New Perspectives in Monitoring Drinking Water Microbial Quality
Abstract
:1. Introduction
2. Faecal Indicators in Drinking Water Control
2.1. Coliforms
2.2. Faecal Coliforms
2.3. Escherichia coli
2.4. Faecal Streptococci, Enterococci or Intestinal Enterococci
2.5. Bacteriophages
3. Drinking Water Outbreaks
3.1. Principal Failures Associated with Outbreaks and Lessons Learned
3.2. Further Health Consequences of Gastroenteritis Outbreaks
4. Role of Faecal Indicators in the Protection of Public Health: Alternative Indicators and Recovery of Injured Bacteria
4.1. Alternative Indicators
4.2. Recovery of Injured Bacteria
5. European Legislation on Drinking Water
6. WHO Guidelines and Water Safety Plans
- ▪ Specific measures to protect raw water used to produce drinking water (i.e., fencing).
- ▪ Ensuring the appropriate level of treatment at the water company and during storage and distribution pipe networks to customer’s tap is maintained to guarantee the water quality.
- ▪ Ensuring that customers are aware of their role and responsibility for keeping water wholesome in their properties—it includes public buildings as well as private homes
7. Quality of Drinking Water and Climate Change
8. Conclusions
Acknowledgements
References
- Craun, GF; Brunkard, JM; Yoder, JS; Roberts, VA; Carpenter, J; Wade, T; Calderon, RL; Roberts, JM; Beach, MJ; Roy, SL. Causes of outbreaks associated with drinking water in the United States from 1971 to 2006. Clin. Microbiol. Rev 2010, 23, 507–528. [Google Scholar]
- Vigilancia epidemiológica de brotes de transmisión hídrica en España. 1999–2006. Bol. Epidemiol. Semanal 2008, 16, 25–28.
- Guidelines for Drinking-Water Quality, 3rd ed; World Health Organization: Geneva, Switzerland, 2008; Volume 1, Recommendations.
- Bartram, J; Corrales, L; Davison, A; Deere, D; Drury, D; Gordon, B; Howard, G; Rinehold, A; Stevens, M. Water Safety Plan Manual: Step-by-Step Risk Management for Drinking Water Suppliers; World Health Organization: Geneva, Switzerland, 2009. [Google Scholar]
- Dufour, A; Snozzi, M; Koster, W; Bartram, J; Ronchi, E; Fewtrell, L. Assessing Microbial Safety of Drinking Water Improving Approaches and Methods; World Health Organization and the Organisation for Economic Co-operation and Development, IWA Publishing Alliance House: London, UK, 2003. Available online: https://www.who.int/water_sanitation_health/dwq/9241546301full.pdf (accessed on 1 December 2010).
- Emerging Issues in Water and Infectious Diseases; World Health Organization: Geneva, Switzerland, 2003. Available online: http://www.who.int/water_sanitation_health/emerging/emergingissues/en/ (accessed on 1 December 2010).
- European Union. Council Directive 98/83/EC of 3 November 1998 on the quality of water intended for human consumption (98/83/EC). 1998. Available online: ( http://ec.europa.eu/environment/water/water-drink/index_en.html (accessed on 1 December 2010).
- Borrego, JJ; Figueras, MJ. Microbiological quality of natural waters. Microbiologia SEM (Int. Microbiol.) 1997, 13, 413–426. [Google Scholar]
- Ashbolt, NJ; Grabow, WOK; Snozzi, M. Fewtrell, L, Barthram, J, Eds.; Indicators of microbial water quality. In Water Quality: Guidelines, Standards and Health; IWA Publishing: London, UK, 2001; pp. 289–316. [Google Scholar]
- Borrego, JJ; Castro, D; Figueras, MJ. Bitton, G, Ed.; Fecal streptococci/enterococci in aquatic environments. In Encyclopedia of Environmental Microbiology; John Wiley & Sons: New York, NY, USA, 2002; pp. 1264–1278. [Google Scholar]
- Figueras, MJ; Robertson, W; Pike, E; Borrego, JJ. Bartram, J, Rees, G, Eds.; Sanitary inspection and microbiological water quality. In Monitoring Bathing Waters A Practical Guide to the Design and Implementation of Assessments and Monitoring Programmes; E & FN Spon: London, UK, 2000; pp. 113–167. [Google Scholar]
- Köster, W; Egli, T; Ashbolt, N; Botzenhart, K; Burlion, N; Endo, T; Grimont, P; Guillot, E; Mabilat, C; Newport, L; Niemi, M; Payment, P; Prescott, A; Renaud, P; Rust, A. Analytical methods for microbial water quality testing. In Assessing Microbial Safety of Drinking Water: Improving Approaches and Methods; OECD, World Health Organization: Geneva, Switzerland, 2003; pp. 237–292. [Google Scholar]
- Borrego, JJ; Castro, D; Figueras, MJ. Bitton, G, Ed.; Salmonella in aquatic environments. In Encyclopedia of Environmental Microbiology; John Wiley & Sons: New York, NY, USA, 2002; pp. 2789–2802. [Google Scholar]
- National Research Council, Evaluation of risk: a phased approach to monitoring microbial water quality. In Indicators for Waterborne Pathogens; The National Academic Press: Washington, DC, USA, 2004; pp. 13–16.
- Toranzos, GA; McFeters, GA; Borrego, JJ; Savill, M. Hurst, CJ, Crawford, RL, Garland, JL, Lipson, DA, Mills, AL, Stetzenbach, LD, Eds.; Detection of microorganisms in environmental freshwaters and drinking waters. In Manual of Environmental Microbiology, 3rd ed; American Society for Microbiology Press: Washington, DC, USA, 2007; pp. 249–264. [Google Scholar]
- Leclerc, H; Schwartzbrod, L; Dei-Cas, E. Microbial agents associated with waterborne diseases. Crit. Rev. Microbiol 2002, 28, 371–409. [Google Scholar]
- Asbolt, NJ. Microbial contamination of drinking water and disease outcomes in developing regions. Toxicology 2004, 198, 229–238. [Google Scholar]
- Postel, SL. Water and world population growth. J. Am. Water Works Assoc 2000, 92, 131–138. [Google Scholar]
- Morris, J. Filtered or waivered, you need source protection. N. Engl. Water Works Assoc 1994, 9, 182–191. [Google Scholar]
- Preventing Waterborne Disease: Is Your System at Risk; American Water Works Association: Denver, CO, USA, 1994.
- Brettar, I; Höfle, MG. Molecular assessment of bacterial pathogens—A contribution to drinking water safety. J. Curr. Opin. Biotech 2008, 19, 274–280. [Google Scholar]
- Cangelosi, GA. Prospects for applying virulence factor-activity relationships (VFAR) to emerging waterborne pathogens. J. Water Health 2009, 7, S64–74. [Google Scholar]
- Moriñigo, MA; Cornax, R; Castro, D; Martinez-Manzanares, E; Borrego, JJ. Viability of Salmonella spp. and indicator microorganisms in seawater using membrane diffusion chambers. Antonie van Leeuwenhoek 1990, 57, 109–117. [Google Scholar]
- Figueras, MJ; Polo, FL; Inza, I; Guarro, J. Past, present and future perspective of the EU bathing water directive. Marine Pollut. Bull 1997, 34, 148–156. [Google Scholar]
- LeChevallier, MW; Welch, WJ; Smith, DB. Full-scale of factors related to coliform regrowth in drinking water. Appl. Environ. Microbiol 1996, 62, 2201–2211. [Google Scholar]
- World Health Organization, Ainsworth, R (Ed.) Safe Piped Water: Managing Microbial Water Quality in Piped Distribution Systems; IWA Publishing: London, UK, 2004.
- LeChevallier, MW. The case for maintaining a disinfectant residual. J. Am. Water Works Assoc 1999, 91, 86–94. [Google Scholar]
- Hazen, TC; Toranzos, GA. McFeters, GA, Ed.; Tropical source water. In Drinking Water Microbiology; Springer-Verlag: New York, NY, USA, 1990; pp. 32–54. [Google Scholar]
- Lasalde, C; Rodriguez, R; Smith, HH; Toranzos, GA. Heterogeneity of uidA gene in environmental Escherichia coli populations. J. Water Health 2005, 3, 297–304. [Google Scholar]
- Borrego, JJ; Arrabal, F; De Vicente, A; Gomez, LF; Romero, P. Study of microbial inactivation in the marine environment. J. Water Pollut. Control Fed 1983, 55, 297–302. [Google Scholar]
- Schierack, P; Walk, N; Reiter, K; Weyranch, KD; Wieler, LH. Composition of intestinal Enterobacteriaceae populations of healthy domestic pigs. Microbiology 2007, 153, 3830–3837. [Google Scholar]
- Hunter, PR. Drinking water and diarrhoeal disease due to Escherichia coli. J. Water Health 2003, 1, 65–72. [Google Scholar]
- Schets, FM; During, M; Italiaander, R; Heijnen, L; Rutjes, SA; van der Zwaluw, WK; de Roda Husman, AM. Escherichia coli O157:H7 in drinking water from private water supplies in the Netherlands. Water Res 2005, 39, 4485–4493. [Google Scholar]
- Kay, D; Fleischer, JM; Salmon, RL; Jones, F; Wyer, MD; Goodfree, AF; Zelenauch-Jacquotte, Z; Shore, R. Predicting likelihood of gastroenteritis from sea bathing: results from randomized exposure. Lancet 1994, 344, 905–909. [Google Scholar]
- Audicana, A; Perales, I; Borrego, JJ. Modification of kanamycin-esculin-azide agar to improve selectivity in the enumeration of fecal streptococci from water samples. Appl. Environ. Microbiol 1995, 61, 4178–4183. [Google Scholar]
- Figueras, MJ; Inza, I; Polo, FL; Feliu, MT; Guarro, J. A fast method for the confirmation of fecal streptococci from M-Enterococcus medium. Appl. Environ. Microbiol 1996, 62, 2177–2178. [Google Scholar]
- Figueras, MJ; Inza, I; Polo, FL; Guarro, J. Evaluation of the oxolinic acid-esculin-azide medium for the isolation and enumeration of faecal streptococci in a routine monitoring programme for bathing waters. Can. J. Microbiol 1998, 44, 998–1002. [Google Scholar]
- Kühn, I; Iversen, A; Burman, LG; Olsson-Liljequist, B; Franklin, A; Finn, M; Aarestrup, F; Seyfarth, AM; Blanch, AR; Vilanova, X; Taylor, H; Caplin, J; Moreno, MA; Dominguez, L; Herrero, IA; Möllby, R. Comparison of enterococcal populations in animals, humans, and the environment—a European study. Int. J. Food. Microbiol 2003, 88, 133–145. [Google Scholar]
- Layton, BA; Walters, SP; Lam, LH; Boehm, AB. Enterococcus species distribution among human and animal hosts using multiplex PCR. J. Appl. Microbiol 2010, 109, 539–547. [Google Scholar]
- Fricker, CR; DeSarno, M; Warden, PS; Eldred, BJ. False-negative β-D-glucuronidase reactions in membrane lactose glucuronide agar medium used for the simultaneous detection of coliforms and Escherichia coli from water. Lett. Appl. Microbiol 2008, 47, 539–542. [Google Scholar]
- Fricker, CR; Warden, PS; Eldred, BJ. Understanding the cause of false negative β-D-glucuronidase reactions in culture media containing fermentable carbohydrate. Lett. Appl. Microbiol 2010, 50, 547–551. [Google Scholar]
- Schets, FM; Nobel, PJ; Strating, S; Mooijman, KA; Engels, GB; Brouwer, A. EU Drinking Water Directive reference methods for enumeration of total coliforms and Escherichia coli compared with alternative methods. Lett. Appl. Microbiol 2002, 34, 227–231. [Google Scholar]
- Field, KG; Bernhard, AE; Brodeur, TJ. Molecular approaches to microbiological monitoring: fecal source detection. Environ. Monit. Assess 2003, 81, 313–326. [Google Scholar]
- Moriñigo, MA; Wheeler, D; Berry, C; Jones, C; Muñoz, MA; Cornax, R; Borrego, JJ. Evaluation of different bacteriophage groups as faecal indicators in contaminated natural waters in Southern England. Water Res 1992, 26, 267–271. [Google Scholar]
- Leclerc, H; Edberg, S; Pierzo, V; Delattre, JM. Bacteriophages as indicators of enteric viruses and public health risk in groundwaters. J. Appl. Microbiol 2000, 88, 5–21. [Google Scholar]
- Borrego, JJ. Rana, BC, Ed.; Coliphages as faecal pollution indicators. In Pollution and Biomonitoring; McGraw-Hill: New York, NY, USA, 1995; pp. 117–159. [Google Scholar]
- Havelaar, AH; Pot-Hogeboom, WH. F-specific RNA-bacteriophages as model viruses in water hygiene: ecological aspects. Water Sci. Technol 1988, 20, 399–407. [Google Scholar]
- Jofre, J; Bosch, A; Lucena, F; Girones, R; Tartera, C. Evaluation of Bacteroides fragilis bacteriophages as indicators of the virological quality of water. Water Sci. Technol 1986, 18, 167–177. [Google Scholar]
- Duran, AE; Muniesa, M; Moce-Llivina, L; Campos, C; Jofre, J; Lucena, F. Usefulness of different groups of bacteriophages as model microorganisms for evaluating chlorination. J. Appl. Microbiol 2003, 95, 29–37. [Google Scholar]
- Borrego, JJ; Moriñigo, MA; de Vicente, A; Cornax, R; Romero, P. Coliphages as an indicator of faecal pollution in water. Its relationship with indicator and pathogenic microorganisms. Water Res 1987, 21, 1473–1480. [Google Scholar]
- Paul, JH; Rose, JB; Brown, J; Shinn, EA; Miller, S; Farrah, SR. Viral tracer studies indicate contamination of marine waters by sewage disposal practices in Key Largo, Florida. Appl. Environ. Microbiol 1995, 61, 2230–2234. [Google Scholar]
- Harvey, RW. Microorganisms as tracers in ground water injection and recovery experiments: A review. FEMS Microbiol. Rev 1997, 20, 461–472. [Google Scholar]
- Hot, D; Legeay, O; Jacques, J; Gantzer, C; Caudrelier, Y; Guyard, K; Lange, M; Andreoletti, L. Detection of somatic phages, infectious enteroviruses and enterovirus genomes as indicators of human enteric viral pollution in surface waters. Water Res 2003, 37, 4703–4710. [Google Scholar]
- Havelaar, AH; Furuse, K; Hogeboom, WH. Bacteriophages and indicator bacteria in human and animal faeces. J. Appl. Bacteriol 1986, 60, 252–262. [Google Scholar]
- Cornax, R; Moriñigo, MA; Gonzalez-Jaen, F; Alonso, MC; Borrego, JJ. Bacteriophages presence in human faeces of healthy subjects and patients with gastrointestinal disturbances. Zentbl. Bakteriol 1994, 281, 214–224. [Google Scholar]
- DeBartolomeis, J; Cabelli, VP. Evaluation of an Escherichia coli host strain for enumeration of F male-specific bacteriophages. Appl. Environ. Microbiol 1991, 57, 1301–1305. [Google Scholar]
- Lucena, F; Lasofras, J; McIntosh, D; Forcadell, M; Jofre, J. Effect of distance from the pollution focus on relative concentrations of Bacteroides fragilis phages and coliphages in mussels. Appl. Environ. Microbiol 1994, 60, 2272–2277. [Google Scholar]
- Cornax, R; Moriñigo, MA; Paez, IG; Muñoz, MA; Borrego, JJ. Application of direct plaque assay for detection and enumeration of bacteriophages of Bacteroides fragilis from contaminated-water samples. Appl. Environ. Microbiol 1990, 56, 3170–3173. [Google Scholar]
- Cornax, R; Moriñigo, MA; Balebona, MC; Castro, D; Borrego, JJ. Significance of several bacteriophage groups as indicators of sewage pollution in marine waters. Water Res 1991, 25, 673–678. [Google Scholar]
- Reynolds, KA; Mena, KD; Gerba, CP. Risk of waterborne illness via drinking water in the United States. Rev. Environ. Contam. Toxicol 2008, 192, 117–58. [Google Scholar]
- Risebro, HL; Hunter, PR. Surveillance of waterborne disease in European member states: a qualitative study. J. Water Health 2007, 5, 19–38. [Google Scholar]
- Karanis, P; Kourenti, C; Smith, H. Waterborne transmission of protozoan parasites: A worldwide review of outbreaks and lessons learnt. J. Water Health 2007, 5, 1–18. [Google Scholar]
- Swerdlow, DL; Woodruff, BA; Brady, RC; Griffin, PM; Tippen, S; Donnell, HD; Geldreich, E; Payne, BJ; Meyer, A; Wells, JG; et al. A waterborne outbreak in Missouri of Escherichia coli O157:H7 associated with bloody diarrhoea and death. Ann. Intern. Med 1992, 117, 812–819. [Google Scholar]
- Fong, TT; Mansfield, LS; Wilson, DL; Schwab, DJ; Molloy, SL; Rose, JB. Massive microbiological groundwater contamination associated with a waterborne outbreak in Lake Erie, South Bass Island, Ohio. Environ. Health Perspect 2007, 115, 856–864. [Google Scholar]
- O’Reilly, CE; Bowen, AB; Perez, NE; Sarisky, JP; Shepherd, CA; Miller, MD; Hubbard, BC; Herring, M; Buchanan, SD; Fitzgerald, CC; Hill, V; Arrowood, MJ; Xiao, LX; Hoekstra, RM; Mintz, ED; Lynch, MF. A waterborne outbreak of gastroenteritis with multiple etiologies among resort island visitors and residents: Ohio, 2004. Clin. Infect. Dis 2007, 44, 506–512. [Google Scholar]
- Figueras, MJ; Collado, L; Guarro, J. A new 16S rDNA-RFLP method for the discrimination of the accepted species of Arcobacter. Diagn. Microbiol. Infect. Dis 2008, 62, 11–15. [Google Scholar]
- Collado, L; Inza, I; Guarro, J; Figueras, MJ. Presence of Arcobacter spp. in environmental waters correlates with high levels of fecal pollution. Environ. Microbiol 2008, 10, 1635–1640. [Google Scholar]
- Collado, L; Kasimir, G; Perez, U; Bosch, A; Pinto, R; Saucedo, G; Huguet, JM; Figueras, MJ. Occurrence and diversity of Arcobacter spp. along the Llobregat River catchment, at sewage effluents and in a drinking water treatment plant. Water Res 2010, 44, 3696–3702. [Google Scholar]
- European Food Safety Authority (EFSA), European Centre for Disease Prevention and Control (ECDC), The Community Summary Report. In Food-borne Outbreaks in the European Union in 2007; The EFSA Journal: Brussels, Belgium, 2009; pp. 107–108.
- Kopilovic, B; Ucakar, V; Koren, N; Krek, M; Kraigher, A. Waterborne outbreak of acute gastroenteritis in a costal area in Slovenia in June and July 2008. Eurosurveillance 2008, 13, 1–3. [Google Scholar]
- Risebro, HL; Doria, MF; Andersson, Y; Medema, G; Osborn, K; Schlosser, O; Hunter, PR. Fault tree analysis of the causes of waterborne outbreaks. J. Water Health 2007, 5, 1–18. [Google Scholar]
- Auld, H; MacIver, D; Klaassen, J. Heavy rainfall and waterborne disease outbreaks: the Walkerton example. J. Toxicol. Environ. Health. A 2004, 67, 1879–1887. [Google Scholar]
- Nichols, G; Lane, C; Asgari, N; Verlander, NQ; Charlett, A. Rainfall and outbreaks of drinking water related disease and in England and Wales. J. Water Health 2009, 7, 1–8. [Google Scholar]
- Kistemann, T; Classen, T; Koch, C; Dangendorf, F; Fischeder, R; Gebel, J; Vacata, V; Exner, M. Microbial load of drinking water reservoir tributaries during extreme rainfall and runoff. Appl. Environ. Microbiol 2002, 68, 2188–2197. [Google Scholar]
- Thurston-Enriquez, JA; Gilley, JE; Eghball, B. Microbial quality of runoff following land application of cattle manure and swine slurry. J. Water Health 2005, 3, 157–171. [Google Scholar]
- Mons, C; Dumetre, A; Gosselin, S; Galliot, C; Moulin, L. Monitoring of Cryptosporidium and Giardia river contamination in Paris area. Water Res 2009, 43, 211–217. [Google Scholar]
- Howe, AD; Forster, S; Morton, S; Marshall, R; Osborn, KS; Wright, P; Hunter, PR. Cryptosporidium oocysts in a water supply associated with a cryptosporidiosis outbreak. Emerg. Infect. Dis 2002, 8, 619–624. [Google Scholar]
- Garg, AX; Pope, JE; Thiessen-Philbrook, H; Clark, WF; Ouimet, J. Walkerton health study investigators. Arthritis risk after acute bacterial gastroenteritis. Rheumatology 2008, 47, 200–204. [Google Scholar]
- Thabane, M; Simunovic, M; Akhtar-Danesh, N; Garg, AX; Clark, WF; Collins, SM; Salvadori, M; Marshall, JK. An outbreak of acute bacterial gastroenteritis is associated with an increased incidence of irritable bowel syndrome in children. Am. J. Gastroenterol 2010, 105, 933–939. [Google Scholar]
- Holme, R. Drinking water contamination in Walkerton, Ontario: positive resolutions from a tragic event. Water Sci. Technol 2003, 47, 1–6. [Google Scholar]
- Lake, IR; Nichols, G; Bentham, G; Harrison, FC; Hunter, PR; Kovats, SR. Cryptosporidiosis decline after regulation, England and Wales, 1989-2005. Emerg. Infect. Dis 2007, 13, 623–625. [Google Scholar]
- Payment, P; Franco, E. Clostridium perfringens and somatic coliphages as indicators of the efficiency of drinking water treatment for viruses and protozoan cysts. Appl. Environ. Microbiol 1993, 59, 2418–2424. [Google Scholar]
- Chauret, CP; Radzimiski, CZ; Lepull, M; Creason, R; Andrews, RC. Chlorine dioxide inactivation of Cryptosporidium parvum oocyts and bacterial spore indicators. Appl. Environ. Microbiol 2001, 67, 2993–3001. [Google Scholar]
- World Health Organization, Assessing Microbial Safety of Drinking Water. In Improving Approaches and Methods; IWA Publishing: London, UK, 2003.
- Bartram, J; Cotruvo, J; Exnerd, M; Fricker, C; Glasmacher, A. Heterotrophic plate count measurement in drinking water safety management. Report of an Expert Meeting Geneva, 24–25 April 2002. Int. J. Food Microbiol 2004, 92, 241–247. [Google Scholar]
- Ribas, F; Perramon, J; Terradillos, A; Frias, J; Lucena, F. The Pseudomonas group as indicator of potential regrowth in water distribution system. J. Appl. Microbiol 2000, 88, 704–710. [Google Scholar]
- Toranzos, GA. Bitton, G, Ed.; Pseudomonas. In Encyclopedia of Environmental Microbiology; John Wiley & Sons: New York, NY, USA, 2002; pp. 2632–2639. [Google Scholar]
- Mena, KD; Gerba, CP. Risk assessment of Pseudomonas aeruginosa in water. Rev. Environ. Contam. Toxicol 2009, 201, 71–115. [Google Scholar]
- Dailloux, M; Laurain, C; Weber, M; Hartemann, PH. Water and nontuberculous mycobacteria. Water Res 1999, 33, 2219–2228. [Google Scholar]
- Figueras, MJ. Clinical relevance of Aeromonas. Rev. Med. Microbiol 2005, 16, 145–153. [Google Scholar]
- Martin-Carnahan, A; Joseph, SW. Brenner, DJ, Krieg, NR, Staley, JT, Garrity, GM, Eds.; Order XII. Aeromonadales ord. nov. In Bergey’s Manual of systematic Bacteriology; Springer: NewYork, NY, USA, 2005; Volume 2, Part B, pp. 556–578. [Google Scholar]
- Janda, JM; Abbott, SL. The genus Aeromonas. Taxonomy, pathogenicity and infection. Clin. Microbiol. Rev 2010, 23, 35–73. [Google Scholar]
- Demarta, A; Küpfer, M; Riegel, P; Harf-Monteil, C; Tonolla, M; Peduzzi, R; Monera, A; Saavedra, MJ; Martínez-Murcia, A. Aeromonas tecta sp. nov., isolated from clinical and environmental sources. Syst. Appl. Microbiol 2008, 31, 278–286. [Google Scholar]
- Figueras, MJ; Alperi, A; Saavedra, MJ; Ko, WC; Gonzalo, N; Navarro, M; Martínez-Murcia, AJ. Clinical relevance of the recently described species Aeromonas aquariorum. J. Clin. Microbiol 2009, 47, 3742–3746. [Google Scholar]
- Alperi, A; Martínez-Murcia, AJ; Ko, WC; Monera, A; Saavedra, MJ; Figueras, MJ. Aeromonas taiwanensis sp. nov. and Aeromonas sanarellii sp. nov., clinical species from Taiwan. Int. J. Syst. Evol. Microbiol 2010, 60, 2048–2055. [Google Scholar]
- Figueras, MJ; Alperi, A; Beaz-Hidalgo, R; Stackebrandt, E; Brambilla, E; Monera, A; Martínez-Murcia, AJ. Aeromonas rivuli sp. nov. isolated from the upstream region of a karst water rivulet in Germany. Int J Syst Evol Microbiol 2010. [Google Scholar] [CrossRef]
- Bomo, AM; Storey, MV; Ashbolt, NJ. Detection, integration and persistence of aeromonads in water distribution pipe biofilms. J. Water Health 2004, 2, 83–96. [Google Scholar]
- Figueras, MJ; Horneman, AJ; Martinez-Murcia, A; Guarro, J. Controversial data on the association of Aeromonas with diarrhoea in a recent Hong Kong study. J. Med. Microbiol 2007, 56, 996–998. [Google Scholar]
- Figueras, MJ; Aldea, MJ; Fernández, N; Aspíroz, C; Alperi, A; Guarro, J. Aeromonas hemolytic uremic syndrome. A case and a review of the literature. Diagn. Microbiol. Infect. Dis 2007, 58, 231–234. [Google Scholar]
- Chacon, MR; Soler, L; Groisman, EA; Guarro, J; Figueras, MJ. Type III secretion system genes in clinical Aeromonas isolates. J. Clin. Microbiol 2004, 42, 1285–12877. [Google Scholar]
- Figueras, MJ; Suarez-Franquet, A; Chacon, MR; Soler, L; Navarro, M; Alejandre, G; Grasa, B; Martinez-Murcia, AJ; Guarro, J. First record of the rare species Aeromonas culicicola from a drinking water supply. Appl. Environ. Microbiol 2005, 71, 538–541. [Google Scholar]
- Pablos, M; Rodríguez-Calleja, JM; Santos, JA; Otero, A; García-López, ML. Occurrence of motile Aeromonas in municipal drinking water and distribution of genes encoding virulence factors. Int. J. Food. Microbiol 2009, 135, 158–164. [Google Scholar]
- Pablos, M; Remacha, MA; Rodríguez-Calleja, JM; Santos, JA; Otero, A; García-López, ML. Identity, virulence genes, and clonal relatedness of Aeromonas isolates from patients with diarrhea and drinking water. Eur. J. Clin. Microbiol. Infect. Dis 2010, 29, 1163–1172. [Google Scholar]
- Yu, CP; Chu, KH. Molecular quantification of virulence gene-containing Aeromonas in water samples collected from different drinking water treatment processes. Environ Monit Assess 2010. [Google Scholar] [CrossRef]
- Alperi, A; Figueras, MJ. Human isolates of Aeromonas possess Shiga toxin genes (stx1 and stx2) highly similar to the most virulent gene variants of Escherichia coli. Clin. Microbiol. Infect 2010, 16, 1563–1567. [Google Scholar]
- Figueras, MJ; Beaz-Hidalgo, R; Senderovich, Y; Laviad, S; Halpern, M. Re-identification of Aeromonas isolates from chironomid egg masses as the potential pathogenic bacteria. Aeromonas aquariorum Environ Microbiol Rep 2010. [Google Scholar] [CrossRef]
- Pina, S; Puig, M; Lucena, F; Jofre, J; Girones, R. Viral pollution in the environment and in shellfish: human adenovirus detection by PCR as an index of human viruses. Appl. Environ. Microbiol 1998, 64, 3376–3382. [Google Scholar]
- Albinana-Gimenez, N; Miagostovich, MP; Calgua, B; Huguet, JM; Matia, L; Girones, R. Analysis of adenoviruses and polyomaviruses quantified by qPCR as indicators of water quality in source and drinking-water treatment plants. Water Res 2009, 43, 2011–2019. [Google Scholar]
- Kopecka, H; Dubrou, S; Prevot, J; Marechal, J; Lopez-Pila, JM. Detection of naturally occurring enteroviruses in waters by reverse transcription, polymerase chain reaction, and hybridization. Appl. Environ. Microbiol 1993, 59, 1213–1219. [Google Scholar]
- Metcalf, TG; Melnick, JL; Estes, MK. Environmental virology: from detection of virus in sewage and water by isolation to identification by molecular biology—a trip of over 50 years. Annu. Rev. Microbiol 1995, 49, 461–487. [Google Scholar]
- Haramoto, E; Katayama, H; Oguma, K; Yamashita, H; Tajima, A; Nakajima, H; Ohgaki, S. Seasonal profiles of human noroviruses and indicator bacteria in a wastewater treatment plant in Tokyo, Japan. Water Sci. Technol 2006, 54, 301–308. [Google Scholar]
- Griffin, JS; Plummer, JD; Long, SC. Torque teno virus: an improved indicator for viral pathogens in drinking waters. Virol. J 2008, 5, 112. [Google Scholar]
- Huq, A; Rivera, ING; Colwell, RR. Colwell, RR, Grimes, DJ, Eds.; Epidemiological significance of viable but nonculturable microorganisms. In Nonculturable Microorganisms in the Environment; ASM Press: Washington, DC, USA, 2000; pp. 301–323. [Google Scholar]
- Kahlisch, L; Henne, K; Groebe, L; Draheim, J; Höfle, MG; Brettar, I. Molecular analysis of the bacterial drinking water community with respect to live/dead status. Water Sci. Technol 2010, 61, 9–14. [Google Scholar]
- Cordoba, MA; Del Coco, VF; Minvielle, MC; Basualdo, JA. Influencing factors in the occurrence of injured coliforms in the drinking water distribution system in the city of La Plata, Argentina. J. Water Health 2010, 8, 205–211. [Google Scholar]
- McFeters, GA. McFeters, GA, Ed.; Enumeration, occurrence and significance of injured indicator bacteria in drinking water. In Drinking Water Microbiology; Springer-Verlag: New York, NY, USA, 1990; pp. 478–492. [Google Scholar]
- Bucklin, KE; McFeters, GA; Amirtharaja, A. Penetration of coliforms through municipal drinking water filters. Water Res 1991, 25, 1013–1017. [Google Scholar]
- Gunnarsdóttir, MJ; Gissurarson, LR. HACCP and water safety plans in Icelandic water supply: preliminary evaluation of experience. J. Water Health 2008, 6, 377–382. [Google Scholar]
- Ferguson, CM; Croke, BF; Beatson, PJ; Ashbolt, NJ; Deere, DA. Development of a process-based model to predict pathogen budgets for the Sydney drinking water catchment. J. Water Health 2007, 5, 187–208. [Google Scholar]
- Delpla, I; Jung, AV; Baures, E; Clement, M; Thomas, O. Impacts of climate change on surface water quality in relation to drinking water production. Environ. Int 2009, 35, 1225–1233. [Google Scholar]
- Van Vliet, MTH; Zwolsman, JJG. Impact of summer droughts on the water quality of the Meuse river. J. Hydrol 2008, 353, 1–17. [Google Scholar]
- Prathumratana, L; Sthiannopkao, S; Kim, KW. The relationship of climatic and hydrological parameters to surface water quality in the lower Mekong River. Environ. Int 2008, 34, 860–866. [Google Scholar]
- Brunetti, M; Maugeri, M; Nanni, T. Changes in total precipitation rainy days and extreme events in northeastern Italy. Int. J. Climatol 2001, 21, 861–871. [Google Scholar]
- Evans, CD; Monteith, DT; Cooper, DM. Long-term increases in surface water dissolved organic carbon: observations, possible causes and environmental impacts. Environ. Pollut 2005, 137, 55–71. [Google Scholar]
- Nichols, G; Lane, C; Asgari, N; Verlander, NQ; Charlett, A. Rainfall and outbreaks of drinking water related disease and in England and Wales. J. Water Health 2009, 7, 1–8. [Google Scholar]
- Soh, YC; Roddick, F; van Leeuwen, J. The future of water in Australia: the potential effects of climate change and ozone depletion on Australian water quality, quantity and treatability. Environmentalist 2008, 28, 158–165. [Google Scholar]
- Charron, DF; Thomas, MK; Waltner-Toews, D; Aramini, JJ; Edge, T; Kent, RA. Vulnerability of waterborne diseases to climate change in Canada: a review. J. Toxicol. Environ. Health Part A 2004, 67, 1667–1677. [Google Scholar]
- Pednekar, AM; Grant, SB; Jeong, Y; Poon, Y; Oancea, C. Influence of climate change, tidal mixing, and watershed urbanization on historical water quality in Newport Bay, a saltwater wetland and tidal embayment in southern California. Environ. Sci. Technol 2005, 39, 9071–9082. [Google Scholar]
- Hunter, PR. Climate change and waterborne and vector-borne disease. J. Appl. Microbiol 2003, 94, 37S–46S. [Google Scholar]
- Curriero, FC; Patz, JA; Rose, JB; Lele, S. The association between extreme precipitation and waterborne disease outbreaks in the United States, 1948–1994. Am. J. Public Health 2001, 91, 1194–1199. [Google Scholar]
- Daufresne, M; Boët, P. Climate change impacts on structure and diversity of fish communities in rivers. Global Change Biol 2007, 13, 2467–2478. [Google Scholar]
- Verheyen, J; Timmen-Wego, M; Laudien, R; Bousaad, I; Sen, S; Koc, A; Uesbeck, A; Mazou, F; Pfister, H. Detection of adenoviruses and rotaviruses in drinking water sources used in rural areas of Benin, West Africa. Appl. Environ. Microbiol 2009, 75, 2798–2801. [Google Scholar]
- Bosch, A; Guix, S; Sano, D; Pinto, RM. New tools for the study and direct surveillance of viral pathogens in water. Curr. Opin. Biotechnol 2008, 19, 295–301. [Google Scholar]
© 2010 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
Share and Cite
Figueras, M.J.; Borrego, J.J. New Perspectives in Monitoring Drinking Water Microbial Quality. Int. J. Environ. Res. Public Health 2010, 7, 4179-4202. https://doi.org/10.3390/ijerph7124179
Figueras MJ, Borrego JJ. New Perspectives in Monitoring Drinking Water Microbial Quality. International Journal of Environmental Research and Public Health. 2010; 7(12):4179-4202. https://doi.org/10.3390/ijerph7124179
Chicago/Turabian StyleFigueras, Mª José, and Juan J. Borrego. 2010. "New Perspectives in Monitoring Drinking Water Microbial Quality" International Journal of Environmental Research and Public Health 7, no. 12: 4179-4202. https://doi.org/10.3390/ijerph7124179
APA StyleFigueras, M. J., & Borrego, J. J. (2010). New Perspectives in Monitoring Drinking Water Microbial Quality. International Journal of Environmental Research and Public Health, 7(12), 4179-4202. https://doi.org/10.3390/ijerph7124179