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Improved sugar yields from biomass sorghum feedstocks: comparing low-lignin mutants and pretreatment chemistries

机译:提高生物质高粱原料的糖产量:比较低木质素突变体和预处理化学物质

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摘要

BackgroundFor biofuel production processes to be economically efficient, it is essential to maximize the production of monomeric carbohydrates from the structural carbohydrates of feedstocks. One strategy for maximizing carbohydrate production is to identify less recalcitrant feedstock cultivars by performing some type of experimental screening on a large and diverse set of candidate materials, or by identifying genetic modifications (random or directed mutations or transgenic plants) that provide decreased recalcitrance. Economic efficiency can also be increased using additional pretreatment processes such as deacetylation, which uses dilute NaOH to remove the acetyl groups of hemicellulose prior to dilute acid pretreatment. In this work, we used a laboratory-scale screening tool that mimics relevant thermochemical pretreatment conditions to compare the total sugar yield of three near-isogenic brown midrib (bmr) mutant lines and the wild-type (WT) sorghum cultivar. We then compared results obtained from the laboratory-scale screening pretreatment assay to a large-scale pretreatment system.
机译:背景技术为了使生物燃料生产过程具有经济效益,必须从原料的结构性碳水化合物中最大限度地生产单体碳水化合物。最大化碳水化合物产量的一种策略是通过在大量多样的候选材料上进行某种类型的实验筛选,或者通过鉴定提供降低的顽固性的遗传修饰(随机或有向突变或转基因植物)来鉴定较少顽固性原料的品种。使用其他预处理工艺(例如脱乙酰化)也可以提高经济效率,脱乙酰处理是在稀酸预处理之前使用稀NaOH除去半纤维素的乙酰基。在这项工作中,我们使用了一种实验室规模的筛选工具,该工具模仿了相关的热化学预处理条件,以比较三种近等基因的棕色中脉(bmr)突变株和野生型(WT)高粱品种的总糖产量。然后,我们将实验室规模的筛选预处理测定与大规模预处理系统获得的结果进行了比较。

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