中国猪业 ›› 2026, Vol. 21 ›› Issue (3): 76-84.doi: 10.16174/j.issn.1673-4645.2026.03.009

• 专题报道 • 上一篇    下一篇

大河猪、大河乌猪与昌都藏猪肠道内容物胆汁酸代谢相关微生物差异比较

贾荟瑾,史汶哲,张旺宏,等   

  1. 云南农业大学动物科学技术学院/云南省动物营养与饲料科学重点实验室,云南昆明 650201
  • 出版日期:2026-07-15 发布日期:2026-06-25

  • Online:2026-07-15 Published:2026-06-25

摘要: 猪的品种遗传特性和肠道分段环境共同驱动肠道胆汁酸代谢相关微生物群落分化。为探究不同地方猪各肠段胆汁酸代谢相关微生物群落差异,本试验选取大河猪、大河乌猪与昌都藏猪3个品种,分别采集十二指肠、空肠、回肠、盲肠、结肠中的内容物,依托16S rRNA高通量测序技术解析肠道中胆汁酸代谢菌群组成及物种互作特征。结果表明:肠道区段理化环境差异造成胆汁酸代谢菌群功能不同,小肠内以乳杆菌属等具备胆汁盐水解酶活性的菌群为主,主导初级胆汁酸水解;盲肠与结肠富集拟杆菌、丁酸梭菌、嗜黏蛋白阿克曼菌等厌氧菌,主要负责次级胆汁酸转化。品种遗传背景显著影响菌群结构:大河乌猪小肠乳杆菌丰度突出,初级胆汁酸水解能力更强;昌都藏猪大肠中次级胆汁酸转化相关菌群富集,适合高原粗饲环境;大河猪全肠道菌群组成均衡,胆汁酸代谢微生态稳定性最优。菌群相关性分析显示小肠中的优势乳杆菌与大肠中的厌氧发酵菌群多呈显著负相关,同区段功能共生菌多表现协同正相关。综上,猪的品种与肠道区段交互作用共同决定胆汁酸代谢微生物群落,可为地方猪种质保护、精准营养配方研发提供理论参考。

关键词: 地方猪种, 肠道区段, 肠道微生物, 胆汁酸代谢, 群落结构

Abstract: The genetic characteristics of different pig breeds interact with the segmented intestinal environment to jointly drive the differentiation of bile acid metabolism-related microbial communities in the porcine intestine. To investigate variations in bile acid metabolism-associated gut microbiota across different intestinal segments among regional pig breeds, this study collected samples from the duodenum, jejunum, ileum, cecum, and colon of Dahe pigs, Dahe black pigs, and Changdu Tibetan pigs, respectively. High-throughput 16S rRNA sequencing was employed to analyze the composition of bile acid metabolism-associated bacterial communities and their species interactions. The results demonstrated that differences in intestinal segmental physicochemical environments lead to functional specialization of bile acid metabolism microbiota: the small intestine predominantly harbors Lactobacillus species with bile salt hydrolytic activity, which dominate primary bile acid hydrolysis; the cecum and colon were enriched with anaerobic bacteria such as Bacteroides, Clostridium butyricum, and A creomyces mucoides, primarily responsible for secondary bile acid conversion. Genetic background significantly shapes microbial community structure: Dahe black pigs exhibited higher abundance of Lactobacillus in the small intestine with enhanced primary bile acid hydrolysis capacity; Changdu Tibetan pigs demonstrated abundant secondary bile acid conversion-associated microbiota adapted to high-altitude coarse feeding conditions; whereas Dahe pigs maintain a balanced whole-intestinal microbiota composition with optimal stability in bile acid metabolism microecology. Microbial correlation analyzed revealed significant negative correlations between dominant Lactobacillus strains in the small intestine and anaerobic fermentation bacteria in the large intestine, while functional symbiotic bacteria within the same segment exhibited synergistic positive correlations. In conclusion, the interaction between pig breeds and intestinal segments collectively determines the differentiation of bile acid metabolism microbial communities, providing theoretical insights for breed conservation and precision nutrition formulation development.

Key words: local pig breed, intestinal segment, intestinal microorganism, bile acid metabolism, community structure

中图分类号:  S828;S816

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