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针对选定病原体的乳品 SMQ-301 菌株的基因组和特性。

Genomic and properties of the dairy SMQ-301 strain against selected pathogens.

机构信息

Key Laboratory of Dairy Science, Ministry of Education, College of Food Science, Northeast Agricultural University, Harbin 150030, China.

出版信息

Food Funct. 2021 Aug 2;12(15):7017-7028. doi: 10.1039/d0fo02951c.

Abstract

Cumulative studies have suggested that probiotic bacterial strains could be an effective alternative in inhibiting conditions caused by foodborne and vaginal pathogens. The use of genomic techniques is becoming highly useful in understanding the potential of these beneficial microorganisms. This study presents some genomic and in vitro properties of the Streptococcus thermophilus SMQ-301 strain against foodborne and vaginal pathogens (Staphylococcus aureus, Escherichia coli, and Gardnerella vaginalis) to validate its use in dairy food formulations. Genomic analyses include bacteriocin production, stress response systems, antioxidant capability, and RAST-based functional annotation. In vitro investigations focused on the antimicrobial effects of the S. thermophilus SMQ-301 cell-free solution (CFS) against the selected pathogens after enzymatic actions and pH treatments, assessment of cytotoxic effects using murine RAW264.7 cells, and assessment of organic acid production levels using supplementary carbon sources. The results show that the S. thermophilus SMQ-301 genome possesses essential pathways for stress management, antioxidant activities, and bacteriocin production. For the first time, the bacteriocin-producing peptides of S. thermophilus SMQ-301 are reported, which gives an insight into its inhibitory potential. In vitro, the CFS of S. thermophilus SMQ-301 had significant (P < 0.05) antimicrobial effects on the selected pathogens, with S. aureus ATCC25923 being the most resistant. All antimicrobial activities of the CFS against the selected pathogens were eliminated at pH 6.5 and 7.0. S. thermophilus SMQ-301 CFS yielded the highest lactic (25.58 ± 0.24 mg mL-1) and acetic (5.53 ± 0.12 mg mL-1) acid production levels, with 1% fructooligosaccharide (P < 0.05). The S. thermophilus SMQ-301 strain also lowered murine RAW264.7 cell activities from 101.77% (control) to 80.16% (T5 - RAW264.7 cells + 1 × 109 CFU mL-1 cells) (P < 0.05). This study showed that although the S. thermophilus SMQ-301 strain had excellent genomic characteristics, the in vitro effects varied markedly against all three pathogens. In all, the S. thermophilus SMQ-301 strain has promising applications as a potential probiotic in the food and allied industries.

摘要

累积研究表明,益生菌菌株可能是抑制食源性病原体和阴道病原体引起的疾病的有效替代方法。基因组技术的应用在理解这些有益微生物的潜力方面变得非常有用。本研究介绍了嗜热链球菌 SMQ-301 菌株针对食源性病原体和阴道病原体(金黄色葡萄球菌、大肠杆菌和阴道加德纳菌)的一些基因组和体外特性,以验证其在乳制品配方中的用途。基因组分析包括细菌素产生、应激反应系统、抗氧化能力和基于 RAST 的功能注释。体外研究侧重于在酶作用和 pH 处理后,评估嗜热链球菌 SMQ-301 细胞无细胞溶液 (CFS) 对选定病原体的抗菌作用,使用鼠 RAW264.7 细胞评估细胞毒性作用,以及使用补充碳源评估有机酸产生水平。结果表明,嗜热链球菌 SMQ-301 基因组具有用于应激管理、抗氧化活性和细菌素产生的必要途径。首次报道了嗜热链球菌 SMQ-301 的产细菌素肽,这使其抑制潜力有了一定的了解。在体外,嗜热链球菌 SMQ-301 的 CFS 对选定的病原体具有显著的(P < 0.05)抗菌作用,其中金黄色葡萄球菌 ATCC25923 最具抗性。CFS 对选定病原体的所有抗菌作用均在 pH 6.5 和 7.0 时消除。嗜热链球菌 SMQ-301 CFS 产生的乳酸(25.58 ± 0.24 mg mL-1)和乙酸(5.53 ± 0.12 mg mL-1)产量最高,添加 1%果寡糖(P < 0.05)。嗜热链球菌 SMQ-301 菌株还将鼠 RAW264.7 细胞的活性从 101.77%(对照)降低至 80.16%(T5 - RAW264.7 细胞+1×109 CFU mL-1 细胞)(P < 0.05)。本研究表明,尽管嗜热链球菌 SMQ-301 菌株具有出色的基因组特征,但在体外对所有三种病原体的影响差异很大。总之,嗜热链球菌 SMQ-301 菌株作为食品和相关行业中潜在的益生菌具有广阔的应用前景。

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