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Improvement of wheat straw hydrolysis by cellulolytic blends of two Penicillium spp.

机译:两种青霉菌的纤维素分解混合物改善小麦秸秆的水解。

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Co-culture of fungal strains Penicillium janthinellum EMS-UV-8 (E), Penicillium funiculosum strain P (P) and Aspergillus sp. strain G (G) and blending of their crude cellulase were evaluated for improvements in cellulase activities as well as for enhanced hydrolysis of dilute acid pretreated wheat straw (PWS). The blending of crude enzymes of P and E enhanced the hydrolysis of PWS more effectively due to synergism in cellulolytic enzyme activities. Here, three types of blends were made on the basis of equal FPUs, equal protein content or fixed volume containing different proportions of individual enzymes, the former blend hydrolyzed 42.6% of PWS due to the 98%,62%, 64% and 34% synergistic enhancement in endoglucanase, cellulase (FPU), beta-glucosidase and xylanase activities, respectively. Hydrolysis at 10% solid loading of PWS in roller bottle reactor with this blend further enhanced hydrolysis yield to 74% within 24 h, which was much better than the corresponding hydrolysis yields of individual (38.1% by E and 61.5% by P) or the commercial enzyme (623%). This study proved that synergistic blends of cellulases from two Penicillium spp. are cost-effective tools for efficient wheat straw hydrolysis for on-site biofuel production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:真菌菌株Janthinellum EMS-UV-8(E),真菌青霉P(P)和曲霉属sp的共培养。评估了菌株G(G)及其粗纤维素酶的掺混,以改善纤维素酶的活性,以及​​增强稀酸预处理的小麦秸秆(PWS)的水解能力。由于纤维素分解酶活性的协同作用,P和E粗酶的混合更有效地增强了PWS的水解。在此,根据相同的FPU,相同的蛋白质含量或包含不同比例的单个酶的固定体积制作了三种类型的混合物,前一种混合物水解了PWS的42.6%,这是由于98%,62%,64%和34%内切葡聚糖酶,纤维素酶(FPU),β-葡萄糖苷酶和木聚糖酶活性分别协同增强。 PWS在固含量为10%的滚瓶反应器中水解时,在24小时内的水解率进一步提高到74%,这比单独的相应水解率(E为38.1%,P为61.5%)要好。商业酶(623%)。这项研究证明了两种青霉属的纤维素酶的协同混合物。是用于高效秸秆水解以现场生产生物燃料的经济有效工具。 (C)2016 Elsevier Ltd.保留所有权利。

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