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Microbial Source Tracking for Identification of Fecal Pollution

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Abstract

Fecal pollution is a serious environmental problem that affects many coastal and inland waters worldwide. Both human and animal fecal pollution impose risks to human health from exposure to pathogenic bacteria, viruses, and protozoa. To assist authorities with the implementation of the changes suggested by more restricted legislation concering water quality in Europe, methods are needed which can identify the sources of fecal pollution. Management of fecal contamination of water would be improved if the origin of the fecal pollution could be correctly identified since remediation efforts could then be allocated in a more effective manner. The concept that the origin of fecal pollution can be traced has been termed microbial source tracking. In microbial source tracking (MST) endogenous markers of fecal sources are used for identification of the fecal pollution in aquatic environments. Chemical MST-methods can be used to trace mainly sewage pollution, but the used chemical targets have no direct relationship with pathogenic bacteria. This is not the case in microbial MST-methods where source-specific bacteria or viruses are cultured to identify fecal pollution sources. However, sometimes these microbial targets can be present in too low numbers to be detected. This is circumvented by using molecular assays for host-specific marker detection. Phenotypic and genotypic library-based methods can be used to discriminate among different fecal sources. However, the isolation step makes this procedure very labour-intensive, and issues as temporal and geographical variability remain unresolved. The underlying assumptions will be discussed and the methods mostly used in microbial source tracking will be described in more detail.

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References

  • JM Albert JM Marr L Tenorio RI Siegrist (2003) ArticleTitleStatistical evaluation of bacterial source tracking data obtained by rep-PCR DNA fingerprinting of Escherichia coli Environ. Sci. Technol. 37 4554–4560 Occurrence Handle10.1021/es034211q Occurrence Handle14594360

    Article  PubMed  Google Scholar 

  • LJ Al-Diwany T Cross (1978) ArticleTitleEcological studies on nocardio-forms and other actinomycetes in aquatic habitats, Zentralbl Bakteriol. Parasitenkd. Subscriptektionskrankh. Hyg. 1 153–160

    Google Scholar 

  • AI Antón AJ Martínez-Murci F Rodrígues-Valera (1998) ArticleTitleSequence diversity in the 16S–23S intergenic spacer region (ISR) of the rRNA operons in representatives of the Escherichia coli ECOR collection J. Mol. Evol. 47 62–72 Occurrence Handle9664697

    PubMed  Google Scholar 

  • RD Arbeit M Arthur RD Dunn C Kim RK Selander R Goldstein (1990) ArticleTitleResolution of recent evolutionary divergence among Escherichia coli from related lineages: the applications of pulsed field electrophoresis to molecular epidemiology J. Subscriptect. Dis. 161 230–235

    Google Scholar 

  • KH Baker DS Herson (1999) ArticleTitleDetection and occurrence of indicator organisms and pathogens Water Environ. Res. 71 530–551

    Google Scholar 

  • PD Barlett (1987) ArticleTitleDegradation of coprostanol in an experimental system Mar. Pollut. Bull. 18 27–29 Occurrence Handle10.1016/0025-326X(87)90653-9

    Article  Google Scholar 

  • B Barnes DM Gordon (2004) ArticleTitleColiform dynamics and the implications for source tracking, Environ. Microbiol. 6 501–509

    Google Scholar 

  • AE Bernhard KG Field (2000a) ArticleTitleIdentification of nonpoint sources of fecal pollution in coastal waters by using host-specific 16S ribosomal DNA genetic markers from fecal anaerobes Appl. Environ. Microbiol. 66 1587–1594 Occurrence Handle10.1128/AEM.66.4.1587-1594.2000

    Article  Google Scholar 

  • AE Bernhard KG Field (2000b) ArticleTitleA PCR assay to discriminate human and ruminant feces on the basis of host differences in Bacteroides-Prevotella genes encoding 16S rRNA Appl. Environ. Microbiol. 66 4571–4574 Occurrence Handle10.1128/AEM.66.10.4571-4574.2000

    Article  Google Scholar 

  • AE Bernhard T Goyard MT Simonich KG Field (2003) ArticleTitleApplication of a rapid method for identifying fecal pollution sources in a multi-use estuary Water Res. 37 909–913 Occurrence Handle10.1016/S0043-1354(02)00384-6 Occurrence Handle12531273

    Article  PubMed  Google Scholar 

  • AB Boehm JA Fuhrman RD Morse SB Grant (2003) ArticleTitleTiered approach for identification of a human fecal pollution source at a recreational beach: case study at Avalon Bay, Catalina Island, California Environ. Sci. Technol. 37 673–680 Occurrence Handle10.1021/es025934x Occurrence Handle12636264

    Article  PubMed  Google Scholar 

  • A Buchan M Alber RE Hodson (2001) ArticleTitleStrain-specific differentiation of environmental Escherichia coli isolates via denaturing gradient gel electrophoresis (DGGE) analysis of the 16S–23S intergenic spacer region FEMS Microbiol. Ecol. 35 313–321 Occurrence Handle10.1016/S0168-6496(01)00109-X Occurrence Handle11311442

    Article  PubMed  Google Scholar 

  • ID Bull MJ Lockheart MM Elhmmali DJ Roberts RP Evershed (2002) ArticleTitleThe origin of faeces by means of biomarker detection Environ. Int. 27 647–654 Occurrence Handle10.1016/S0160-4120(01)00124-6 Occurrence Handle11934114

    Article  PubMed  Google Scholar 

  • CA Carson BL Shear MR Ellersieck A Asfaw (2001) ArticleTitleIdentification of fecal Escherichia coli from humans and animals by ribotyping Appl. Environ. Microbiol. 67 1503–1507 Occurrence Handle10.1128/AEM.67.4.1503-1507.2001 Occurrence Handle11282597

    Article  PubMed  Google Scholar 

  • CA Carson BL Shear MR Ellersieck JD Schnell (2003) ArticleTitleComparison of ribotyping and repetitive extragenic palindromic-PCR for identification of fecal Escherichia coli from humans and animals, Appl Environ. Microbiol. 69 1836–1839 Occurrence Handle10.1128/AEM.69.3.1836-1839.2003

    Article  Google Scholar 

  • N Castingnolles F Petit I Mendel L Simon L Cattolico C Buffet-Janvresse (1998) ArticleTitleDetection of adenovirus in the waters of the Seine river estuary by nested-PCR, Mol Cell. Probes 12 175–180 Occurrence Handle10.1006/mcpr.1998.0166

    Article  Google Scholar 

  • KH Chan MHW Lam KF Poon HY Yeung TKT Chiu (1998) ArticleTitleApplication of sedimentary fecal stanols and sterols in tracing sewage pollution in coastal waters Water Res. 32 225–235 Occurrence Handle10.1016/S0043-1354(97)00175-9

    Article  Google Scholar 

  • CD Chapron NA Ballester JH Fontaine CN Frades AB Margolin (2000) ArticleTitleDetection of astroviruses, enteroviruses, and adenovirus types 40 and 41 in surface waters collected and evaluated by the Subscriptormation Collection Rule and an integrated cell culture-nested PCR procedure Appl. Environ. Microbiol. 66 2520–2525 Occurrence Handle10.1128/AEM.66.6.2520-2525.2000 Occurrence Handle10831432

    Article  PubMed  Google Scholar 

  • JE Collins (1997) ArticleTitleImpact of changing consumer lifestyles on the emergence/reemergence of foodborne pathogens Emerg. Subscriptect. Dis. 3 471–479

    Google Scholar 

  • C Condon J Philips Z Fu C Squires CL Squires (1992) ArticleTitleComparison of the expression of the seven ribosomal RNA operons in Escherichia coli EMBO J. 11 4175–4185 Occurrence Handle1396599

    PubMed  Google Scholar 

  • J Cornuet S Piry G Luikart A Estoup M Solignac (1999) ArticleTitleNew methods employing multilocus genotypes to select or exclude populations as origins of individuals Genetics 153 1989–2000 Occurrence Handle10581301

    PubMed  Google Scholar 

  • MD Curt P Aguardo G Sánchez M Bigeriego J Fernández (2003) ArticleTitleNitrogen isotope ratios of synthetic and organic sources of nitrate water contamination in Spain Water Air Soil Poll. 151 135–142

    Google Scholar 

  • R Danovaro E Manini A Dell’Anno (2002) ArticleTitleHigher abundance of bacteria than of viruses in deep mediterranean sediments Appl. Environ. Microbiol. 68 1468–1472 Occurrence Handle10.1128/AEM.68.3.1468-1472.2002 Occurrence Handle11872504

    Article  PubMed  Google Scholar 

  • L Dijkshoorn HM Aucken P Gerner-Smidt P Janssen ME Kaufman J Garaizar TL Pitt (1996) ArticleTitleComparison of outbreak and nonoutbreak Acinetobacter baumannii strains by genotypic and phenotypic methods J. Clin. Microbiol. 34 1519–1525 Occurrence Handle8735109

    PubMed  Google Scholar 

  • PE Dombek LK Johnson ST Zimmerley MJ Sadowsky (2000) ArticleTitleUse of repetitive DNA sequences and the PCR to differentiate Escherichia coli isolates from human and animal sources Appl. Environ. Microbiol. 66 2572–2577 Occurrence Handle10.1128/AEM.66.6.2572-2577.2000 Occurrence Handle10831440

    Article  PubMed  Google Scholar 

  • S Düreth H Reimer K Pecher (1986) ArticleTitleTracing faecal pollution by coprostanol and intestinal bacteria in ice covered Finnish lake loaded with both industrial and domestic sewage Water Air Soil Poll. 28 131–149

    Google Scholar 

  • EC (2002) Proposal of the European Parliament and of the Council concerning the quality of bathing waters. Council of the European Communities (CEC). COM (2002)581.nal 2002/0254 (COD), 24.10.2002,2002.

  • RP Eganhouse DP Olaguer BR Gould CS Phinney (1988) ArticleTitleUse of molecular markers for the detection of municipal sewage sludge at sea Mar. Environ. Res. 25 1–22 Occurrence Handle10.1016/0141-1136(88)90358-3

    Article  Google Scholar 

  • RP Eganhouse EC Ruth IR Kaplan (1983) ArticleTitleDetermination of long-chain alkylbenzene in environmental samples by argentation thin-layer chromatography/high resolution gas chromatography and gas chromatography/mass spectometry Anal. Chem. 55 2120–2126 Occurrence Handle10.1021/ac00263a028

    Article  Google Scholar 

  • MM Elhmmali (1998) Complementary Use of Bile Acids and Sterols as Sewage Pollution Indicators. Organic Geochemistry Unit University of Bristol Bristol

    Google Scholar 

  • MM Elhmmali DJ Roberts RP Evershed (1997) ArticleTitleBile acids as a new class of sewage pollution indicator Environ. Sci. Technol. 31 3663–3668 Occurrence Handle10.1021/es9704040

    Article  Google Scholar 

  • MM Elhmmali DJ Roberts RP Evershed (2000) ArticleTitleCombined analysis of bile acids and sterols/stanols from riverine particulates to assess sewage discharges and other fecal sources Environ. Sci. Technol. 34 39–46 Occurrence Handle10.1021/es990076z

    Article  Google Scholar 

  • RP Evershed PH Bethell (1996) ArticleTitleApplication of multimolecular biomarker techniques to the identification of faecal material in archaeological soils and sediments ACS Symp. Ser. 625 157–172

    Google Scholar 

  • H Eyssen G Parmenti (1974) ArticleTitleBiohydrogenation of sterols and fatty-acids by intestinal microflora Am. J. Clin. Nutr. 27 1329–1340 Occurrence Handle4614666

    PubMed  Google Scholar 

  • Field KG (2002) Fecal source tracking with Bacteroides. In: Proceedings of Microbial Source Tracking Workshop, U.S. E.P.A., Irving, CA., USA. [online] http://www.sccwrp.org/tools/workshops/source_tracking_agenda.html.

  • R Freter (1983) Factors affecting conjugal plasmid transfer in natural communities MJ Klug CA Reddy (Eds) Current Perspectives in Microbial Ecology (pp Am. Soc. Microb. Washington DC 105–114

    Google Scholar 

  • SW Funderburg CA Sorber (1985) ArticleTitleColiphages as indicators of enteric viruses in activated sludge Water Res. 19 547–555 Occurrence Handle10.1016/0043-1354(85)90059-4

    Article  Google Scholar 

  • K Furuse (1987) Distribution of coliphages in the environment: general considerations SM Goyal CP Gerber G Bitton (Eds) Phage Ecology John Wiley & Sons New York

    Google Scholar 

  • C Gantzer A Maul JM Audic L Schwartzbrod (1998) ArticleTitleDetection of Subscriptectious enteroviruses, enterovirus genomes, somatic coliphages, and Bacteroides fragilis phages in treated wastewater Appl. Environ. Microbiol. 64 4307–4312 Occurrence Handle9797281

    PubMed  Google Scholar 

  • F Gavini A Poucher C Neut D Monget C Romond C Ogor D Izard (1991) ArticleTitlePhenotypic differentiation of bifidobacteria of human and animal origins Int. J. Syst. Bacteriol. 41 548–557 Occurrence Handle1742200

    PubMed  Google Scholar 

  • JR Gibson E Slater J Xery DS Tompkins RJ Owen (1998) ArticleTitleUse of an amplified-fragment length polymorphism technique to fingerprint and differentiate isolates of Helicobacter pylori J. Clin. Microbiol. 36 2580–2585 Occurrence Handle9705396

    PubMed  Google Scholar 

  • B Gilpin T James F Nourozi D Saunders P Scholes M Savill (2003) ArticleTitleThe use of chemical and molecular microbial indicators for faecal source identification. Water Sci. Technol. 47 39–43

    Google Scholar 

  • DM Gordon (2001) ArticleTitleGeographical structure and host specificity in bacteria and the implications for tracing the source of coliform contamination Microbiology 147 1079–1085 Occurrence Handle11320111

    PubMed  Google Scholar 

  • DM Gordon F FitzGibbon (1999) ArticleTitleThe distribution of enteric bacteria among Australian mammals Microbiology 145 2663–2671 Occurrence Handle10537188

    PubMed  Google Scholar 

  • DM Gordon S Bauer JR Johnson (2002) ArticleTitleThe genetic structure of Escherichia coli populations in primary and secondary habitats Microbiology 148 1513–1522 Occurrence Handle11988526

    PubMed  Google Scholar 

  • WOK Grabow TE Neubrech CS Holtzhausen J Jofre (1995) ArticleTitleBacteroides fragilis and Escherichia coli bacteriophages: excretion by humans and animals Water Sci. Technol. 31 223–230 Occurrence Handle10.1016/0273-1223(95)00270-W

    Article  Google Scholar 

  • DW Griffin R Stokes JB Rose JH Paul (2000) ArticleTitleBacterial indicator occurrence and the use of an F+ specific RNA coliphage assay to identify fecal sources in Homosassa Springs, Florida Microbial Ecol. 39 56–64 Occurrence Handle10.1007/s002489900193

    Article  Google Scholar 

  • JF Griffith SB Weisberg CD McGee (2003) ArticleTitleEvaluation of microbial source tracking methods using mixed fecal sources in aqueous test samples J. Water Health 1 141–151 Occurrence Handle15382720

    PubMed  Google Scholar 

  • JO Grimalt P Fernández JM Bayona J Albaigés (1990) ArticleTitleAssessment of fecal sterols and ketones as indicators of urban sewage inputs to coastal waters J. Environ. Sci. Technol. 24 357–363 Occurrence Handle10.1021/es00073a011

    Article  Google Scholar 

  • S Guan R Xu S Chen J Odumeru C Gyles (2002) ArticleTitleDevelopment of a procedure for discriminating among Escherichia coli isolates from animal and human sources Appl. Environ. Microbiol. 68 2690–2698 Occurrence Handle10.1128/AEM.68.6.2690-2698.2002 Occurrence Handle12039721

    Article  PubMed  Google Scholar 

  • C Hagedorn JB Crozier KA Mentz AM Booth AK Graves NJ Nelson RB Reneau (2003) ArticleTitleCarbon source utilization profiles as a method to identify sources of faecal pollution in water J. Appl. Microbiol. 94 792–799 Occurrence Handle10.1046/j.1365-2672.2003.01804.x Occurrence Handle12694443

    Article  PubMed  Google Scholar 

  • C Hagedorn SL Robinson JR Filtz SM Grubbs TA Angier RB Reneau (1999) ArticleTitleDetermining sources of fecal pollution in a rural virginia watershed with antibiotic resistance patterns in fecal streptococci Appl. Environ.Microbiol. 65 5522–5531 Occurrence Handle10584013

    PubMed  Google Scholar 

  • E Harris RA Falconer D Kay C Stapleton (2002) ArticleTitleDevelopment of a modelling tool to quantify faecal indicator levels in Cardiff Bay P. I. Civil Eng.-Water 154 129–135

    Google Scholar 

  • PG Hartel JD Summer JL Hill JV Collins JA Entry WI Segars (2002) ArticleTitleGeographic variability of Escherichia coli ribotypes from animals in Idaho and Georgia J. Environ. Qual. 31 1273–1278 Occurrence Handle12175046

    PubMed  Google Scholar 

  • DL Hartl DE Dykhuizen (1984) ArticleTitleThe population genetics of Escherichia coli Annu. Rev. Genet. 18 31–68 Occurrence Handle10.1146/annurev.ge.18.120184.000335 Occurrence Handle6099090

    Article  PubMed  Google Scholar 

  • VJ Harwood J Whitlock V Withington (2000) ArticleTitleClassification of antibiotic resistance patterns of indicator bacteria by discriminant analysis: use in predicting the source of fecal contamination in subtropical waters Appl. Environ. Microbiol. 66 3698–3704 Occurrence Handle10.1128/AEM.66.9.3698-3704.2000 Occurrence Handle10966379

    Article  PubMed  Google Scholar 

  • VJ Harwood BA Wiggins C Hagedorn RD Ellender J Gooch J Kern M Samadpour A Chapman BJ Robinson BC Thompson (2003) ArticleTitlePhenotypic library-based microbial source tracking methods: efficacy in the California collaborative study J. Water Health 1 153–166 Occurrence Handle15382721

    PubMed  Google Scholar 

  • PG Hatcher PA McGillivary (1979) ArticleTitleSewage contamination in the New York Bight: Coprostanol as an indicator Environ. Sci. Technol. 13 1225–1229 Occurrence Handle10.1021/es60158a015

    Article  Google Scholar 

  • FC Hsu YS Shieh J Duin Particlevan M Beekwilder MD Sobsey (1995) ArticleTitleGenotyping male-specific RNA coliphages by hybridization with oligonucleotide probes Appl. Environ. Microbiol. 61 3960–3966 Occurrence Handle8526509

    PubMed  Google Scholar 

  • CSJ Hulton CF Higgins PM Sharp (1991) ArticleTitleERIC sequences: a novel family of repetitive elements in the genome of Escherichia coli, Salmonella typhimurium and other enteric bacteria Mol. Microbiol. 5 825–834 Occurrence Handle1713281

    PubMed  Google Scholar 

  • P Jagals WOK Grabow JC Divilliers (1995) ArticleTitleEvaluation of indicators for assessment of human and animal fecal pollution of surface run-off Water Sci. Technol. 31 235–241 Occurrence Handle10.1016/0273-1223(95)00272-O

    Article  Google Scholar 

  • MB Jenkins PG Hartel TJ Olexa JA Stuedemann (2003) ArticleTitlePutative temporal variability of Escherichia coli ribotypes from yearling steers J. Environ. Qual. 32 305–309 Occurrence Handle12549570

    PubMed  Google Scholar 

  • MA Jensen JA Webster N Straus (1993) ArticleTitleRapid identification of bacteria on the basis of polymerase chain reaction-amplified ribosomal DNA spacer polymorphisms Appl. Environ. Microbiol. 59 945–952 Occurrence Handle8476298

    PubMed  Google Scholar 

  • S Jiang R Noble C Weiping (2001) ArticleTitleHuman adenoviruses and coliphages in urban runoff-impacted coastal waters of Southern California, Appl Environ. Microbiol. 67 179–184 Occurrence Handle10.1128/AEM.67.1.179-184.2001

    Article  Google Scholar 

  • MA Jimenez-Clavero C Fernández JA Ortiz J Pro G Carbonell JV Tarazona N Roblas V Ley (2003) ArticleTitleTeschoviruses as indicators of porcine fecal contamination of surface water Appl. Environ. Microbiol. 69 6311–6315 Occurrence Handle10.1128/AEM.69.10.6311-6315.2003 Occurrence Handle14532098

    Article  PubMed  Google Scholar 

  • G Jin AJ Englande A Liu (2003) ArticleTitleA preliminary study on coastal water quality monitoring and modeling J. Environ. Sci. Health Part A–Toxic/Hazard. Subst. Environ. Eng. 38 493–509 Occurrence Handle10.1081/ESE-120016909

    Article  Google Scholar 

  • J Jofre M Blasi A Bosch F Lucena (1989) ArticleTitleOccurrence of bacteriophages Subscriptecting Bacteroides fragilis and other viruses in polluted marine sediments Water Sci. Technol. 21 15–19

    Google Scholar 

  • LK Johnson MB Brown EA Carruthers JA Ferguson PE Dombek MJ Sadowsky (2004) ArticleTitleSample size, library composition, and genotypic diversity among natural populations of Escherichia coli from different animals Subscriptluence accuracy of determining sources of fecal pollution Appl. Environ. Microbiol. 70 4478–4485 Occurrence Handle10.1128/AEM.70.8.4478-4485.2004 Occurrence Handle15294775

    Article  PubMed  Google Scholar 

  • BG Katz HD Hornsby (1998) A Preliminary Assessment of Sources of Nitrate in Spring-waters Suwannee River Basin Florida. U.S. Geological Survey Open File Report 98–0069 Florida

    Google Scholar 

  • LA Khatib YL Tsai BH Olson (2002) ArticleTitleA biomarker for the identification of cattle fecal pollution in water using the LTIIa toxin gene from enterotoxigenic Escherichia coli Appl. Microbiol. Biotechnol. 59 97–104 Occurrence Handle10.1007/s00253-002-0959-y Occurrence Handle12073139

    Article  PubMed  Google Scholar 

  • LA Khatib YL Tsai BH Olson (2003) ArticleTitleA biomarker for the identification of swine fecal pollution in water using the STII toxin gene from enterotoxigenic Escherichia coli, Appl Microbiol. Biotechnol. 63 231–238 Occurrence Handle10.1007/s00253-003-1373-9

    Article  Google Scholar 

  • MT Kingsley TM Straub DR Call DS Daly SC Wunshel DP Chandler (2002) ArticleTitleFingerprinting closely related Xanthomonas pathovars with random nonamer oligonucleotide micro arrays Appl. Environ. Microbiol. 68 6361–6370 Occurrence Handle10.1128/AEM.68.12.6361-6370.2002 Occurrence Handle12450861

    Article  PubMed  Google Scholar 

  • DH Kohl GB Shearer B Commoner (1971) ArticleTitleFertilizer nitrogen: contribution to nitrate in surface water in a corn belt watershed Science 174 1331–1334 Occurrence Handle5135719

    PubMed  Google Scholar 

  • R Leeming A Ball N Ashbolt G Jones P Nichols (1994) ArticleTitleDistinguishing between human and animal sources of faecal pollution Aust. J. Chem. 61 434–435

    Google Scholar 

  • R Leeming A Ball N Ashbolt G Jones P Nichols (1996) ArticleTitleUsing faecal sterols from humans and animals to distinguish fecal pollution in receiving waters Water Res. 12 2893–2900 Occurrence Handle10.1016/S0043-1354(96)00011-5

    Article  Google Scholar 

  • D Lefay M Naciri P Poirier R Chermette (2000) ArticleTitlePrevalence of Cryptosporidium Subscriptection in calves in France Vet. Parasitol. 89 1–9 Occurrence Handle10.1016/S0304-4017(99)00230-7 Occurrence Handle10729640

    Article  PubMed  Google Scholar 

  • KT Leung R Mackereth Y-C Tien E. Topp (2004) ArticleTitleA comparison of AFLP and ERIC-PCR analyses for discriminating Escherichia coli from cattle, pig and human sources FEMS Microbiol. Ecol. 47 111–119 Occurrence Handle10.1016/S0168-6496(03)00254-X

    Article  Google Scholar 

  • ML Levin (1977) Bifidobacteria as water quality indicators AA Hoadley BJ Dutka (Eds) Bacterial Indicators/Health Hazards Associated with Water American Society for Testing and Materials Philadelphia 131–138

    Google Scholar 

  • ML Levin IG Resnick (1977) Bifidobacterium BJ Dutka (Eds) Membrane Filtration Applications, Techniques, and Problems Marcel Dekker New York 129–159

    Google Scholar 

  • V Ley J Higgins R Fayer (2002) ArticleTitleBovine enteroviruses as indicators of fecal contamination Appl. Environ. Microbiol. 68 3455–3461 Occurrence Handle10.1128/AEM.68.7.3455-3461.2002 Occurrence Handle12089028

    Article  PubMed  Google Scholar 

  • FL Loge DE Thompson DR Call (2002) ArticleTitlePCR detection of specific pathogens in water: a risk-based analysis Environ. Sci. Technol. 36 2754–2759 Occurrence Handle10.1021/es015777m Occurrence Handle12099475

    Article  PubMed  Google Scholar 

  • D Malakoff (2002) ArticleTitleWater quality: microbiologists on the trail of polluting bacteria Science 295 2352–2353 Occurrence Handle10.1126/science.295.5564.2352 Occurrence Handle11923506

    Article  PubMed  Google Scholar 

  • C Maluguer Motes Particlede P Clemente-Casares A Hundesa M Martín R Girones (2004) ArticleTitleDetection of bovine and porcine adenoviruses for tracing the source of fecal contamination Appl. Environ. Microbiol. 70 1448–1454 Occurrence Handle10.1128/AEM.70.3.1448-1454.2004 Occurrence Handle15006765

    Article  PubMed  Google Scholar 

  • DD Mara JI Oragui (1981) ArticleTitleOccurrence of Rhodococcus coprophilus and associated actinomycetes in faeces, sewage, and freshwater Appl. Environ. Microbiol. 42 1037–1042 Occurrence Handle7316510

    PubMed  Google Scholar 

  • DD Mara JI Oragui (1983) ArticleTitleSorbitol-fermenting bifidobacteria as specific indicators of human fecal pollution J. Appl. Bacteriol. 55 349–357 Occurrence Handle6654767

    PubMed  Google Scholar 

  • B Martin O Humbert A Camara E Guenzi J Walker T Mitchell P Andrew M Prudhomme G Alloing R Hakenbeck DA Morrison JG Boulnois JP Claverys (1992) ArticleTitleA highly conserved repeated DNA element in the chromosome of Streptococcus pneumoniae Nucl. Acids Res. 20 3479–3483 Occurrence Handle1630918

    PubMed  Google Scholar 

  • SL McEllen (2004) ArticleTitleGenetic diversity of Escherichia coli isolated from urban rivers and beach water Appl. Environ. Microbiol. 70 4658–4665 Occurrence Handle10.1128/AEM.70.8.4658-4665.2004 Occurrence Handle15294799

    Article  PubMed  Google Scholar 

  • SL McLellan AD Daniels AK Salmore (2003) ArticleTitleGenetic characterization of Escherichia coli populations from host sources of fecal pollution by using fingerprinting Appl. Environ. Microbiol. 69 2587–2594 Occurrence Handle10.1128/AEM.69.5.2587-2594.2003 Occurrence Handle12732525

    Article  PubMed  Google Scholar 

  • PS Mead L Slutsker V Dietz LF McCaig JS Bresee C Shapiro PM Griffin RV Tauxe (1999) ArticleTitleFood-related illness and death in the United States Emerg. Subscriptect. Dis. 5 607–625

    Google Scholar 

  • R Milkman (1997) ArticleTitleRecombination and population structure in Escherichia coli Genetics 146 745–750 Occurrence Handle9215884

    PubMed  Google Scholar 

  • T Mitsuoka (1996) ArticleTitleIntestinal flora and human health Asia Pacific J. Clin. Nutr. 5 2–9

    Google Scholar 

  • AP Murray CF Gibss PE Kavanagh (1987) ArticleTitleLinear alkylbenzenes (LABs) in sediments of Port Philip Bay (Australia), Mar Environ. Res. 23 65–76 Occurrence Handle10.1016/0141-1136(87)90017-1

    Article  Google Scholar 

  • JJ Murtaugh RL Bunch (1967) ArticleTitleSterols as a measure of fecal pollution J. Water Pollut. Control 39 404–409

    Google Scholar 

  • SP Myoda CA Carson JJ Fuhrmann B-K Hahm PG Hartel H Yampara-Iquise L Johnson RL Kuntz MJ Sadowsky M Samadpour (2003) ArticleTitleComparison of genotypic-based microbial source tracking methods requiring a host origin database J. Water Health 1 167–180 Occurrence Handle15382722

    PubMed  Google Scholar 

  • Y Nebra X Bonjoch AR Blanch (2003) ArticleTitleUse of Bifidobacterium dentium as an indicator of the origin of fecal water pollution Appl. Environ. Microbiol. 69 2651–2656 Occurrence Handle10.1128/AEM.69.5.2651-2656.2003 Occurrence Handle12732533

    Article  PubMed  Google Scholar 

  • MK Nishimura KT Kayoma (1977) ArticleTitleThe occurrence of stanols in various living organisms and the behavior of sterols in contemporary sediments Geochim. Cosmochim. Acta 41 379–385 Occurrence Handle10.1016/0016-7037(77)90265-4

    Article  Google Scholar 

  • RT Noble SM Allen AD Blackwood W Chu SC Jiang GL Lovelace MD Sobsey JR Stewart DA Wait (2003) ArticleTitleUse of viral pathogens and indicators to differentiate between human and non-human fecal contamination in a microbial source tracking comparison study J. Water Health 1 195–207 Occurrence Handle15382724

    PubMed  Google Scholar 

  • DM Olive P Bean (1999) ArticleTitlePrinciples and applications of methods for DNA-based typing of microbial organisms J. Clin. Microbiol. 37 1661–1669 Occurrence Handle10325304

    PubMed  Google Scholar 

  • JI Oragui DD Mara (1983) ArticleTitleInvestigation of the survival characteristics of Rhodococcus coprophilus and certain faecal indicator bacteria Appl. Environ. Microbiol. 46 356–360 Occurrence Handle6312883

    PubMed  Google Scholar 

  • F Orskov I Orskov (1981) Enterobacteriaceae AI Broude (Eds) Medical Microbiology and Subscriptectious Diseases WB Saunders Co. Philadelphia 340–352

    Google Scholar 

  • S Parveen NC Hodge RE Stall SR Farrah ML Tamplin (2001) ArticleTitlePhenotypic and genotypic characterization of human and nonhuman Escherichia coli Water Res. 35 379–386 Occurrence Handle10.1016/S0043-1354(00)00269-4 Occurrence Handle11228989

    Article  PubMed  Google Scholar 

  • S Parveen KM Portier K Robinson L Edmiston ML Tamplin (1999) ArticleTitleDiscriminant analysis of ribotype profiles of Escherichia coli for differentiating human and nonhuman sources of fecal pollution Appl. Environ. Microbiol. 65 3142–3147 Occurrence Handle10388715

    PubMed  Google Scholar 

  • S Parveen RL Murphree L Edminston CW Kaspar KM Portier ML Tamplin (1997) ArticleTitleAssociation of multiple-antibiotic-resistance profiles with point and nonpoint sources of Escherichia coli in Apalachicola Bay Appl. Environ. Microbiol. 63 2607–2612 Occurrence Handle9212410

    PubMed  Google Scholar 

  • CL Pickett DL Weinstein RK Holmes (1987) ArticleTitleGenetics of type IIa heat-labile enterotoxin of Escherichia coli: operon fusions, nucleotide sequence, and hybridization studies J. Bacteriol. 168 5180–5187

    Google Scholar 

  • S Pina M Puig F Lucena J Jofre R Girones (1998) ArticleTitleViral pollution in the environment and in shellfish: human adenovirus detection by PCR as an index of human viruses Appl. Environ. Microbiol. 64 3376–3382 Occurrence Handle9726885

    PubMed  Google Scholar 

  • KF Poon RWH Wong MHW Lam HY Yeung TKT Chiu (2000) ArticleTitleGeostatistical modelling of the spatial distribution of sewage pollution in coastal sediments Water Res. 34 99–108 Occurrence Handle10.1016/S0043-1354(99)00119-0

    Article  Google Scholar 

  • A Puig N Gueralt J Jofre R Araujo (1999) ArticleTitleDiversity of Bacteroides fragilis strains in their capacity to recover phages from human and animal wastes and from fecally polluted wastewater Appl. Environ. Microbiol. 65 1772–1776 Occurrence Handle10103280

    PubMed  Google Scholar 

  • M Puig J Jofre F Lucena A Allard G Wadell R Girones (1994) ArticleTitleDetection of adenoviruses and enteroviruses in polluted waters by nested PCR amplification Appl. Environ. Microbiol. 60 2963–2970 Occurrence Handle8085832

    PubMed  Google Scholar 

  • GM Pupo BJ Richardson (1995) ArticleTitleBiochemical genetics of a natural population of Escherichia coli: seasonal changes in alleles and haplotypes Microbiology 141 1037–1044 Occurrence Handle7773381

    PubMed  Google Scholar 

  • IG Resnick MA Levin (1981) ArticleTitleAssessment of bifidobacteria as indicators of human fecal pollution Appl. Environ. Microbiol. 42 433–438 Occurrence Handle7294781

    PubMed  Google Scholar 

  • MW Rhodes J Kator (1999) ArticleTitleSorbitol-fermenting bifidobacteria as indicators of diffuse human faecal pollution in estuarine watersheds J. Appl. Microbiol. 87 528–535 Occurrence Handle10.1046/j.1365-2672.1999.00845.x Occurrence Handle10583680

    Article  PubMed  Google Scholar 

  • KJ Ritter E Carruthers CA Carson RD Ellender VJ Harwood K Kingsley C Nakasutu M Sadowsky B Shear B West JE Whitlock BA Wiggins JD Wilbur (2003) ArticleTitleAssessment of statistical methods used in microbial source tracking J. Water Health 1 209–223 Occurrence Handle15382725

    PubMed  Google Scholar 

  • TJ Rowbotham T Cross (1977) ArticleTitleEcology of Rhodococcus coprophilus and associated actinomycetes in fresh water and agricultural habitats J. Gen. Microbiol. 185 231–240

    Google Scholar 

  • Y Rozen S Belkin (2001) ArticleTitleSurvival of enteric bacteria in seawater FEMS Microbiol. Rev. 25 513–529 Occurrence Handle10.1016/S0168-6445(01)00065-1 Occurrence Handle11742689

    Article  PubMed  Google Scholar 

  • M Samadpour N Chechowitz (1995) Little Soos Creek Microbial Source Tracking: A Survey Department of Environmental Health University of Washington

    Google Scholar 

  • MA Savageau (1983) ArticleTitleEscherichia coli habitats, cell types, and molecular mechanisms of gene control Am. Nat. 122 732–744 Occurrence Handle10.1086/284168

    Article  Google Scholar 

  • TM Scott (2002) Use of DNA Fingerprinting and Novel Molecular Methods to Identify Sources of Escherichia coli in the Environment Gainesville University of Florida

    Google Scholar 

  • TM Scott JB Rose TM Jenkins SR Farrah J Lukasik (2002) ArticleTitleMicrobial source tracking: current methodology and future directions Appl. Environ. Microbiol. 68 5796–5803 Occurrence Handle10.1128/AEM.68.12.5796-5803.2002 Occurrence Handle12450798

    Article  PubMed  Google Scholar 

  • TM Scott S Parveen KM Portier JB Rose ML Tamplin SR Farrah A Koo J Lukasik (2003) ArticleTitleGeographical variation in ribotype profiles of Escherichia coli isolates from humans, swine, poultry, beef, and dairy Cattle in Florida Appl. Environ. Microbiol. 69 1089–1092 Occurrence Handle10.1128/AEM.69.2.1089-1092.2003 Occurrence Handle12571033

    Article  PubMed  Google Scholar 

  • HJ Sears E Brownee JK Uchiyama (1949) ArticleTitlePersistence of individual strains of Escherichia coli in the intestinal tract of man J. Bacteriol. 59 299–301

    Google Scholar 

  • HJ Sears I Brownlee (1951) ArticleTitleFurther observations on the persistence of individual strains of Escherichia coli in the intestinal trace of man J. Bacteriol. 63 47–57

    Google Scholar 

  • RK Selander BR Levin (1980) ArticleTitleGenetic diversity and structure in Escherichia coli populations Science 210 545–547 Occurrence Handle6999623

    PubMed  Google Scholar 

  • S Seurinck W Verstraete SD Siciliano (2003) ArticleTitleThe use of 16S–23S rRNA intergenic spacer region-PCR and repetitive extragenic palindromic-PCR analyses of Escherichia coli isolates to identify non-point fecal sources Appl. Environ. Microbiol. 69 4942–4950 Occurrence Handle10.1128/AEM.69.8.4942-4950.2003 Occurrence Handle12902290

    Article  PubMed  Google Scholar 

  • Seurinck S, Defoirdt T, Verstraete W & Siciliano SD (2004) Detection and quantification of the human-specific HF183 Bacteroides 16S rRNA genetic marker with real-time PCR for assessment of human fecal pollution in freshwater, Environ. Microbiol., in press.

  • SR Silva PB Ging RW Lee JC Ebbert AJ Tesoriero EL Inkpen (2002) ArticleTitleForensic applications of nitrogen and oxygen isotopes in tracing nitrate sources in urban environments Environ. Foren. 3 125–130

    Google Scholar 

  • IA Simpson PF Bergen Particlevan V Perret MM Elhmmali DJ Roberts RP Evershed (1999) ArticleTitleLipid biomarkers of manuring practice in relict anthropogenic soils The Holocene 9 223–229 Occurrence Handle10.1191/095968399666898333

    Article  Google Scholar 

  • JM Simpson JW Santo Domingo DJ Reasoner (2002) ArticleTitleMicrobial source tracking: state of the science Environ. Sci. Technol. 36 5279–5284 Occurrence Handle10.1021/es026000b Occurrence Handle12521151

    Article  PubMed  Google Scholar 

  • JM Simpson JW Santo Domingo DJ Reasoner (2004) ArticleTitleAssessment of equine fecal contamination: the search for alternative bacterial source-tracking targets FEMS Microbiol. Ecol. 47 65–75 Occurrence Handle10.1016/S0168-6496(03)00250-2

    Article  Google Scholar 

  • LW Sinton RK Finlay DJ Hannah (1998) ArticleTitleDistinguishing human from animal faecal contamination in water: a review NZ. J. Mar. Freshw. Res. 32 323–348

    Google Scholar 

  • PHA Sneath SN Mair ME Sharp JG Holt (Eds) (1986) Bergey’s Manual of Systematic Bacteriology Williams and Wilkins Baltimore

    Google Scholar 

  • V Souza M Rocha A Valera LE Eguiarte (1999) ArticleTitleGenetic structure of natural populations of Escherichia coli in wild hosts on different continents Appl. Environ. Microbiol. 65 3373–3385 Occurrence Handle10427022

    PubMed  Google Scholar 

  • MJ Stern GF-L Ames NH Smith EC Robinson CF Higgins (1984) ArticleTitleRepetitive extragenic palindromic sequences: a major component of the bacterial genome. Cell 37 1015–1026 Occurrence Handle10.1016/0092-8674(84)90436-7 Occurrence Handle6378385

    Article  PubMed  Google Scholar 

  • JR Stewart RD Ellender JA Gooch S Jiang SP Myoda SB Weisberg (2003) ArticleTitleRecommendations for microbial source tracking: lessons from a methods comparison study J. Water Health 1 225–231 Occurrence Handle15382726

    PubMed  Google Scholar 

  • M Sussman (1997) Escherichia coli: Mechanisms of Virulence. Cambridge University Press Cambridge UK

    Google Scholar 

  • H Takada R Ishiwatari (1987) ArticleTitleLinear alkyl benzenes in urban riverine environments in Tokyo: distribution, source and behaviour Environ. Sci. Technol. 21 875–883 Occurrence Handle10.1021/es00163a005

    Article  Google Scholar 

  • N Tani Y Dohi N Kurumatani K Yonemasu (1995) ArticleTitleSeasonal distribution of adenoviruses, enteroviruses, and reoviruses in urban river water Microb. Immunol. 39 577–580

    Google Scholar 

  • C Tartera J Jofre (1987) ArticleTitleBacteriophages active against Bacteroides fragilis in sewage-polluted waters Appl. Environ. Microbiol. 53 1632–1637 Occurrence Handle3662510

    PubMed  Google Scholar 

  • C Tartera F Lucena J Jofre (1989) ArticleTitleHuman origin of Bacteroides fragilis bacteriophages present in the environment Appl. Environ. Microbiol. 55 2696–2701 Occurrence Handle2604407

    PubMed  Google Scholar 

  • IM Venkatesan CA Santiago (1989) ArticleTitleSterols in ocean sediments: novel tracers to examine habitats of cetaceans, pinnipeds, penguins and humans Mar. Biol. 102 431–437 Occurrence Handle10.1007/BF00438343

    Article  Google Scholar 

  • J Versalovic T Koeuth JR Lupski (1991) ArticleTitleDistribution of repetitive DNA-sequences in Eubacteria and application to fingerprinting of bacterial genomes Nucl. Acids Res. 19 6823–6831 Occurrence Handle1762913

    PubMed  Google Scholar 

  • J Versalovic M Schneider FJ Bruijn Particlede JR Lupski (1994) ArticleTitleGenomic fingerprinting of bacteria using repetitive sequence-based polymerase chain reaction Meth. Mol. Cell Biol. 5 25–40

    Google Scholar 

  • J Vila MA Marcos MT Jimenez Anta Particlede (1996) ArticleTitleA comparative study of different PCR-based DNA fingerprinting techniques for typing of the Acinetobacter calcoaceticus-A. baumannii complex J. Med. Microbiol. 44 482–489 Occurrence Handle8636966

    PubMed  Google Scholar 

  • P Vinuesa JLW Raedemaker FJ Bruijn D Werner (1998) ArticleTitleGenotypic characterization of Bradyrhizobium strains nodulating endemic woody legumes of the Canary Islands by PCR-restriction fragment length polymorphism analysis of genes encoding 16S rRNA (16S rDNA) and 16S–23S rDNA intergenic spacers, repetitive extragenic palindromic PCR genomic fingerprinting, and partial 16S rDNA sequencing Appl. Environ. Microbiol. 64 2096–2104 Occurrence Handle9603820

    PubMed  Google Scholar 

  • P Vos R Hogers M Bleeker M Reijans T Lee Particlevan de M Hornes A Frijters J Pot J Peleman M Muiper M Zabeau (1995) ArticleTitleAFLP: a new concept for DNA fingerprinting Nucl. Acids Res. 21 4407–4414

    Google Scholar 

  • JL Wallis HD Taylor (2003) ArticleTitlePhenotypic population characteristics on the enterococci in wastewater and animal faeces: implications for the new European directive on the quality of bathing waters Water Sci. Technol. 47 27–32

    Google Scholar 

  • LI Wassenaar (1995) ArticleTitleEvaluation of the origin and fate of nitrate in the Abbotsford aquifer using the isotopes of N15 and O18 in NO3, Appl Geochem. 10 391–405 Occurrence Handle10.1016/0883-2927(95)00013-A

    Article  Google Scholar 

  • LF Webster BC Thompson MH Fultan DE Chestnut RF Dolah ParticleVan AK Leight GI Scott (2004) ArticleTitleIdentification of sources of Escherichia coli in South Carolina estuaries using antibiotic resistance analysis J. Exp. Mar. Biol. Ecol. 298 179–195 Occurrence Handle10.1016/S0022-0981(03)00358-7

    Article  Google Scholar 

  • RA Whiley B Duke JM Hardie LMC Hall (1995) ArticleTitleHeterogeneity among 16S–23S rRNA intergenic spacers of species within the Streptococcus milleri group Microbiology 141 1461–1467 Occurrence Handle7545512

    PubMed  Google Scholar 

  • TS Whittam (1989) ArticleTitleClonal dynamics of Escherichia coli in its natural habitat Antonie Van Leeuwenhoek 55 23–32 Occurrence Handle2662899

    PubMed  Google Scholar 

  • TS Whittam H Ochman RK Selander (1983) ArticleTitleMultilocus genetic structure in natural populations of Escherichia coli Proc. Natl. Acad. Sci. USA 80 1751–1755 Occurrence Handle6340107

    PubMed  Google Scholar 

  • InstitutionalAuthorNameWHO (2003a) Emerging Issues in Water and Subscriptectious Disease World Health Organization Geneva

    Google Scholar 

  • InstitutionalAuthorNameWHO (2003b) Guidelines for Safe Recreational Water Environments, Vol. 1: Coastal and Fresh Waters World Health Organization Geneva

    Google Scholar 

  • BA Wiggins (1996) ArticleTitleDiscriminant analysis of antibiotic resistance patterns in fecal streptococci, a method to differentiate human and animal sources of fecal pollution in natural waters Appl. Environ. Microbiol. 62 3997–4002 Occurrence Handle8899986

    PubMed  Google Scholar 

  • BA Wiggins RW Andrews RA Conway CL Corr EJ Dobratz DP Dougherty JR Eppard SR Knupp MC Limjoco JM Mettenburg JM Rinehardt J Sonsino RL Torrijos ME Zimmerman (1999) ArticleTitleUse of antibiotic resistance analysis to identify nonpoint sources of fecal pollution Appl. Environ. Microbiol. 65 3484–3486

    Google Scholar 

  • BA Wiggins PW Cash WS Creamer SE Dart PP Garcia TM Gerecke J Han BL Henry KB Hoover EL Johnson KC Jones JG McCarthy JA McDonough SA Mercer MJ Noto H Park MS Phillips SM Purner BM Smith EN Stevens AK Varner (2003) ArticleTitleUse of antibiotic resistance analysis for representativeness testing of multiwatershed libraries Appl. Environ. Microbiol. 69 3399–3405 Occurrence Handle10.1128/AEM.69.6.3399-3405.2003 Occurrence Handle12788742

    Article  PubMed  Google Scholar 

  • A Willse TM Straub SC Wunshel JA Small DR Call DS Daly DP Chandler (2004) ArticleTitleQuantitative oligonucleotide micro array fingerprinting of Salmonella enterica isolates, Nucl Acids Res. 32 1848–1856 Occurrence Handle10.1093/nar/gkh329

    Article  Google Scholar 

  • RL Withman MB Nevers (2004) ArticleTitleEscherichia coli sampling reliability at a frequently closed Chicago Beach: monitoring and management implications Environ. Sci. Technol. 38 4241–4246 Occurrence Handle10.1021/es034978i Occurrence Handle15382848

    Article  PubMed  Google Scholar 

  • KE Wommack RR Colwell (2000) ArticleTitleVirioplankton: viruses in aquatic ecosystems Microbiol. Mol. Biol. Rev. 64 69–114 Occurrence Handle10.1128/MMBR.64.1.69-114.2000 Occurrence Handle10704475

    Article  PubMed  Google Scholar 

  • JH Writer JA Leenheer LB Barber GL Amy SC Chapra (1995) ArticleTitleSewage contamination in the upper Mississippi river as measured by the fecal sterol coprostanol. Water Res. 29 1427–1436 Occurrence Handle10.1016/0043-1354(94)00304-P

    Article  Google Scholar 

  • P Xu F Brissaud A Fazio (2002) ArticleTitleNon-steady-state modelling of faecal coliform removal in deep tertiary lagoons Water Res. 36 3074–3082 Occurrence Handle10.1016/S0043-1354(01)00534-6 Occurrence Handle12171406

    Article  PubMed  Google Scholar 

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Seurinck, S., Verstraete, W. & Siciliano, S.D. Microbial Source Tracking for Identification of Fecal Pollution. Rev Environ Sci Biotechnol 4, 19–37 (2005). https://doi.org/10.1007/s11157-005-4997-7

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