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利用农业工业木质纤维素废料生产低聚木糖益生元的生物工艺开发。

Bioprocess development for the production of xylooligosaccharide prebiotics from agro-industrial lignocellulosic waste.

作者信息

Dong Cheng-Di, Tsai Mei-Ling, Nargotra Parushi, Kour Bhavneet, Chen Chiu-Wen, Sun Pei-Pei, Sharma Vishal

机构信息

Department of Marine Environmental Engineering, National Kaohsiung University of Science and Technology, Kaohsiung City, Taiwan.

Institute of Aquatic Science and Technology, National Kaohsiung University of Science and Technology, Kaohsiung City, Taiwan.

出版信息

Heliyon. 2023 Jul 16;9(7):e18316. doi: 10.1016/j.heliyon.2023.e18316. eCollection 2023 Jul.

Abstract

The development of sustainable biorefineries and bioeconomy has been the mandate of most of the governments with major focus on restricting the climate change concerns and finding new strategies to maintain the global food supply chain. Xylooligosaccharides (XOS) are short-chain oligomers which due to their excellent prebiotic potential in the nutraceutical sector has attracted intense research focus in the recent years. The agro-industrial crop and food waste can be utilized for the production of XOS which are derived from hemicellulose fraction (xylan) of the lignocellulosic materials. The extraction of xylan, is traditionally achieved by acidic and alkaline pretreatments which, however, have limited industrial applications. The inclusion of cutting-edge and environmentally beneficial pretreatment methods and technologies such as deep eutectic solvents and green catalysts are preferred. Moreover, the extraction of xylans from biomass using combinatorial pretreatment approaches may help in economizing the whole bioprocess. The current review outlines the factors involved in the xylan extraction and depolymerization processes from different lignocellulosic biomass and the subsequent enzymatic hydrolysis for XOS production. The different types of oligosaccharides and their prebiotic potential for the growth of healthy gut bacteria have also been explained. The introduction of modern molecular technologies has also made it possible to identify enzymes and microorganisms with the desired characteristics for usage in XOS industrial production processes.

摘要

可持续生物精炼厂和生物经济的发展已成为大多数政府的任务,主要重点是限制对气候变化的担忧,并寻找维持全球食品供应链的新策略。低聚木糖(XOS)是短链寡聚物,由于其在营养保健品领域具有出色的益生元潜力,近年来吸引了广泛的研究关注。农业工业作物和食品废弃物可用于生产XOS,XOS来源于木质纤维素材料的半纤维素部分(木聚糖)。传统上,木聚糖的提取是通过酸性和碱性预处理来实现的,然而,这些预处理在工业上的应用有限。更倾向于采用前沿且环境友好的预处理方法和技术,如低共熔溶剂和绿色催化剂。此外,使用组合预处理方法从生物质中提取木聚糖可能有助于使整个生物过程更经济。本综述概述了从不同木质纤维素生物质中提取木聚糖和解聚过程以及随后用于生产XOS的酶水解过程中涉及的因素。还解释了不同类型的寡糖及其对健康肠道细菌生长的益生元潜力。现代分子技术的引入也使得识别具有所需特性的酶和微生物以用于XOS工业生产过程成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96a9/10372396/5ac975b53482/gr1.jpg

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