Comparison of the recoveries of Escherichia coli and total coliforms from drinking water by the MI agar method and the U.S. Environmental Protection Agency-approved membrane filter method

Author:

Brenner K P1,Rankin C C1,Sivaganesan M1,Scarpino P V1

Affiliation:

1. National Exposure Research Laboratory, U.S. Environmental Protection Agency, Cincinnati, Ohio 45268, USA.

Abstract

Drinking water regulations under the Final Coliform Rule require that total coliform-positive drinking water samples be examined for the presence of Escherichia coli or fecal coliforms. The current U.S. Environmental Protection Agency-approved membrane filter (MF) method for E. coli requires two media, an MF transfer, and a total incubation time of 28 h. A newly developed MF method, the MI agar method, containing indoxyl-beta-D-glucuronide and 4-methylumbelliferyl-beta-D-galactopyranoside for the simultaneous detection of E. coli and total coliforms, respectively, by means of their specific enzyme reactions, was compared with the approved method by the use of wastewater-spiked tap water samples. Overall, weighted analysis of variance (significance level, 0.05) showed that the new medium recoveries of total coliforms and E. coli were significantly higher than those of mEndo agar and nutrient agar plus MUG (4-methylumbelliferyl-beta-D-glucuronide), respectively, and the background counts were significantly lower than those of mEndo agar (< 5%). Generally, the tap water source, overall chlorine level, wastewater source, granular activated carbon treatment of the tap water, and method of grouping data by E. coli count for statistical analysis did not affect the performance of the new medium.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference27 articles.

1. American Public Health Association. 1992. Standard methods for the examination of water and wastewater 18th ed. American Public Health Association Washington D.C.

2. Injury and repair of gram-negative bacteria, with special consideration of the involvement of the cytoplasmic membrane;Beuchat L. R.;Adv. Appl. Microbiol.,1978

3. Bordner R. J. Winter and P. Scarpino (ed.). 1978. Microbiological methods for monitoring the environment: water and wastes. EPA-600/8-78-017. Environmental Monitoring and Support Laboratory U.S. Environmental Protection Agency Cincinnati.

4. Brenner K. P. and C. C. Rankin. Unpublished data.

5. New screening test to determine the acceptability of 0.45-~m membrane filters for analysis of water;Brenner K. P.;Appl. Environ. Microbiol.,1990

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