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Evaluation of Bacterial Expansin EXLX1 as a Cellulase Synergist for the Saccharification of Lignocellulosic Agro-Industrial Wastes

机译:细菌扩展素EXLX1作为纤维素增效剂用于木质纤维素农业工业废料糖化的评估

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摘要

Various types of lignocellulosic wastes extensively used in biofuel production were provided to assess the potential of EXLX1 as a cellulase synergist. Enzymatic hydrolysis of natural wheat straw showed that all the treatments using mixtures of cellulase and an optimized amount of EXLX1, released greater quantities of sugars than those using cellulase alone, regardless of cellulase dosage and incubation time. EXLX1 exhibited different synergism and binding characteristics for different wastes, but this can be related to their lignocellulosic components. The cellulose proportion could be one of the important factors. However, when the cellulose proportion of different biomass samples exhibited no remarkable differences, a higher synergism of EXLX1 is prone to occur on these materials, with a high proportion of hemicellulose and a low proportion of lignin. The information could be favorable to assess whether EXLX1 is effective as a cellulase synergist for the hydrolysis of the used materials. Binding assay experiments further suggested that EXLX1 bound preferentially to alkali pretreated materials, as opposed to acid pretreated materials under the assay condition and the binding preference would be affected by incubation temperature.
机译:提供了广泛用于生物燃料生产的各种类型的木质纤维素废料,以评估EXLX1作为纤维素酶增效剂的潜力。天然小麦秸秆的酶促水解表明,与纤维素酶的用量和孵育时间无关,所有使用纤维素酶和优化量的EXLX1的处理均比单独使用纤维素酶释放更多的糖分。 EXLX1对不同废物表现出不同的协同作用和结合特性,但这可能与其木质纤维素成分有关。纤维素比例可能是重要因素之一。但是,当不同生物量样品的纤维素比例没有显着差异时,这些材料容易发生EXLX1的更高协同作用,其中半纤维素的比例较高,木质素的比例较低。该信息可能有助于评估EXLX1作为纤维素酶增效剂是否能有效水解所用材料。结合测定实验进一步表明,在测定条件下,EXLX1优先与碱预处理的物质结合,而与酸预处理的物质相反,结合偏好会受到孵育温度的影响。

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