Fingerprint profiling and gut microbiota regulation of polysaccharides from Fritillaria species

多糖 单糖 生物 肠道菌群 食品科学 低聚糖 生物化学 化学
作者
Wenlong Wei,Zhenwei Li,Shiwei Li,Shifei Wu,Daidi Zhang,Yaling An,Yun Li,Menglei Wu,Jianqing Zhang,Changliang Yao,Qirui Bi,De‐an Guo
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:237: 123844-123844 被引量:18
标识
DOI:10.1016/j.ijbiomac.2023.123844
摘要

Few studies reported the quality evaluation and gut microbiota regulation effect of polysaccharides from Fritillaria species. In this study, polysaccharides extracted from ten Fritillaria species were compared and distinguished through multi-levels evaluation strategy and data fusion. Furthermore, the gut microbiota regulation effect of polysaccharides among different species was analyzed and evaluated. The fingerprint profiling of IR, molecular weight distribution of polysaccharides, chromatogram of partially hydrolyzed polysaccharides (oligosaccharides) and completely hydrolyzed polysaccharides (monosaccharides) were similar, and no exclusive signals were observed. However, the signal strength of functional group, oligosaccharides abundance and monosaccharides proportion showed obvious differences in inter- and intra-species. Glucan may be the main component of polysaccharides in Fritillaria species, CIRR derived from CIR, PRZ, DEL, TAI, UNI possessed higher total polysaccharides content, polymerization degree, oligosaccharides abundance (DP 2-4), and glucose content than the others. Meanwhile, data fusion model was established for identification of affinis and multi-original species, the accuracy of which proved to be 100 %. In addition, Fritillaria polysaccharides could increase the bacterial community richness and diversity, regulate the gut microbiota composition and possessed potential therapeutic effects on gastrointestinal diseases and nervous system diseases.
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