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Effects of a non-ionic surfactant, Tween 20, on adsorption/desorption of saccharification enzymes onto/from lignocelluloses and saccharification rate

机译:非离子表面活性剂Tween 20对糖化酶在木质纤维素上的吸附/解吸和糖化速率的影响

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In this work, we examined the role of a non-ionic surfactant, Tween 20, on enzymatic hydrolysis of lignocelluloses. Delignified lignocelluloses (pine wood chip) were used as model substrates. Effects of Tween 20 on adsorption/desorption onto/from lignocelluloses with and without hydrolysis were evaluated respectively. Tween 20 lowered the non-biospecific adsorption of β-glucosidase and enhanced the bio-specific adsorption of cellulase. Tween 20 did not affect the liquid phase reaction (cellobiose hydrolysis). However, for the solid surface reaction (cellulose hydrolysis), cellulose conversion for 72 hrs was increased 9-21% and 1-8.5% for samples with high lignin contents (PI) and low lignin contents (PIII) by injection of Tween 20 (0.024-0.24 mM), respectively. Moreover, Tween 20 increased the cellulose conversion rate substantially. It is suggested that the increase of cellulase amount adsorbed due to the increase of effective cellulose surface by Tween 20 contribute to the enhancement of cellulose conversion.
机译:在这项工作中,我们研究了非离子表面活性剂Tween 20在木质纤维素酶促水解中的作用。脱木质素纤维素(松木屑)用作模型底物。分别评估了吐温20对木质纤维素在有和没有水解条件下吸附/解吸的影响。 Tween 20降低了β-葡萄糖苷酶的非生物特异性吸附,并增强了纤维素酶的生物特异性吸附。吐温20不影响液相反应(纤维二糖水解)。但是,对于固体表面反应(纤维素水解),通过注入Tween 20(高木质素含量(PI)和低木质素含量(PIII)),样品72小时的纤维素转化率分别提高了9-21%和1-8.5%。 0.024-0.24 mM)。此外,吐温20显着提高了纤维素转化率。提示由于吐温20有效纤维素表面的增加引起的纤维素酶吸附量的增加有助于纤维素转化率的提高。

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