Affiliation:
1. Christchurch Science Centre, Institute of Environmental Science and Research Ltd., Christchurch, New Zealand,1 and
2. Institute of Food Research, Reading Laboratory, Reading, Berkshire RG6 6BZ, United Kingdom2
Abstract
ABSTRACT
Sunlight inactivation rates of somatic coliphages, F-specific RNA bacteriophages (F-RNA phages), and fecal coliforms were compared in seven summer and three winter survival experiments. Experiments were conducted outdoors, using 300-liter 2% (vol/vol) sewage-seawater mixtures held in open-top chambers. Dark inactivation rates (
k
D
s), measured from exponential survival curves in enclosed (control) chambers, were higher in summer (temperature range: 14 to 20°C) than in winter (temperature range: 8 to 10°C). Winter
k
D
s were highest for fecal coliforms and lowest for F-RNA phages but were the same or similar for all three indicators in summer. Sunlight inactivation rates (
k
S
), as a function of cumulative global solar radiation (insolation), were all higher than the
k
D
s with a consistent
k
S
ranking (from greatest to least) as follows: fecal coliforms, F-RNA phages, and somatic coliphages. Phage inactivation was exponential, but bacterial curves typically exhibited a shoulder. Phages from raw sewage exhibited
k
S
s similar to those from waste stabilization pond effluent, but raw sewage fecal coliforms were inactivated faster than pond effluent fecal coliforms. In an experiment which included F-DNA phages and
Bacteroides fragilis
phages, the
k
S
ranking (from greatest to least) was as follows: fecal coliforms, F-RNA phages,
B. fragilis
phages, F-DNA phages, and somatic coliphages. In a 2-day experiment which included enterococci, the initial concentration ranking (from greatest to least: fecal coliforms, enterococci, F-RNA phages, and somatic coliphages) was reversed during sunlight exposure, with only the phages remaining detectable by the end of day 2. Inactivation rates under different optical filters decreased with the increase in spectral cutoff wavelength (50% light transmission) and indicated that F-RNA phages and fecal coliforms are more susceptible than somatic coliphages to longer solar wavelengths, which predominate in seawater. The consistently superior survival of somatic coliphages in our experiments suggests that they warrant further consideration as fecal, and possibly viral, indicators in marine waters.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference43 articles.
1. American Public Health Association
Standard methods for the examination of water and wastewater
19th ed.
1995
American Public Health Association
Washington D.C
2. Coliphages in sewage and the marine environment.;Ayres P. A.;Soc. Appl. Bacteriol. Symp. Ser.,1977
3. Survival of bacteriophages in seawater.;Berry S. M.;Water Res.,1976
4. Coliphages as an indicator of faecal pollution in water. Its relationship with indicator and pathogenic micro-organisms.;Borrego J. J.;Water Res.,1987
5. Coliphages as an indicator of faecal pollution in water. Their survival and productive infectivity in natural aquatic environments.;Borrego J. J.;Water Res.,1990
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