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首页> 外文期刊>Bioscience, Biotechnology, and Biochemistry >Production of Multi-Fiber Modifying Enzyme from Mamillisphaeria sp. for Refining of Recycled Paper Pulp
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Production of Multi-Fiber Modifying Enzyme from Mamillisphaeria sp. for Refining of Recycled Paper Pulp

机译:从Mamillisphaeria sp。生产多纤维修饰酶。纸浆的精制

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摘要

Enzymatic modification of pulp is receiving increasing interest for energy reduction at the refining step of the paper-making process. In this study, the production of a multi-fiber modifying enzyme from Mamillisphaeria sp. BCC8893 was optimized in submerged fermentation using a response-surface methodology. Maximal production was obtained in a complex medium comprising wheat bran, soybean, and rice bran supplemented with yeast extract at pH 6.0 and a harvest time of 7d, resulting in 9.2IU/mL of carboxymethyl cellulase (CMCase), 14.9IU/mL of filter paper activity (FPase), and 242.7 IU/mL of xylanase. Treatment of old corrugated container pulp at 0.2-0.3 IU of CMCase/g of pulp led to reductions in refining energy of 8.5-14.8%. The major physical properties were retained, including tensile and compression strength. Proteomic analysis showed that the enzyme was a complex composite of endo-glucanases, cellobiohydrolases, beta-l,4-xylanases, and beta-glucanases belonging to various glycosyl hydrolase families, suggestive of cooperative enzyme action in fiber modification, providing the basis for refining efficiency.
机译:在造纸工艺的精制步骤中,纸浆的酶促改性越来越受到人们的关注,以降低能耗。在这项研究中,从Mamillisphaeria sp。生产一种多纤维修饰酶。 BCC8893在深层发酵中使用响应面方法进行了优化。在包含麦麸,大豆和米糠的复合培养基中获得最大产量,并辅以pH 6.0的酵母提取物,收获时间为7天,得到9.2IU / mL的羧甲基纤维素酶(CMCase),14.9IU / mL的过滤器纸活度(FPase)和242.7 IU / mL的木聚糖酶。以0.2-0.3 IU CMCase / g纸浆处理旧的瓦楞纸箱纸浆导致精炼能量降低8.5-14.8%。保留了主要的物理性能,包括拉伸强度和压缩强度。蛋白质组学分析表明,该酶是内切葡聚糖酶,纤维二糖水解酶,β-1,4-木聚糖酶和β-葡聚糖酶的复杂复合物,属于各种糖基水解酶家族,暗示了纤维修饰中的协同酶作用,为提纯提供了基础效率。

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