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木聚糖酶处理碱性亚硫酸盐预处理甘蔗渣释放出的具有抗氧化活性的木聚糖、木寡糖和芳香结构。

Xylan, Xylooligosaccharides, and Aromatic Structures With Antioxidant Activity Released by Xylanase Treatment of Alkaline-Sulfite-Pretreated Sugarcane Bagasse.

作者信息

Silva Verônica Távilla F, Ruschoni Uirajá C M, Ferraz André, Milagres Adriane M F

机构信息

Departamento de Biotecnologia, Escola de Engenharia de Lorena, Universidade de São Paulo, São Paulo, Brazil.

出版信息

Front Bioeng Biotechnol. 2022 Jul 11;10:940712. doi: 10.3389/fbioe.2022.940712. eCollection 2022.

Abstract

Xylanase enzymes are useful to fractionate plant biomass, producing xylan, xylooligosaccharides (XOS), and antioxidant-derived XOS. In a biorefinery, pretreated biomass can be digested with xylanase prior to cellulose saccharification, enhancing the product portfolio in the process. With this vision, this study highlighted a wide range of new products attainable from alkaline-sulfite-pretreated sugarcane bagasse by treatments with endo-xylanase under controlled conditions. The developed process provided a crude extract corresponding to 29.7% (w/w) of pretreated sugarcane bagasse. The crude extract included a relatively polymeric glucuronoarabinoxylan fraction, DP2-DP6 xylooligosaccharides, and aromatic compounds. The enzymatically produced extract was fractionated with increasing ethanol concentrations [up to 90% (v/v)], providing precipitation of varied polymeric xylan fractions (48% (w/w) of the crude extract) with average molar masses ranging from 28 kDa to 3.6 kDa. The fraction soluble in 90% ethanol was subjected to adsorption on 4% (w/v) activated charcoal and eluted with an ethanol gradient from 10% to 70% (v/v), thus providing xylooligosaccharides and aromatic fractions. Most of the xylooligosaccharides (74% of the eluted sugars) were washed out in 10%-30% ethanol. DP2 and DP3 structures predominated in the 10% ethanol fraction, while DP5 structures were significantly enriched in the 30% ethanol fraction. Higher ethanol concentrations desorbed xylooligosaccharides associated with higher amounts of aromatic compounds. Total aromatics, phenolic structures, and -hydroxycinnamates predominated in the fractions desorbed with 60% and 70% ethanol. The antioxidant activity of produced fractions correlated with their phenolic contents. Compiled results indicate that a wide variety of products can be prepared from pretreated biomass using xylanase-aided extraction procedures. Recovered fractions presented different features and specific application prospects. Beyond polymeric xylan with low lignin contamination, xylooligosaccharides or even lignin-carbohydrate complexes with antioxidant activity can be included in the biorefinery portfolio based on the currently developed fractionation studies.

摘要

木聚糖酶可用于分离植物生物质,生产木聚糖、木寡糖(XOS)和具有抗氧化活性的衍生XOS。在生物炼制过程中,预处理后的生物质可在纤维素糖化之前先用木聚糖酶进行消化,从而增加该过程中的产品种类。基于此,本研究着重探讨了在受控条件下用内切木聚糖酶处理碱性亚硫酸盐预处理甘蔗渣后可获得的一系列新产品。所开发的工艺得到了一种粗提物,其产量相当于预处理甘蔗渣的29.7%(w/w)。粗提物中包括相对聚合的葡糖醛酸阿拉伯木聚糖组分、DP2-DP6木寡糖和芳香族化合物。将酶解产生的提取物用乙醇浓度递增法(最高至90%(v/v))进行分级分离,得到了不同聚合度的木聚糖组分沉淀(占粗提物的48%(w/w)),其平均摩尔质量范围为28 kDa至3.6 kDa。将可溶于90%乙醇的级分用4%(w/v)活性炭进行吸附,并用10%至70%(v/v)的乙醇梯度进行洗脱,从而得到木寡糖和芳香族级分。大部分木寡糖(占洗脱糖的74%)在10%-30%乙醇中被洗脱出来。DP2和DP3结构在10%乙醇级分中占主导地位,而DP5结构在30%乙醇级分中显著富集。较高乙醇浓度洗脱的木寡糖与更多的芳香族化合物相关联。总芳香族化合物、酚类结构和对羟基肉桂酸酯在60%和70%乙醇洗脱的级分中占主导地位。所产生级分的抗氧化活性与其酚类含量相关。汇总结果表明,使用木聚糖酶辅助提取方法可从预处理生物质中制备出多种产品。回收的级分具有不同的特性和特定的应用前景。除了低木质素污染的聚合木聚糖外,基于目前开展的分级分离研究,木寡糖甚至具有抗氧化活性的木质素-碳水化合物复合物也可纳入生物炼制产品组合中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b41/9313595/1d038da65199/fbioe-10-940712-g001.jpg

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