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A molecular approach for the rapid selective and sensitive detection of Exophiala jeanselmei in environmental samples: development and performance assessment of a real-time PCR assay

机译:快速选择性和灵敏检测环境样品中Exophiala Jeanelmei的分子方法:实时PCR分析的开发和性能评估

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摘要

Exophiala jeanselmei is an opportunistic pathogenic black yeast growing in humid environments such as water reservoirs of air-conditioning systems. Because this fungal contaminant could be vaporized into the air and subsequently cause health problems, its monitoring is recommended. Currently, this monitoring is based on culture and microscopic identification which are complex, sometimes ambiguous and time-demanding, i.e., up to 21 days. Therefore, molecular, culture-independent methods could be more advantageous for the monitoring of E. jeanselmei. In this study, we developed a SYBR®green real-time PCR assay based on the internal transcribed spacer 2 from the 18S ribosomal DNA complex for the specific detection of E. jeanselmei. The selectivity (100 %), PCR efficiency (95.5 %), dynamic range and repeatability of this qPCR assay were subsequently evaluated. The limit of detection for this qPCR assay was determined to be 1 copy of genomic DNA of E. jeanselmei. Finally, water samples collected from cooling reservoirs were analyzed using this qPCR assay to deliver a proof of concept for the molecular detection of E. jeanselmei in environmental samples. The results obtained by molecular analysis were compared with those of classical methods (i.e., culture and microscopic identification) used in routine analysis and were 100 % matching. This comparison demonstrated that this SYBR®green qPCR assay can be used as a molecular alternative for monitoring and routine investigation of samples contaminated by E. jeanselmei, while eliminating the need for culturing and thereby considerably decreasing the required analysis time to 2 days.
机译:Exophiala Jeanselmei是在潮湿环境(例如空调系统的水箱)中生长的机会致病性黑酵母。由于这种真菌污染物可能会蒸发到空气中,并随后引起健康问题,因此建议对其进行监控。当前,此监视基于复杂的,有时含糊且有时限的文化和微观识别,即长达21天。因此,分子,文化独立的方法可能更有利于监测大肠杆菌。在这项研究中,我们开发了一种基于18S核糖体DNA复合物内部转录的间隔子2的SYBR®green实时PCR分析方法,用于特异检测大肠杆菌。随后评估了该qPCR分析的选择性(100%),PCR效率(95.5%),动态范围和可重复性。确定该qPCR分析的检测限为1个拷贝的E. Jeanselmei基因组DNA。最后,使用此qPCR分析法分析了从冷却水库收集的水样,从而为环境样品中的大肠杆菌的分子检测提供了概念验证。通过分子分析获得的结果与常规分析中使用的经典方法(即培养和显微镜鉴定)进行了比较,并且100%匹配。这项比较表明,这种SYBR®greenqPCR测定法可以用作监测和常规研究受大肠杆菌污染的样品的分子替代方法,同时消除了培养的需要,从而将所需的分析时间大大减少至2天。

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