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木寡糖结肠发酵中链长的影响。

Influence of chain length on the colonic fermentation of xylooligosaccharides.

机构信息

School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Block N1.2, 62 Nanyang Drive, 637459, Singapore.

School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Block N1.2, 62 Nanyang Drive, 637459, Singapore; Institute of Food Science and Technology, National Taiwan University, No. 1, Section 4, Roosevelt Road, Taipei 10617, Taiwan.

出版信息

Carbohydr Polym. 2024 May 1;331:121869. doi: 10.1016/j.carbpol.2024.121869. Epub 2024 Jan 26.


DOI:10.1016/j.carbpol.2024.121869
PMID:38388037
Abstract

Xylooligosaccharides (XOS) have been employed as prebiotics containing oligomers of varying sizes or molecular ratios. XOS with a low degree of polymerization (DP) has been demonstrated to have high prebiotic potential. However, there is limited information regarding the specific chain length of XOS required to elicit distinct responses in the gut microbiota. In this study, we aimed to explore whether variations in XOS DP could alter the fate of colonic fermentation. Five XOS fractions (BWXFs) with DP ranges of >40, 20-40, 10-20, 5-10, and 2-4 were prepared by beechwood xylan autohydrolysis and tested on human gut microbiota. Extracellular XOS degradation was observed for molecules with a DP exceeding 5. BWXF treatments altered the microbial community structures, and substrate size-dependent effects on the microbial composition and metabolic outputs were observed. Bacteroidaceae were specifically enriched by xylan. Lachnospiraceae were particularly stimulated by XOS with a DP of 20-40 and 2-4. Bifidobacteriaceae were notably enriched by XOS with a DP of 5-20. High butyrate yields were obtained from cultures containing long-chain BWXFs. Microbiota responses differed with XOS DP composition changes, and microbial competition with XOS with a DP of 2-4 requires further exploration.

摘要

低聚木糖(XOS)已被用作含有不同大小或分子比的低聚物的益生元。具有低聚合度(DP)的 XOS 已被证明具有很高的益生元潜力。然而,关于在肠道微生物群中引起不同反应所需的 XOS 特定链长的信息有限。在这项研究中,我们旨在探讨 XOS DP 的变化是否会改变结肠发酵的命运。通过桦木木聚糖自水解制备了 DP 范围为>40、20-40、10-20、5-10 和 2-4 的五种 XOS 级分(BWXFs),并对其进行了测试。观察到 DP 超过 5 的分子的细胞外 XOS 降解。BWXF 处理改变了微生物群落结构,并观察到底物大小对微生物组成和代谢产物的依赖性影响。木聚糖特别富集拟杆菌科。DP 为 20-40 和 2-4 的 XOS 特别刺激厚壁菌门。DP 为 5-20 的 XOS 显著富集双歧杆菌科。含有长链 BWXFs 的培养物产生高丁酸产量。XOS DP 组成变化引起的微生物反应不同,需要进一步探索与 DP 为 2-4 的 XOS 竞争的微生物。

相似文献

[1]
Influence of chain length on the colonic fermentation of xylooligosaccharides.

Carbohydr Polym. 2024-5-1

[2]
An integrated process to produce prebiotic xylooligosaccharides by autohydrolysis, nanofiltration and endo-xylanase from alkali-extracted xylan.

Bioresour Technol. 2020-6-13

[3]
Evaluation of nutraceutical application of xylooligosaccharide enzymatically produced from cauliflower stalk for its value addition through a sustainable approach.

Food Funct. 2021-6-21

[4]
Role of Bifidobacterium pseudocatenulatum in Degradation and Consumption of Xylan-Derived Carbohydrates.

Appl Environ Microbiol. 2022-10-26

[5]
Xylooligosaccharide Production with Low Xylose Release Using Crude Xylanase from Aureobasidium pullulans: Effect of the Enzymatic Hydrolysis Parameters.

Appl Biochem Biotechnol. 2022-2

[6]
Production of prebiotic xylooligosaccharides from industrial-derived xylan residue by organic acid treatment.

Carbohydr Polym. 2022-9-15

[7]
Xylo-oligosaccharides enhance the growth of bifidobacteria and Bifidobacterium lactis in a simulated colon model.

Benef Microbes. 2010-3

[8]
Production of xylo-oligosaccharides (XOS) of tailored degree of polymerization from acetylated xylans through modelling of enzymatic hydrolysis.

Food Res Int. 2022-12

[9]
Xylooligosaccharide increases bifidobacteria but not lactobacilli in human gut microbiota.

Food Funct. 2014-3

[10]
Downscale fermentation for xylooligosaccharides production by recombinant Bacillus subtilis 3610.

Carbohydr Polym. 2018-10-3

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