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Evaluation of a Rapid Quantitative Real-Time PCR Method for Enumeration of Pathogenic Candida Cells in Water

机译:快速实时定量PCR方法对水中病原性念珠菌细胞计数的评估

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摘要

Quantitative PCR (QPCR) technology, incorporating fluorigenic 5′ nuclease (TaqMan) chemistry, was utilized for the specific detection and quantification of six pathogenic species of Candida (C. albicans, C. tropicalis, C. krusei, C. parapsilosis, C. glabrata and C. lusitaniae) in water. Known numbers of target cells were added to distilled and tap water samples, filtered, and disrupted directly on the membranes for recovery of DNA for QPCR analysis. The assay's sensitivities were between one and three cells per filter. The accuracy of the cell estimates was between 50 and 200% of their true value (95% confidence level). In similar tests with surface water samples, the presence of PCR inhibitory compounds necessitated further purification and/or dilution of the DNA extracts, with resultant reductions in sensitivity but generally not in quantitative accuracy. Analyses of a series of freshwater samples collected from a recreational beach showed positive correlations between the QPCR results and colony counts of the corresponding target species. Positive correlations were also seen between the cell quantities of the target Candida species detected in these analyses and colony counts of Enterococcus organisms. With a combined sample processing and analysis time of less than 4 h, this method shows great promise as a tool for rapidly assessing potential exposures to waterborne pathogenic Candida species from drinking and recreational waters and may have applications in the detection of fecal pollution.
机译:结合了荧光5'核酸酶(TaqMan)化学技术的定量PCR(QPCR)技术被用于特异检测和量化假丝酵母(C. albicans,C.tropicis,C。krusei,C.parapsilosis,C。 glabrata和C. lusitaniae)在水中。将已知数量的靶细胞添加到蒸馏水和自来水样品中,过滤并直接在膜上破坏,以回收DNA进行QPCR分析。该测定的灵敏度为每个过滤器一到三个细胞。单元格估计的准确度在其真实值的50%至200%之间(95%置信度)。在对地表水样品进行的类似测试中,PCR抑制性化合物的存在需要进一步纯化和/或稀释DNA提取物,从而导致灵敏度降低,但定量精度通常降低。从一个休闲海滩收集的一系列淡水样品的分析表明,QPCR结果与相应目标物种的菌落数之间呈正相关。在这些分析中检测到的目标念珠菌物种的细胞数量与肠球菌生物的菌落计数之间也发现正相关。该方法的样品处理和分析时间少于4小时,因此有望作为一种快速评估饮用水和休闲用水对水致病性念珠菌物种的潜在暴露的工具,并可能在粪便污染检测中得到应用。

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