{"title":"鸡用益生菌加速黄芩苷在回肠中的代谢,从而调节肉鸡肠道健康","authors":"Mingkun Gao, Chaoyong Liao, Jianyang Fu, Zhonghua Ning, Zengpeng Lv, Yuming Guo","doi":"10.1186/s40104-023-00974-6","DOIUrl":null,"url":null,"abstract":"Baicalin and probiotic cocktails are promising feed additives with broad application prospects. While probiotic cocktails are known to enhance intestinal health, the potential synergistic impact of combining baicalin with probiotic cocktails on the gut health of broiler chickens remains largely unexplored. Therefore, this study aims to investigate the influence of the combined administration of baicalin and probiotic cocktails on the composition of ileal and cecal microbiota in broiler chickens to elucidate the underlying mechanisms responsible for the health-promoting effects. A total of 320 1-day-old male Arbor Acres broilers were divided into 4 groups, each with 8 replicates of 10 chicks per replicate. Over a period of 42 d, the birds were fed a basal diet or the same diet supplemented with 37.5 g/t baicalin (BC), 1,000 g/t probiotic cocktails (PC), or a combination of both BC (37.5 g/t) and PC (1,000 g/t). The results demonstrated that BC + PC exhibited positive synergistic effects, enhancing intestinal morphology, immune function, and barrier function. This was evidenced by increased VH/CD ratio, sIgA levels, and upregulated expression of occludin and claudin-1 (P < 0.05). 16S rRNA analysis indicated that PC potentiated the effects of BC, particularly in the ileum, where BC + PC significantly increased the α-diversity of the ileal microbiota, altered its β-diversity, and increased the relative abundance of Flavonifractor (P < 0.05), a flavonoid-metabolizing bacterium. Furthermore, Flavonifractor positively correlated with chicken ileum crypt depth (P < 0.05). While BC + PC had a limited effect on cecal microbiota structure, the PC group had a very similar microbial composition to BC + PC, suggesting that the effect of PC at the distal end of the gut overshadowed those of BC. We demonstrated the synergistic enhancement of gut health regulation in broiler chickens by combining baicalin and probiotic cocktails. Probiotic cocktails enhanced the effects of baicalin and accelerated its metabolism in the ileum, thereby influencing the ileal microbiota structure. This study elucidates the interaction mechanism between probiotic cocktails and plant extract additives within the host microbiota. These findings provide compelling evidence for the future development of feed additive combinations.","PeriodicalId":14928,"journal":{"name":"Journal of Animal Science and Biotechnology","volume":"34 1","pages":""},"PeriodicalIF":7.0000,"publicationDate":"2024-02-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Probiotic cocktails accelerate baicalin metabolism in the ileum to modulate intestinal health in broiler chickens\",\"authors\":\"Mingkun Gao, Chaoyong Liao, Jianyang Fu, Zhonghua Ning, Zengpeng Lv, Yuming Guo\",\"doi\":\"10.1186/s40104-023-00974-6\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Baicalin and probiotic cocktails are promising feed additives with broad application prospects. While probiotic cocktails are known to enhance intestinal health, the potential synergistic impact of combining baicalin with probiotic cocktails on the gut health of broiler chickens remains largely unexplored. Therefore, this study aims to investigate the influence of the combined administration of baicalin and probiotic cocktails on the composition of ileal and cecal microbiota in broiler chickens to elucidate the underlying mechanisms responsible for the health-promoting effects. A total of 320 1-day-old male Arbor Acres broilers were divided into 4 groups, each with 8 replicates of 10 chicks per replicate. Over a period of 42 d, the birds were fed a basal diet or the same diet supplemented with 37.5 g/t baicalin (BC), 1,000 g/t probiotic cocktails (PC), or a combination of both BC (37.5 g/t) and PC (1,000 g/t). The results demonstrated that BC + PC exhibited positive synergistic effects, enhancing intestinal morphology, immune function, and barrier function. This was evidenced by increased VH/CD ratio, sIgA levels, and upregulated expression of occludin and claudin-1 (P < 0.05). 16S rRNA analysis indicated that PC potentiated the effects of BC, particularly in the ileum, where BC + PC significantly increased the α-diversity of the ileal microbiota, altered its β-diversity, and increased the relative abundance of Flavonifractor (P < 0.05), a flavonoid-metabolizing bacterium. Furthermore, Flavonifractor positively correlated with chicken ileum crypt depth (P < 0.05). While BC + PC had a limited effect on cecal microbiota structure, the PC group had a very similar microbial composition to BC + PC, suggesting that the effect of PC at the distal end of the gut overshadowed those of BC. We demonstrated the synergistic enhancement of gut health regulation in broiler chickens by combining baicalin and probiotic cocktails. Probiotic cocktails enhanced the effects of baicalin and accelerated its metabolism in the ileum, thereby influencing the ileal microbiota structure. This study elucidates the interaction mechanism between probiotic cocktails and plant extract additives within the host microbiota. 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引用次数: 0
摘要
黄芩苷和鸡用益生元是前景广阔的饲料添加剂,具有广阔的应用前景。虽然众所周知鸡用益生菌能增强肠道健康,但黄芩苷与鸡用益生菌联合使用对肉鸡肠道健康的潜在协同影响仍未得到广泛探讨。因此,本研究旨在探讨黄芩苷与益生菌鸡尾酒联合给药对肉鸡回肠和盲肠微生物群组成的影响,从而阐明促进健康的潜在机制。将 320 只 1 日龄雄性 Arbor Acres 肉鸡分为 4 组,每组 8 个重复,每个重复 10 只雏鸡。在 42 天的时间里,给这些鸡饲喂基础日粮或添加 37.5 克/吨黄芩苷(BC)、1,000 克/吨益生菌鸡尾酒(PC)或 BC(37.5 克/吨)和 PC(1,000 克/吨)组合的相同日粮。结果表明,BC + PC 具有积极的协同作用,可增强肠道形态、免疫功能和屏障功能。VH/CD 比率、sIgA 水平以及闭塞素和 claudin-1 的上调表达都证明了这一点(P < 0.05)。16S rRNA 分析表明,PC 增强了 BC 的作用,尤其是在回肠中,BC + PC 显著增加了回肠微生物群的α-多样性,改变了其β-多样性,并增加了黄酮代谢细菌 Flavonifractor 的相对丰度(P < 0.05)。此外,Flavonifractor 与鸡回肠隐窝深度呈正相关(P < 0.05)。虽然 BC + PC 对盲肠微生物群结构的影响有限,但 PC 组的微生物组成与 BC + PC 组非常相似,这表明 PC 在肠道远端的影响超过了 BC 的影响。我们证明了黄芩苷与益生菌鸡尾酒的结合可协同增强肉鸡的肠道健康调节能力。益生菌鸡尾酒增强了黄芩苷的作用,加速了黄芩苷在回肠中的代谢,从而影响了回肠微生物群结构。这项研究阐明了益生菌鸡尾酒和植物提取物添加剂在宿主微生物群中的相互作用机制。这些发现为未来饲料添加剂组合的开发提供了有力的证据。
Probiotic cocktails accelerate baicalin metabolism in the ileum to modulate intestinal health in broiler chickens
Baicalin and probiotic cocktails are promising feed additives with broad application prospects. While probiotic cocktails are known to enhance intestinal health, the potential synergistic impact of combining baicalin with probiotic cocktails on the gut health of broiler chickens remains largely unexplored. Therefore, this study aims to investigate the influence of the combined administration of baicalin and probiotic cocktails on the composition of ileal and cecal microbiota in broiler chickens to elucidate the underlying mechanisms responsible for the health-promoting effects. A total of 320 1-day-old male Arbor Acres broilers were divided into 4 groups, each with 8 replicates of 10 chicks per replicate. Over a period of 42 d, the birds were fed a basal diet or the same diet supplemented with 37.5 g/t baicalin (BC), 1,000 g/t probiotic cocktails (PC), or a combination of both BC (37.5 g/t) and PC (1,000 g/t). The results demonstrated that BC + PC exhibited positive synergistic effects, enhancing intestinal morphology, immune function, and barrier function. This was evidenced by increased VH/CD ratio, sIgA levels, and upregulated expression of occludin and claudin-1 (P < 0.05). 16S rRNA analysis indicated that PC potentiated the effects of BC, particularly in the ileum, where BC + PC significantly increased the α-diversity of the ileal microbiota, altered its β-diversity, and increased the relative abundance of Flavonifractor (P < 0.05), a flavonoid-metabolizing bacterium. Furthermore, Flavonifractor positively correlated with chicken ileum crypt depth (P < 0.05). While BC + PC had a limited effect on cecal microbiota structure, the PC group had a very similar microbial composition to BC + PC, suggesting that the effect of PC at the distal end of the gut overshadowed those of BC. We demonstrated the synergistic enhancement of gut health regulation in broiler chickens by combining baicalin and probiotic cocktails. Probiotic cocktails enhanced the effects of baicalin and accelerated its metabolism in the ileum, thereby influencing the ileal microbiota structure. This study elucidates the interaction mechanism between probiotic cocktails and plant extract additives within the host microbiota. These findings provide compelling evidence for the future development of feed additive combinations.
期刊介绍:
Journal of Animal Science and Biotechnology is an open access, peer-reviewed journal that encompasses all aspects of animal science and biotechnology. That includes domestic animal production, animal genetics and breeding, animal reproduction and physiology, animal nutrition and biochemistry, feed processing technology and bioevaluation, animal biotechnology, and meat science.