食品科学 ›› 2026, Vol. 47 ›› Issue (7): 109-118.doi: 10.7506/spkx1002-6630-20250926-210

• 生物工程 • 上一篇    下一篇

流式分析技术快速精准检测酸奶中嗜热链球菌活菌

蔡小雨,代森迪,丁文龙,王梓权,王蒙,齐聪岩,张伟,刘思渊,隋志伟   

  1. (1.中国计量科学研究院前沿计量科学中心,北京 100029;2.河北农业大学食品科技学院,河北 保定 071001)
  • 出版日期:2026-04-15 发布日期:2026-05-08
  • 基金资助:
    “十四五”国家重点研发计划重点专项(2022YFD2101502);中国计量科学研究院项目(AKYCX2408;ANL2509); 国家市场监督管理总局项目(2019MK114;2022MK182;2023YJ02)

Rapid and Quantitative Detection of Viable Streptococcus thermophilus in Yoghurt Based on Flow Cytometry Technology

CAI Xiaoyu, DAI Sendi, DING Wenlong, WANG Ziquan, WANG Meng, QI Congyan, ZHANG Wei, LIU Siyuan, SUI Zhiwei   

  1. (1. Center of Advanced Measurement Science, National Institute of Metrology, China, Beijing 100029, China; 2. College of Food Science and Technology, Hebei Agricultural University, Baoding 071001, China)
  • Online:2026-04-15 Published:2026-05-08

摘要: 为实现对嗜热链球菌活菌数的高效精准定量,本研究创新性地将自主设计的寡核苷酸探针(novel oligonucleotide probe,NOP)与叠氮溴化丙锭(propidium monoazide,PMA)核酸染料相结合,利用流式细胞术(flow cytometry,FCM)构建PMA-NOP-FCM检测方法。其中PMA在光敏条件下与死菌DNA不可逆共价交联,使死菌携带红色荧光,嗜热链球菌与NOP特异性杂交携带绿色荧光,最后通过流式分析技术识别计数嗜热链球活菌。该方法特异性良好,能够准确识别并定量嗜热链球菌活菌;方法的定量限为8.3×104 cells/g,在104~108 cells/g与平板计数法具有良好的线性关系;相对标准偏差为4.68%,具有较高精密度;检测时间为2 h,显著优于平板计数法。该方法在酸奶加标样品中的回收率为91.61%~106.17%,经验证可有效用于不同市售品牌酸奶的检测。PMA-NOP-FCM方法为酸奶工业化生产中菌群活性监控提供了高精度、高效率的技术解决方案,对酸奶质量控制具有重要实践意义。

关键词: 流式细胞术;嗜热链球菌;寡核苷酸探针;活菌检测;酸奶

Abstract: To achieve rapid and accurate quantification of viable Streptococcus thermophilus cells, this study developed an innovative detection method based on flow cytometry (FCM) by the combined use of a novel oligonucleotide probe (NOP) and propidium monoazide (PMA). Upon photoactivation, PMA formed irreversible covalent crosslinks with DNA in dead cells, which resulted in red fluorescence in dead cells, while S. thermophilus cells were specifically hybridized with the probe, exhibiting green fluorescence. Viable cells were then quantified by flow cytometry. This method exhibited high specificity and enabled accurate identification and quantification of viable S. thermophilus cells. The limit of quantification was 8.3 × 104 cells/g, with a linear dynamic range of 104–108 cells/g, demonstrating good correlation with the conventional plate counting method. The relative standard deviation (RSD) for repeatability was determined to be 4.68%, reflecting excellent precision. The total detection time was 2 hours, which was significantly shorter compared with the plate counting method. Recoveries from spiked yoghurt samples ranged from 91.61% to 106.17%, and the method was validated for the detection of S. thermophilus in commercially available yoghurts across multiple brands. In conclusion, the PMA-NOP-FCM method offers a highly efficient and precise tool for monitoring microbial viability in industrial yoghurt production, holding great practical significance for yoghurt quality control.

Key words: flow cytometry; Streptococcus thermophilus; oligonucleotide probe; viable bacteria detection; yoghurt

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