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干燥诱导的纤维角质化对木质纤维素酶解糖化的影响。

Effects of drying-induced fiber hornification on enzymatic saccharification of lignocelluloses.

机构信息

State Key Lab Pulp and Paper Engineering, South China University of Technology, Guangzhou, China.

出版信息

Enzyme Microb Technol. 2011 Jan 5;48(1):92-9. doi: 10.1016/j.enzmictec.2010.09.014. Epub 2010 Oct 27.

Abstract

This study investigated the effect of fiber hornification during drying on lignocellulosic substrate enzymatic saccharification. Two chemically pretreated wood substrates and one commercial bleached kraft hardwood pulp were used. Heat drying at 105 and 150°C and air drying at 50% RH and 23.8°C for different durations were applied to produce substrate with various degrees of hornification. It was found that substrate enzymatic digestibilities (SEDs) of hornified substrates made from the same never-dried sample correlate very well to an easily measurable parameter, water retention value (WRV), and can be fitted by a Boltzmann function. The hornification-produced SED reduction at a given degree of hornification as the percentage of the total SED reduction when the substrate is completely hornified depends on two parameters. The first is WRV¯, which is primarily a function of the effective enzyme molecule size, and Δ, which is related to the substrate pore size distribution shape. The low values of SED(CH), SED of a completely hornified substrate, obtained from curve fittings for the three sets of samples studied, suggest that enzyme accessibility to cellulose is mainly through the pores in the cell wall rather than substrate external surface. The SEDs of hornified substrates were found to correlate to Simons' staining measurements well. A new parameter was proposed to better correlate enzyme accessibility to cellulose using the two-color Simons' staining technique.

摘要

本研究考察了干燥过程中纤维角质化对木质纤维素基质酶解糖化的影响。使用了两种化学预处理的木材基质和一种商业漂白硫酸盐阔叶木浆。在 105 和 150°C 下进行热干燥,在 50% RH 和 23.8°C 下进行空气干燥,持续不同时间,以产生具有不同角质化程度的基质。结果发现,由相同未干燥样品制成的角质化基质的酶解消化率(SED)与一个易于测量的参数——保水值(WRV)密切相关,可以用 Boltzmann 函数拟合。在给定的角质化程度下,角质化产生的 SED 降低率占基质完全角质化时总 SED 降低率的百分比取决于两个参数。第一个参数是 WRV¯,它主要是有效酶分子大小的函数,而 Δ 则与基质孔径分布形状有关。从三组研究样本的曲线拟合得到的低 SED(CH)值和完全角质化底物的 SED 值表明,酶对纤维素的可及性主要是通过细胞壁中的孔,而不是通过基质的外部表面。发现角质化基质的 SED 值与西蒙斯染色测量值很好地相关。提出了一个新的参数,使用双色西蒙斯染色技术更好地关联酶对纤维素的可及性。

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