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Effect of Lignin Content on Cellulolytic Saccharification of Liquid Hot Water Pretreated Sugarcane Bagasse

机译:木质素含量对液态热水预处理甘蔗渣纤维素分解糖化的影响

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摘要

Lignin contributes to the rigid structure of the plant cell wall and is partially responsible for the recalcitrance of lignocellulosic materials to enzymatic digestion. Overcoming this recalcitrance is one the most critical issues in a sugar-flat form process. This study addresses the effect of low lignin sugarcane bagasse on enzymatic hydrolysis after liquid hot water pretreatment at 190 °C and 20 min (severity factor: 3.95). The hydrolysis of bagasse from a sugarcane line selected for a relatively low lignin content, gave an 89.7% yield of cellulose conversion to glucose at 40 FPU/g glucan versus a 68.3% yield from a comparably treated bagasse from the high lignin bred line. A lower enzyme loading of 5 FPU/g glucan (equivalent to 3.2 FPU/g total solids) resulted in 31.4% and 21.9% conversion yields, respectively, for low and high lignin samples, suggesting the significance of lignin content in the saccharification process. Further increases in the enzymatic conversion of cellulose to glucose were achieved when the bagasse sample was pre-incubated with a lignin blocking agent, e.g., bovine serum albumin (50 mg BSA/g glucan) at 50 °C for 1 h prior to an actual saccharification. In this work, we have demonstrated that even relatively small differences in lignin content can result in considerably increased sugar production, which supports the dissimilarity of bagasse lignin content and its effects on cellulose digestibility. The increased glucose yields with the addition of BSA helped to decrease the inhibition of non-productive absorption of cellulose enzymes onto lignin and solid residual lignin fractions.
机译:木质素有助于植物细胞壁的刚性结构,并且部分负责木质纤维素材料对酶消化的顽固性。克服这种顽固性是糖扁平形式工艺中最关键的问题之一。这项研究探讨了低木质素甘蔗渣对190°C液体热水预处理20分钟后酶解的影响(严重程度:3.95)。从木质素含量相对较低的甘蔗品系中水解甘蔗渣,在40 FPU / g葡聚糖的条件下,纤维素转化为葡萄糖的产率为89.7%,而从高木质素繁育品系中经过类似处理的蔗渣的产率为68.3%。较低的酶含量(5 FPU / g葡聚糖)(相当于3.2 FPU / g总固体)对低和高木质素样品分别产生31.4%和21.9%的转化率,表明木质素含量在糖化过程中的重要性。当将蔗渣样品与木质素封闭剂(例如牛血清白蛋白(50 mg BSA / g葡聚糖))在实际温度之前于50°C预孵育1 h时,纤维素酶向葡萄糖的酶促转化进一步增加。糖化。在这项工作中,我们已经证明,即使木质素含量的相对较小差异也可以导致糖产量的显着提高,这支持了甘蔗渣木质素含量的差异及其对纤维素消化率的影响。添加BSA可提高葡萄糖产量,有助于减少对纤维素酶对木质素和固体残留木质素级分非生产性吸收的抑制作用。

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