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      One-step fermentation for producing xylo-oligosaccharides from wheat bran by recombinant Escherichia coli containing an alkaline xylanase

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          Abstract

          Background

          One-step fermentation is a cheap way to produce xylo-oligosaccharides (XOS), where production of xylanases and XOS is integrated into a single process. In spite of cost advantage, one-step fermentation is still short in yield so far due to the limited exploration. To cope with this issue, production of XOS from wheat bran by recombinant Escherichia coli through one-step fermentation was investigated in this study.

          Results

          An endo-β-1,4-xylanase gene belonging to glycoside hydrolase family 11 of Bacillus agaradhaerens was employed to construct recombinant E. coli. This xylanase showed maximal activity at 60 °C and pH 8.0–8.5. Its activity retained more than 60% after incubation at 70 °C for 4 h, showing a good stability. The recombinant E. coli BL21(DE3) could secreted xylanases that directly hydrolyzed de-starched wheat bran to XOS in fermentation medium. The XOS generated from hydrolysis consisted of xylose, xylobiose and xylotriose accounting for 23.1%, 37.3% and 39.6%, respectively. Wheat bran concentration was found to be the most crucial factor affecting XOS production. The XOS concentration reached 5.3 mg/mL at 10% loading of wheat bran, which is higher than those of previous researches. Nitrogen source type could also affect production of XOS by changing extracellular xylanase activity, and glycine was found to be the best one for fermentation. Optimal fermentation conditions were finally studied using response surface optimization. The maximal concentration emerged at 44.3 °C, pH 7.98, which is affected by characteristics of the xylanase as well as growth conditions of E. coli.

          Conclusions

          This work indicates that the integrated fermentation using recombinant E. coli is highly competitive in cost and final concentration for producing XOS. Results can also provide theoretical basis for large-scale production and contribute to the wide adoption of XOS.

          Supplementary Information

          The online version contains supplementary material available at 10.1186/s12896-022-00736-8.

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          Most cited references49

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          Use of Dinitrosalicylic Acid Reagent for Determination of Reducing Sugar

          G L Miller (1959)
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            Prebiotics: Definition, Types, Sources, Mechanisms, and Clinical Applications

            Prebiotics are a group of nutrients that are degraded by gut microbiota. Their relationship with human overall health has been an area of increasing interest in recent years. They can feed the intestinal microbiota, and their degradation products are short-chain fatty acids that are released into blood circulation, consequently, affecting not only the gastrointestinal tracts but also other distant organs. Fructo-oligosaccharides and galacto-oligosaccharides are the two important groups of prebiotics with beneficial effects on human health. Since low quantities of fructo-oligosaccharides and galacto-oligosaccharides naturally exist in foods, scientists are attempting to produce prebiotics on an industrial scale. Considering the health benefits of prebiotics and their safety, as well as their production and storage advantages compared to probiotics, they seem to be fascinating candidates for promoting human health condition as a replacement or in association with probiotics. This review discusses different aspects of prebiotics, including their crucial role in human well-being.
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              Compositional Analysis of Lignocellulosic Feedstocks. 1. Review and Description of Methods

              As interest in lignocellulosic biomass feedstocks for conversion into transportation fuels grows, the summative compositional analysis of biomass, or plant-derived material, becomes ever more important. The sulfuric acid hydrolysis of biomass has been used to measure lignin and structural carbohydrate content for more than 100 years. Researchers have applied these methods to measure the lignin and structural carbohydrate contents of woody materials, estimate the nutritional value of animal feed, analyze the dietary fiber content of human food, compare potential biofuels feedstocks, and measure the efficiency of biomass-to-biofuels processes. The purpose of this paper is to review the history and lineage of biomass compositional analysis methods based on a sulfuric acid hydrolysis. These methods have become the de facto procedure for biomass compositional analysis. The paper traces changes to the biomass compositional analysis methods through time to the biomass methods currently used at the National Renewable Energy Laboratory (NREL). The current suite of laboratory analytical procedures (LAPs) offered by NREL is described, including an overview of the procedures and methodologies and some common pitfalls. Suggestions are made for continuing improvement to the suite of analyses.
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                Author and article information

                Contributors
                1070184179@qq.com
                liucong0426@126.com
                1935428354@qq.com
                rockdong2015@126.com
                sundi047@126.com
                zjr_20120915@126.com
                leonliu2013@126.com
                Journal
                BMC Biotechnol
                BMC Biotechnol
                BMC Biotechnology
                BioMed Central (London )
                1472-6750
                5 February 2022
                5 February 2022
                2022
                : 22
                : 6
                Affiliations
                GRID grid.411857.e, ISNI 0000 0000 9698 6425, Jiangsu Key Laboratory of Phylogenomics and Comparative Genomics, School of Life Science, , Jiangsu Normal University, ; No. 101, Shanghai Road, Tongshan District, Xuzhou, 221116 Jiangsu Province China
                Article
                736
                10.1186/s12896-022-00736-8
                8817556
                35123477
                d7c0217b-6bfb-4999-b99c-06a8b13692ab
                © The Author(s) 2022

                Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver ( http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.

                History
                : 1 October 2021
                : 28 January 2022
                Funding
                Funded by: The Natural Science Foundation of the Jiangsu Higher Education Institutions of China
                Award ID: 20KJB180001; 20KJA180007
                Award ID: 20KJB180001; 20KJA180007
                Award Recipient :
                Funded by: National Natural Science Foundation of China
                Award ID: 31970036, 31900401 and 31800020
                Award ID: 31970036, 31900401 and 31800020
                Award ID: 31970036, 31900401 and 31800020
                Award Recipient :
                Categories
                Research
                Custom metadata
                © The Author(s) 2022

                Biotechnology
                prebiotics,bacillus agaradhaerens,single-step fermentation,xylanase,response surface optimization

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