食品科学 ›› 2026, Vol. 47 ›› Issue (15): 114-123.doi: 10.7506/spkx1002-6630-20260317-129

• 营养卫生 • 上一篇    下一篇

体外模拟肠道消化发酵体系中阿胶组分对肠道菌群结构的影响

张安东,张川,张程程,黄攀,赵建新,翟齐啸,陈卫,田丰伟   

  1. (1.江南大学 食品科学与资源国家重点实验室,江苏?无锡 214122;2.江南大学食品学院,江苏?无锡 214122;3.江南大学 功能食品国家工程研究中心,江苏?无锡 214122)
  • 出版日期:2026-08-15 发布日期:2026-08-24
  • 基金资助:
    国家自然科学基金面上项目(32472323);国家自然科学基金青年科学基金项目(32502150); “十四五”国家重点研发计划项目(2024YFA1307104);中央高校基本科研业务费专项(JUSRP622013)

Effects of Asini Corii Colla (Ejiao) Components on Gut Microbiota Structure in an in Vitro Simulated Gastrointestinal Digestion and Fermentation System

ZHANG Andong, ZHANG Chuan, ZHANG Chengcheng, HUANG Pan, ZHAO Jianxin, ZHAI Qixiao, CHEN Wei, TIAN Fengwei   

  1. (1. State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China; 2. School of Food Science and Technology, Jiangnan University, Wuxi 214122, China; 3. National Engineering Research Center for Functional Food, Jiangnan University, Wuxi 214122, China)
  • Online:2026-08-15 Published:2026-08-24

摘要: 本研究评估体外模拟消化后阿胶酶解产物(>1 kDa)在不同剂量条件下对体外厌氧发酵酸化过程、短链脂肪酸生成及肠道菌群结构与潜在功能的影响。结果显示,添加阿胶酶解产物可加速发酵早期酸化过程,且乙酸和丙酸含量总体呈升高趋势,丁酸含量在中、高质量浓度组有所增加,短链脂肪酸总量整体上升,其中高质量浓度组增幅更为明显。菌群α多样性与β多样性随阿胶酶解产物剂量增加呈差异化变化;主坐标分析结果表明,各处理组与空白组菌群结构明显分离。在门水平上,以Proteobacteria、Firmicutes、Actinobacteria和Bacteroidetes为主,Firmicutes与Bacteroidetes的相对丰度比值在不同阿胶酶解产物剂量下呈不同方向的调整趋势。在属水平上,低剂量组出现特定类群富集并伴随双歧杆菌相对丰度的降低,而高剂量组的双歧杆菌与乳酸杆菌相对丰度升高;线性判别分析效应量及功能预测结果提示,不同剂量下存在特异标志菌与多项代谢相关功能模块差异。综上,阿胶>1 kDa酶解产物可在体外厌氧发酵中重塑菌群结构与潜在功能,并呈现剂量依赖的菌群响应特征。

关键词: 阿胶;体外消化与发酵;16S rRNA测序;肠道菌群;功能预测

Abstract: This study evaluated the effects of different doses of Ejiao hydrolysates (> 1 kDa) obtained after in vitro simulated digestion on acidification during in vitro anaerobic fermentation, short-chain fatty acid production, gut microbiota composition, and predicted microbial functions. The results showed that the addition of Ejiao hydrolysates accelerated acidification during the early stage of fermentation. Overall, acetic acid and propionic acid contents tended to increase, and butyric acid levels increased in the medium- and high-dose groups. Total short-chain fatty acid production also rose, with the most pronounced increase observed in the high-dose group. The α-diversity and β-diversity of the gut microbiota exhibited dose-dependent and differential changes in response to Ejiao hydrolysates. Principal coordinate analysis indicated a clear separation of microbial community structures between the treatment groups and the blank control group. At the phylum level, the microbial community was mainly composed of Proteobacteria, Firmicutes, Actinobacteria, and Bacteroidetes, and the relative abundance ratio of Firmicutes to Bacteroidetes exhibited divergent trends under different doses of Ejiao hydrolysates. At the genus level, specific taxa were enriched in the low-dose group, accompanied by a decrease in the relative abundance of Bifidobacterium, whereas the relative abundances of Bifidobacterium and Lactobacillus increased in the high-dose group. Linear discriminant analysis for effect size and functional prediction further suggested the presence of dose-specific microbial biomarkers and differences in multiple metabolism-related functional modules. In conclusion, Ejiao hydrolysates (> 1 kDa) can reshape gut microbiota composition and predicted microbial functions during in vitro anaerobic fermentation, exhibiting dose-dependent microbial response characteristics.

Key words: Ejiao; in vitro digestion and fermentation; 16S rRNA sequencing; gut microbiota; functional prediction

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