Wang Dong, Zhao Long, Lin Jingyi, Wang Yajing, Gao Haihui, Liu Wenhui, Li Qirui, Zhang Liang, Kang Xiaodong, Guo Kangkang
College of Veterinary Medicine, Northwest A&F University, Xianyang 712100, China.
Institute of Animal Science, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan 750002, China.
Microorganisms. 2024 Nov 14;12(11):2319. doi: 10.3390/microorganisms12112319.
is a new generation of probiotics, and its probiotic effects on humans and some animals have been verified. However, research on in cattle is still lacking. In this study, 24 stool samples were collected from two large-scale cattle farms in Wuzhong, Ningxia, including 12 diarrheal and 12 normal stools. A non-toxigenic (NTBF) was isolated and identified by 16S rRNA high-throughput sequencing and named BF-1153; genome composition and genome functional analyses were carried out to reflect the biological characteristics of the BF-1153 strain. A cluster analysis of BF-1153 was performed using Mega X to explore its genetic relationship. In addition, Cell Counting Kit-8 (CCK8) was used to determine the toxic effects of the strain on human ileocecal colorectal adenocarcinoma cell line cells (HCT-8), Madin-Darby bovine kidney cells (MDBK), and intestinal porcine epithelial cells (IPECs). The results showed that BF-1153 conformed to the biological characteristics of . BF-1153 had no toxic effects on HCT-8, MDBK, and IPEC. Animal experiments have shown that BF-1153 has no toxic effects on healthy SPF Kunming mice. Notably, the supernatant of BF-1153 enhanced cell activity and promoted cell growth in all three cell lines. At the same time, a cluster analysis of the isolated strains showed that the BF-1153 strain belonged to the same branch as the strain 23212, and strain 22998. The results of the animal experiments showed that BF-1153 had a certain preventive effect on diarrhea symptoms in SPF Kunming mice caused by a bovine rotavirus (BRV). In summary, the strain BF-1153 isolated in this experiment is NTBF, which has no toxic effect on MDBK, HCT-8, and IPEC, and has obvious cell growth-promoting effects, especially on MDBK. BF-1153 promotes the growth and development of SPF Kunming mice when compared with the control group. At the same time, BF-1153 alleviated the diarrhea symptoms caused by BRV in SPF Kunming mice. Therefore, BF-1153 has the potential to be a probiotic for cattle.
是新一代益生菌,其对人和一些动物的益生菌作用已得到验证。然而,关于其在牛身上的研究仍然缺乏。在本研究中,从宁夏吴忠的两个大型养牛场收集了24份粪便样本,包括12份腹泻粪便和12份正常粪便。通过16S rRNA高通量测序分离并鉴定出一株非产毒双歧杆菌(NTBF),命名为BF - 1153;进行了基因组组成和基因组功能分析以反映BF - 1153菌株的生物学特性。使用Mega X对BF - 1153进行聚类分析以探索其亲缘关系。此外,使用细胞计数试剂盒 - 8(CCK8)来确定该菌株对人回盲部结肠直肠腺癌细胞系细胞(HCT - 8)、马 - 达二氏牛肾细胞(MDBK)和猪肠上皮细胞(IPECs)的毒性作用。结果表明,BF - 1153符合双歧杆菌的生物学特性。BF - 1153对HCT - 8、MDBK和IPEC没有毒性作用。动物实验表明,BF - 1153对健康的SPF昆明小鼠没有毒性作用。值得注意的是,BF - 1153的上清液在所有三种细胞系中均增强了细胞活性并促进了细胞生长。同时,对分离菌株的聚类分析表明,BF - 1153菌株与双歧杆菌菌株23212和双歧杆菌菌株22998属于同一分支。动物实验结果表明,BF - 1153对牛轮状病毒(BRV)引起的SPF昆明小鼠腹泻症状有一定的预防作用。综上所述,本实验分离出的BF - 1153菌株为NTBF,对MDBK、HCT - 8和IPEC没有毒性作用,具有明显的促进细胞生长作用,尤其是对MDBK。与对照组相比,BF - 1153促进了SPF昆明小鼠的生长发育。同时,BF - 1153减轻了SPF昆明小鼠由BRV引起的腹泻症状。因此,BF - 1153有潜力成为牛的益生菌。