Victoria Juliet, Odaneth Annamma, Lali Arvind
a DBT-ICT Centre of Energy Biosciences , Institute of Chemical Technology , Mumbai , India.
Prep Biochem Biotechnol. 2017 Jul 3;47(6):547-553. doi: 10.1080/10826068.2016.1275006. Epub 2017 Jan 3.
Depolymerization of lignocellulosic biomass is catalyzed by groups of enzymes whose action is influenced by substrate features and the composition of cellulase preparation. Cellulases contain a mixture of variety of enzymes, whose proportions dictate the saccharification of biomass. In the current study, four cellulase preparation varying in their composition were used to hydrolyze two types of alkali-treated biomass (aqueous ammonia-treated rice straw and sodium hydroxide-treated rice straw) to study the effect on catalytic rate, saccharification yields, and sugar release profile. We found that substrate features affected the extent of saccharification but had minimal effect on the sugar release pattern. In addition, complete hydrolysis to glucose was observed with enzyme preparation having at least a cellobiase units (CBU)/carboxymethyl cellulose (CMC) ratio (>0.15), while a modified enzyme ratio can be used for oligosaccharide synthesis. Thus, cellulase preparation with defined ratios of the three main enzymes can improve the saccharification which is of utmost importance in defining the success of lignocellulose-based economies.
木质纤维素生物质的解聚由多组酶催化,这些酶的作用受底物特性和纤维素酶制剂组成的影响。纤维素酶包含多种酶的混合物,其比例决定了生物质的糖化作用。在本研究中,使用了四种组成不同的纤维素酶制剂来水解两种碱处理生物质(氨水预处理稻草和氢氧化钠预处理稻草),以研究其对催化速率、糖化产率和糖释放曲线的影响。我们发现底物特性影响糖化程度,但对糖释放模式影响极小。此外,当酶制剂的纤维二糖酶单位(CBU)/羧甲基纤维素(CMC)比率至少大于0.15时,可观察到完全水解为葡萄糖,而可使用改良的酶比率进行低聚糖合成。因此,具有确定比例的三种主要酶的纤维素酶制剂可提高糖化作用,这对于确定基于木质纤维素的经济的成功至关重要。