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海洋细菌CGMCC1.16464的全基因组序列分析、益生菌潜力及安全性评估

Whole-Genome Sequence Analysis, Probiotic Potential, and Safety Assessment of the Marine Bacterium CGMCC1.16464.

作者信息

Fan Qianjin, Jiao Mengqi, Huangfu Haoyue, Chen Lan, Li Beijie, Cao Zhijie, Luo Xuelian, Xu Jianguo

机构信息

School of Medicine, Nankai University, Tianjin 300071, China.

National Key Laboratory of Intelligent Tracking and Forecasting for Infectious Diseases, National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing 102206, China.

出版信息

Mar Drugs. 2025 May 7;23(5):202. doi: 10.3390/md23050202.

Abstract

CGMCC1.16464 () is a novel antiviral probiotic candidate strain. To ensure its safety as a potential probiotic, a safety evaluation was conducted in this study. The safety and functional potential of were systematically assessed through genomic bioinformatics analysis, in vitro experiments, and acute oral toxicity tests in mice. Genomic analysis revealed that is rich in genes related to carbohydrate and amino acid metabolisms and carries genes encoding antimicrobial and antiviral agents (such as ectoine, type III polyketide synthase, and lasso peptides). It also expresses gastrointestinal tolerance-related proteins (ClpC, GroEL, and ClpP). Its resistance to polymyxins is an inherent trait with no risk of plasmid-mediated transfer. In vitro experiments confirmed that is somewhat tolerant to bile salts and acidic environments and does not exhibit hemolytic or gelatinase activity. Importantly, an acute oral toxicity test in mice revealed that after intervention with high, medium, or low doses, no significant abnormalities in the body weight, organ index, or tissue morphology of the mice were observed. In conclusion, exhibited good safety and probiotic potential in terms of genomic safety, metabolic function, and in vitro and in vivo toxicities, providing a theoretical basis for the development of novel functional probiotics.

摘要

CGMCC1.16464()是一种新型的抗病毒益生菌候选菌株。为确保其作为潜在益生菌的安全性,本研究进行了安全性评估。通过基因组生物信息学分析、体外实验以及小鼠急性经口毒性试验,对其安全性和功能潜力进行了系统评估。基因组分析表明,该菌株富含与碳水化合物和氨基酸代谢相关的基因,并携带编码抗菌和抗病毒剂的基因(如依克多因、III型聚酮合酶和套索肽)。它还表达与胃肠道耐受性相关的蛋白质(ClpC、GroEL和ClpP)。其对多粘菌素的抗性是一种固有特性,不存在质粒介导转移的风险。体外实验证实,该菌株对胆汁盐和酸性环境有一定耐受性,且不表现出溶血或明胶酶活性。重要的是,小鼠急性经口毒性试验表明,在高、中、低剂量干预后,未观察到小鼠体重、器官指数或组织形态有明显异常。总之,该菌株在基因组安全性、代谢功能以及体外和体内毒性方面均表现出良好的安全性和益生菌潜力,为新型功能性益生菌的开发提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b8e/12112907/81c0548fa939/marinedrugs-23-00202-g001.jpg

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