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Applied and Environmental Microbiology, September 2002, p. 4523-4533, Vol. 68, No. 9
0099-2240/02/$04.00+0     DOI: 10.1128/AEM.68.9.4523-4533.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.

Environmental Factors Influencing Human Viral Pathogens and Their Potential Indicator Organisms in the Blue Mussel, Mytilus edulis: the First Scandinavian Report

Bodil E. Hernroth,1* Ann-Christine Conden-Hansson,2 Ann-Sofi Rehnstam-Holm,3 Rosina Girones,4 and Annika K. Allard2

Kristineberg Marine Research Station, 450 34 Fiskebäckskil,1 Department of Virology, Umeå University, 901 85 Umeå,2 Department of Clinical Bacteriology, Göteborg University, SE 41436 Göteborg, Sweden,3 Department of Microbiology, University of Barcelona, 08028 Barcelona, Spain4

Received 22 February 2002/ Accepted 21 June 2002

This study was carried out in order to investigate human enteric virus contaminants in mussels from three sites on the west coast of Sweden, representing a gradient of anthropogenic influence. Mussels were sampled monthly during the period from February 2000 to July 2001 and analyzed for adeno-, entero-, Norwalk-like, and hepatitis A viruses as well as the potential viral indicator organisms somatic coliphages, F-specific RNA bacteriophages, bacteriophages infecting Bacteroides fragilis, and Escherichia coli. The influence of environmental factors such as water temperature, salinity, and land runoff on the occurrence of these microbes was also included in this study. Enteric viruses were found in 50 to 60% of the mussel samples, and there were no pronounced differences between the samples from the three sites. E. coli counts exceeded the limit for category A for shellfish sanitary safety in 40% of the samples from the sites situated in fjords. However, at the site in the outer archipelago, this limit was exceeded only once, in March 2001, when extremely high levels of atypical indole-negative strains of E. coli were registered at all three sites. The environmental factors influenced the occurrence of viruses and phages differently, and therefore, it was hard to find a coexistence between them. This study shows that, for risk assessment, separate modeling should be done for every specific area, with special emphasis on environmental factors such as temperature and land runoff. The present standard for human fecal contamination, E. coli, seems to be an acceptable indicator of only local sanitary contamination; it is not a reliable indicator of viral contaminants in mussels. To protect consumers and get verification of "clean" mussels, it seems necessary to analyze for viruses as well. The use of a molecular index of the human contamination of Swedish shellfish underscores the need for reference laboratories with high-technology facilities.


* Corresponding author. Mailing address: Kristineberg Marine Research Station, S-450 34 Fiskebäckskil, Sweden. Phone: 46 (0) 523 18513. Fax: 46 (0) 523 18502. E-mail: bodil.hernroth{at}kmf.gu.se.


Applied and Environmental Microbiology, September 2002, p. 4523-4533, Vol. 68, No. 9
0099-2240/02/$04.00+0     DOI: 10.1128/AEM.68.9.4523-4533.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.




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Copyright © 2002 by the American Society for Microbiology. All rights reserved.