首页> 外文会议>Biotechnology for Fuels and Chemicals >Use of a New Membrane-Reactor Saccharification Assay to Evaluate the Performance of Cellulases Under Simulated SSF Conditions Effect on Enzyme Quality of Growing Trichoderma reesei in the Presence of Targeted Lignocellulosic Substrate
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Use of a New Membrane-Reactor Saccharification Assay to Evaluate the Performance of Cellulases Under Simulated SSF Conditions Effect on Enzyme Quality of Growing Trichoderma reesei in the Presence of Targeted Lignocellulosic Substrate

机译:在模拟的SSF条件下使用新型膜反应器糖化分析评估纤维素酶的性能对木质素纤维素底物生长中里氏木霉酶质量的影响

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A new saccharification assay has been devised, in which a continuously buffer-swept membrane reactor is used to remove the solubilized saccharification products, thus allowing high extents of substrate conversion without significant inhibitory effects from the buildup of either cellobiose or glucose. This diafiltration saccharification assay (DSA) can, therefore, be used to obtain direct measurements of the performance of combinations of cellulase and substrate under simulated SSF conditions, without the saccharification results being complicated by factors that may influence the subsequent fermentation step. This assay has been used to compare the effectiveness of commercial and special in-house-produced Trichoderma reesei cellulase preparations in the saccharification of a standardized microcrystalline (Sigmacell) substrate and a dilute-acid pretreated lignocellulosic substrate. Initial results strongly suggest that enzyme preparations produced in the presence of the targeted lignocellulosic substrate will saccharify that substrate more effectively. These results call into question the widespread use of the "filter paper assay" as a reliable predictor of enzyme performance in the extensive hydrolysis of substrates that are quite different from filter paper in both physical properties and chemical composition.
机译:已经设计了一种新的糖化测定法,其中使用连续的缓冲液吹扫的膜反应器除去溶解的糖化产物,从而允许高水平的底物转化,而不会由于纤维二糖或葡萄糖的积累而产生显着的抑制作用。因此,该渗滤糖化测定法(DSA)可用于在模拟SSF条件下直接测量纤维素酶和底物组合的性能,而糖化结果不会因可能影响后续发酵步骤的因素而复杂化。该测定法已用于比较商业化和特殊内部生产的里氏木霉纤维素酶制剂在标准化微晶(Sigmacell)底物和经稀酸预处理的木质纤维素底物的糖化过程中的有效性。初步结果强烈表明,在目标木质纤维素底物存在下生产的酶制剂将更有效地糖化该底物。这些结果使人们质疑“滤纸测定法”作为广泛水解的底物的酶性能的可靠预测指标的广泛应用,这些底物在物理性质和化学组成上都与滤纸完全不同。

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