Soluble, Diferuloylated Corn Bran Glucuronoarabinoxylans Modulate the Human Gut Microbiota In Vitro

益生元 麸皮 阿拉伯木聚糖 食品科学 菊粉 发酵 短链脂肪酸 化学 生物化学 丁酸 多糖 体外 肠道菌群 毛螺菌科 生物 16S核糖体RNA 厚壁菌 丁酸盐 基因 原材料 有机化学
作者
Shang Lin,Xinming Xu,Jesper Holck,Jane W. Agger,Casper Wilkens,Zhuqing Xie,Bekzod Khakimov,Dennis Sandris Nielsen,Anne S. Meyer
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:71 (8): 3885-3897 被引量:8
标识
DOI:10.1021/acs.jafc.2c08338
摘要

Corn bran is exceptionally rich in substituted glucuronoarabinoxylan polysaccharides, which are monoferuloylated and cross-linked by diferulic acid moieties. Here, we assessed the potential prebiotic activity of three enzymatically solubilized corn bran glucuronoarabinoxylans: medium feruloylated (FGAX-M), laccase cross-linked FGAX-M (FGAX-H), and alkali-treated FGAX-M devoid of feruloyl substitutions (FGAX-B). We examined the influence of these soluble FGAX samples on the gut microbiome composition and functionality during in vitro simulated colon fermentations, determined by 16S rRNA gene amplicon sequencing and assessment of short-chain fatty acid (SCFAs) production. All FGAX samples induced changes in the relative composition of the microbiota and the SCFA levels after 24 h of in vitro fermentation. The changes induced by FGAX-M and FGAX-H tended to be more profound and more similar to the changes induced by inulin than changes conferred by FGAX-B. The microbiota changes induced by FGAX-M and FGAX-H correlated with an increase in the relative abundance of Anaerostipes and with increased butyric acid production, while the changes induced by the FGAX-B sample were less compelling. The results imply that solubilized, substituted diferuloylated corn bran glucuronoarabinoxylans may be potential prebiotic candidates and that both single feruloylations and diferuloyl cross-links influence the prebiotic potential of these arabinoxylan compounds.
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