首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >Agricultural wastes as substrates for beta-glucosidase production by Talaromyces thermophilus: Role of these enzymes in enhancing waste paper saccharification
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Agricultural wastes as substrates for beta-glucosidase production by Talaromyces thermophilus: Role of these enzymes in enhancing waste paper saccharification

机译:农业废弃物作为塔拉莫氏菌科素生产的β-葡萄糖苷酶的基材:这些酶在增强废纸糖化中的作用

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摘要

In the present study, we investigated a potent extracellular -glucosidases secreted by the thermophilic fungal strain AX4 of Talaromyces thermophilus, isolated from Tunisian soil samples. This strain was selected referring to the highest thermostability of its -glucosidases compared to the other fungal isolates. The -glucosidase production was investigated by submerged fermentation. The optimal temperature and initial pH for maximum -glucosidase production were 50 degrees C and 7.0, respectively. Several carbon sources were assayed for their effects on -glucosidase production, significant yields were obtained in media containing lactose 1% (3.0 +/- 0.36U/ml) and wheat bran 2% (4.0 +/- 0.4U/ml). The combination of wheat bran at 2% and lactose at 0.8% as carbon source enhanced -glucosidase production, which reached 8.5 +/- 0.28U/ml. Furthermore, the -glucosidase-rich enzymatic juice of T. thermophilus exhibited significant synergism with Trichoderma reesei (Rut C30) cellulases for pretreated waste paper (PWP) hydrolysis. Interestingly, the use of this optimal enzymatic cocktail increased 4.23 fold the glucose yield after saccharification of waste paper. A maximum sugar yield (94%) was reached when using low substrate (2%) and enzyme loading (EC1).
机译:在本研究中,我们调查了由塔拉莫氏菌嗜热菌株AX4分泌的有效的细胞外溶剂,从突尼斯土壤样品中分离出来。与其他真菌分离株相比,选择该菌株的凝氧酶的最高稳定性。通过浸没式发酵研究 - 葡糖苷酶生产。最佳温度和最大凝集酶产生的初始pH分别为50℃和7.0。测定几种碳源对其对 - 葡糖苷酶产生的影响,在含有乳糖1%(3.0 +/- 0.36U / mL)和小麦麸(4.0 +/- 0.4u / ml)的培养基中获得显着收率。小麦麸的2%和乳糖的组合为0.8%,作为碳源增强 - 葡糖苷酶产生,其达到8.5 +/- 0.28 / ml。此外,富含硫化酶的富含硫酶的酶凝聚汁与预处理废纸(PWP)水解的Trichoderma Reesei(RUT C30)纤维素酸纤维素具有显着的协同作用。有趣的是,使用这种最佳酶促鸡尾酒的使用增加了4.23倍的废纸糖粉后的葡萄糖产量。使用低底物(2%)和酶负载(EC1)时,达到最大糖产率(94%)。

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