversity was able to grow on various agricultural residues by co-producing laccase, xylanase and mannanase. Solid state fermentation of rice straw induced the highest productivities corresponding to 10,859.51 +/- 46.74, 22.01 +/- 1.00 and 10.45 +/- 0.128 IU gds(-1) for laccase, xylanase and mannanase respectively after 4 days. Besides producing the ligno-hemicellulolytic enzyme cocktail, 40 days cultivation of P. phaeocomes S-1 on rice straw brought about the 63 and 51% degradation of lignin and hemicellulose. These components were further removed with mild alkali extraction revealing the overall losses amounting to 78 and 60% respectively for lignin, and hemicellulose. The biologically pretreated straw upon enzymatic hydrolysis revealed 50% saccharification efficiency releasing 470 mg g(-1) sugars. Application of this knowledge will lead to efficient management of waste rice straw with low cost production of industrially important enzymes cocktail and its biological delignification for effective enzymatic hydrolysis to free sugars. (C) 2016 Published by Elsevier Ltd.
机译:从自然生物多样性中分离出的一种自然生孢菌(Pyrenophora phaeocomes)变种能够通过共同生产漆酶,木聚糖酶和甘露聚糖酶在各种农业残留物上生长。 4天后,稻草的固态发酵诱导的最高生产率分别为漆酶,木聚糖酶和甘露聚糖酶分别为10,859.51 +/- 46.74、22.01 +/- 1.00和10.45 +/- 0.128 IU gds(-1)。除了生产木质纤维素-半纤维素分解酶混合物外,在稻草上培养豆腐乳球菌S-1 40天还导致木质素和半纤维素降解了63%和51%。用温和的碱萃取进一步除去这些成分,发现木质素和半纤维素的总损失分别为78%和60%。经过酶水解的生物预处理秸秆显示出50%的糖化效率,释放出470 mg g(-1)糖。这些知识的应用将导致废稻草的有效管理,并以低成本生产工业上重要的酶混合物,并对其进行生物脱木素,以有效地酶解为游离糖。 (C)2016由Elsevier Ltd.出版

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