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首页> 外文期刊>BioMed research international >Effect of Different Pretreatment of Sugar Cane Bagasse on Cellulase and Xylanases Production by the MutantPenicillium echinulatum9A02S1 Grown in Submerged Culture
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Effect of Different Pretreatment of Sugar Cane Bagasse on Cellulase and Xylanases Production by the MutantPenicillium echinulatum9A02S1 Grown in Submerged Culture

机译:不同预处理甘蔗渣处理对深层培养中突变的棘孢青霉菌9A02S1产生纤维素酶和木聚糖酶的影响

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The main limitation to the industrial scale hydrolysis of cellulose is the cost of cellulase production. This study evaluated cellulase and xylanase enzyme production by the cellulolytic mutantPenicillium echinulatum9A02S1 using pretreated sugar cane bagasse as a carbon source. Most cultures grown with pretreated bagasse showed similar enzymatic activities to or higher enzymatic activities than cultures grown with cellulose or untreated sugar cane bagasse. Higher filter paper activity (1.253 ± 0.147 U·mL−1) was detected in the medium on the sixth day of cultivation when bagasse samples were pretreated with sodium hydroxide, hydrogen peroxide, and anthraquinone. Endoglucanase enzyme production was also enhanced by pretreatment of the bagasse. Nine cultures grown with bagasse possessed higherβ-glucosidase activities on the sixth day than the culture grown with cellulose. The highest xylanase activity was observed in cultures with cellulose and with untreated sugar cane bagasse. These results indicate that pretreated sugar cane bagasse may be able to serve as a partial or total replacement for cellulose in submerged fermentation for cellulase production usingP. echinulatum,which could potentially reduce future production costs of enzymatic complexes capable of hydrolyzing lignocellulosic residues to form fermented syrups.
机译:纤维素工业规模水解的主要限制是纤维素酶的生产成本。这项研究使用预处理的甘蔗渣作为碳源,评估了纤维素分解突变株Penicillium echinulatum9A02S1产生的纤维素酶和木聚糖酶的产量。与用纤维素或未处理的甘蔗渣培养的培养物相比,大多数用预处理的蔗渣培养的培养物显示出相似的酶活性或更高的酶活性。在培养的第六天,用氢氧化钠,过氧化氢和蒽醌对甘蔗渣样品进行预处理后,培养基中的滤纸活性更高(1.253±0.1473U·mL-1)。甘蔗渣的预处理还提高了内切葡聚糖酶的产量。第六天,用蔗渣培养的九种培养物比用纤维素培养的培养物具有更高的β-葡萄糖苷酶活性。在具有纤维素和未经处理的甘蔗渣的培养物中观察到最高的木聚糖酶活性。这些结果表明,预处理的甘蔗渣可以在使用P生产纤维素酶的深层发酵中用作纤维素的部分或全部替代品。可能会降低酶复合物的未来生产成本,该酶复合物能够水解木质纤维素残留物以形成发酵糖浆。

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