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◆ Journal of Agriculture and Food Research2026-03-27· Fermentation

From structure to function: How Amomum villosum polysaccharides exert antidiabetic potential by reshaping the gut microbiota

Meng Wang, Siming Zhu, X.Y. Ye, Sijie Huang, Yanghua, Yebao Chen, Jiayue Li, Yunping Peng, Junlin Wu

原始摘要(英文原文)· Original abstract
This study extracted polysaccharides from Amomum villosum Lour. using a synergistic fermentation method with Bacillus subtilis and Aspergillus niger. The extract was purified by DEAE-52 and Sephadex G-100 chromatography to obtain a homogeneous fraction, designated AVLP1( Amomum villosum Lour. polysaccharide 1). AVLP1 has a molecular weight of 3247 Da and consists primarily of glucose (95.37%), along with minor amounts of mannose, rhamnose, and arabinose. Structural characterization revealed an amorphous lamellar structure containing pyranose/furanose rings and α/β-glycosidic bonds, with its triple-helix conformation confirmed by Congo red assay. In vitro hypoglycemic assays demonstrated its potent inhibition of α-amylase (97.92%) and α-glucosidase (71.54%) at 10.0 mg/mL. Notably, at 6 mg/mL, its α-amylase inhibitory activity matched that of acarbose, exhibiting strong dose-dependence. Simulated digestion indicated that AVLP1 undergoes partial acid hydrolysis in gastric environments. In vitro fermentation coupled with 16S rRNA sequencing showed that AVLP1 markedly enriches SCFA-producing Bacillota and Megamonas , while reducing the abundance of Pseudomonadota , thereby improving gut microecological balance. SCFA analysis revealed that AVLP1 substantially increased the production of acetate, propionate, and butyrate production, displaying a distinct spatiotemporal pattern: rapid propionate generation, specific butyrate enrichment, and sustained acetate release. Alpha diversity analysis showed significantly higher Shannon/Simpson indices in the AVLP1 group than in the inulin group. Venn diagrams and beta-diversity analyses confirmed significant differences in microbial composition between the AVLP1 group and the control. These findings elucidate a dual-pathway hypoglycemic mechanism for AVLP1, involving combined inhibition of digestive enzymes and enhancement of SCFA production via gut microbiota modulation. This work establishes a theoretical foundation for developing AVLP1 as a functional food ingredient. • A polysaccharide (AVLP1) from Amomum villosum Lour. shows potent hypoglycemic effects and gut microbiota modulation via SCFA production. • AVLP1 potently inhibits α-amylase/glucosidase and modulates gut microbiota to boost SCFA production, improving metabolic health. • The polysaccharide AVLP1 exerts anti-diabetic effects by inhibiting digestive enzymes and enriching SCFA-producing gut bacteria.
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From structure to function: How Amomum villosum polysaccharides exert antidiabetic potential by reshaping the gut microbiota — 科研速览 Science Skim