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A Flow-Cytometric Gram-Staining Technique for Milk-Associated Bacteria

机译:牛奶相关细菌的流式细胞术革兰氏染色技术

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A Gram-staining technique combining staining with two fluorescent stains, Oregon Green-conjugated wheat germ agglutinin (WGA) and hexidium iodide (HI) followed by flow-cytometric detection is described. WGA stains gram-positive bacteria while HI binds to the DNA of all bacteria after permeabilization by EDTA and incubation at 50°C for 15 min. For WGA to bind to gram-positive bacteria, a 3 M potassium chloride solution was found to give the highest fluorescence intensity. A total of 12 strains representing some of the predominant bacterial species in bulk tank milk and mixtures of these were stained and analyzed by flow cytometry. Overall, the staining method showed a clear differentiation between gram-positive and gram-negative bacterial populations. For stationary-stage cultures of seven gram-positive bacteria and five gram-negative bacteria, an average of 99% of the cells were correctly interpreted. The method was only slightly influenced by the growth phase of the bacteria or conditions such as freezing at ?18°C for 24 h. For any of these conditions, an average of at least 95% of the cells were correctly interpreted. When stationary-stage cultures were stored at 5°C for 14 days, an average of 86% of the cells were correctly interpreted. The Gram-staining technique was applied to the flow cytometry analysis of bulk tank milk inoculated with Staphylococcus aureus and Escherichia coli. These results demonstrate that the technique is suitable for analyzing milk samples without precultivation.
机译:描述了一种革兰氏染色技术,该技术结合了两种荧光染料的染色:俄勒冈绿色共轭小麦胚芽凝集素(WGA)和碘化己二酸(HI),然后进行流式细胞仪检测。 WGA染色革兰氏阳性细菌,而HI在通过EDTA渗透并在50°C孵育15分钟后与所有细菌的DNA结合。为了使WGA与革兰氏阳性细菌结合,发现3 M的氯化钾溶液具有最高的荧光强度。代表散装罐装牛奶中一些主要细菌种类的总共12个菌株及其混合物进行了染色,并通过流式细胞仪进行了分析。总体而言,染色方法显示出革兰氏阳性和革兰氏阴性细菌种群之间的明显区别。对于7个革兰氏阳性细菌和5个革兰氏阴性细菌的静止期培养,正确解释了平均99%的细胞。该方法仅受细菌的生长阶段或诸如在?18°C下冷冻24小时之类的条件的轻微影响。对于这些条件中的任何一个,平均至少有95%的单元格可以正确解释。当将稳定期培养物在5°C下保存14天时,平均有86%的细胞得到了正确的解释。革兰氏染色技术应用于金黄色葡萄球菌和大肠杆菌接种的散装罐装牛奶的流式细胞仪分析。这些结果表明,该技术适用于无需预先培养即可分析牛奶样品的情况。

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