4.7 Article

Development of Fluorescence In Situ Hybridization as a Rapid, Accurate Method for Detecting Coliforms in Water Samples

期刊

BIOSENSORS-BASEL
卷 11, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/bios11010008

关键词

biosensor; coliform bacteria; coliform detection method; fluorescence in situ hybridization; water safety

资金

  1. National Science Council [NSC 96-2815-C-157-003-E]
  2. Ministry of Science and Technology [MOST 109-2313-B-157-001]

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In this study, a FISH method was developed for simultaneous detection of four types of coliform bacteria in water samples, showing the shortest detection time and highest accuracy compared to traditional detection methods.
Coliform bacteria are indicators of water quality; however, most detection methods for coliform bacteria are time-consuming and nonspecific. Here, we developed a fluorescence in situ hybridization (FISH) approach to detect four types of coliform bacteria, including Escherichia coli, Klebsiella pneumoniae, Enterobacter aerogenes, and Citrobacter freundii, simultaneously in water samples using specific probes for 16S rRNA. This FISH method was applied to detect coliform bacteria in simulated water and domestic wastewater samples and compared with traditional detection methods (e.g., plate counting, multiple-tube fermentation (MTF) technique, and membrane filter (MF) technique). Optimal FISH conditions for detecting the four types of coliforms were found to be fixation in 3% paraformaldehyde at 4 degrees C for 2 h and hybridization at 50 degrees C for 1.5 h. By comparing FISH with plate counting, MTF, MF, and a commercial detection kit, we found that FISH had the shortest detection time and highest accuracy for the identification of coliform bacteria in simulated water and domestic wastewater samples. Moreover, the developed method could simultaneously detect individual species and concentrations of coliform bacteria. Overall, our findings indicated that FISH could be used as a rapid, accurate biosensor system for simultaneously detecting four types of coliform bacteria to ensure water safety.

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