Liu Xin, Qiu Xiaoyu, Yang Yong, Wang Jing, Wang Qi, Liu Jingbo, Huang Jinxiu, Yang Feiyun, Liu Zuohua, Qi Renli
National Center of Technology Innovation for Pigs, Chongqing, China.
Chongqing Academy of Animal Science, Chongqing, China.
Front Microbiol. 2024 Jun 14;15:1394332. doi: 10.3389/fmicb.2024.1394332. eCollection 2024.
As a symbiotic probiotic for the host, (CB) has the potential to strengthen the body's immune system and improve intestinal health. However, the probiotic mechanism of CB is not completely understood. The CBX 2021 strain isolated by our team from a health pig independently exhibits strong butyric acid production ability and stress resistance. Therefore, this study comprehensively investigated the efficacy of CBX 2021 in pigs and its mechanism of improving pig health.
In this study, we systematically revealed the probiotic effect and potential mechanism of the strain by using various methods such as microbiome, metabolites and transcriptome through animal experiments and cell experiments .
Our study showed that CBX 2021 improved growth indicators such as daily weight gain in weaned piglets and also reduced diarrhea rates. Meanwhile, CBX 2021 significantly increased immunoglobulin levels in piglets, reduced contents of inflammatory factors and improved the intestinal barrier. Subsequently, 16S rRNA sequencing showed that CBX 2021 treatment implanted more butyric acid-producing bacteria (such as ) in piglets and reduced the number of potentially pathogenic bacteria (like ). With significant changes in the microbial community, CBX 2021 improved tryptophan metabolism and several alkaloids synthesis in piglets. Further experiments showed that CBX 2021 adhesion directly promoted the proliferation of a porcine intestinal epithelial cell line (IPEC-J2). Moreover, transcriptome analysis revealed that bacterial adhesion increased the expression of intracellular G protein-coupled receptors, inhibited the Notch signaling pathway, and led to a decrease in intracellular pro-inflammatory molecules.
These results suggest that CBX 2021 may accelerate piglet growth by optimizing the intestinal microbiota, improving metabolic function and enhancing intestinal health.
作为宿主的共生益生菌,(CB)有潜力增强机体免疫系统并改善肠道健康。然而,CB的益生菌作用机制尚未完全明确。我们团队从一头健康猪中分离出的CBX 2021菌株独立展现出强大的丁酸产生能力和抗逆性。因此,本研究全面调查了CBX 2021在猪体内的功效及其改善猪健康的机制。
在本研究中,我们通过动物实验和细胞实验,运用微生物组学、代谢组学和转录组学等多种方法,系统地揭示了该菌株的益生菌作用及潜在机制。
我们的研究表明,CBX 2021改善了断奶仔猪的日增重等生长指标,还降低了腹泻率。同时,CBX 2021显著提高了仔猪的免疫球蛋白水平,降低了炎症因子含量,改善了肠道屏障。随后,16S rRNA测序显示,CBX 2021处理使仔猪体内植入了更多产丁酸细菌(如 ),并减少了潜在病原菌(如 )的数量。随着微生物群落的显著变化,CBX 2021改善了仔猪的色氨酸代谢和多种生物碱合成。进一步实验表明,CBX 2021的黏附直接促进了猪肠上皮细胞系(IPEC-J2)的增殖。此外,转录组分析显示,细菌黏附增加了细胞内G蛋白偶联受体的表达,抑制了Notch信号通路,并导致细胞内促炎分子减少。
这些结果表明,CBX 2021可能通过优化肠道微生物群、改善代谢功能和增强肠道健康来加速仔猪生长。