Volume 9, Number 1—January 2003
Dispatch
Single Multiplex Polymerase Chain Reaction To Detect Diverse Loci Associated with Diarrheagenic Escherichia coli
Table 1
E. coli category tested strains and serotypes | Locus | Primers | Amplicon size (bp) | Primer (pMol) in mix |
---|---|---|---|---|
ETEC
H10407 O78:H11b (7)
E9034A O8:H9 (8)
B2C O6:H16 (8)
E8775A O25:H42c (9) |
lt |
F:5´GGC GAC AGA TTA TAC CGT GC3´ (4)
R:5´ CGG TCT CTA TAT TCC CTG TT3´ (4) |
440 |
5.0 |
ETEC
H10407 O78:H11b (7)
E9034A O8:H9 (8)
B2C O6:H16 (8)
E8775A O25:H42c (9) |
st |
F:5´ATT TTT CTT TCT GTA TTG TCT T3´ (4)
R:5´CAC CCG GTA CAA GCA GGA TT3´ (4) |
191 |
6.47 |
EPEC
E2348-69 O127:H6b (10)
B171-8 O111:NM (10)
659-79 O119:H6 (10)
E851/71 O142:H6 (10) |
bfpA |
F:5´AAT GGT GCT TGC GCT TGC TGC3´ (5)
R:5´ GCC GCT TTA TCC AAC CTG GTA3´ (5) |
324 |
2.5 |
EPEC
E2348-69 O127:H6b (10)
B171-8 O111:NM (10)
659-79 O119:H6 (10)
E851/71 O142:H6 (10)
STEC
EDL933 O157:H7b (11)
TB334C O85:NM (12)
TB285A O126:H2 (12)
TB226A O11:HN(12) |
eaeA |
F:5´ GAC CCG GCA CAA GCA TAA GC3´ (6)
R:5´CCA CCT GCA GCA ACA AGA GG3´ (6) |
384 |
3.88 |
STEC
EDL933 O157:H7b (11)
TB334C O85:NM (12)
TB285A O126:H2 (12)
TB226A O11:HN (12) |
stx1 |
F:5´CTG GAT TTA ATG TCG CAT AGT G3´ d (GenBank accession no. M17358)
R:5´AGA ACG CCC ACT GAG ATC ATC3´ (6) |
150 |
3.88 |
STEC
EDL933 O157:H7b (11)
TB226A O11:HN (12) |
stx2 |
F:5´GGC ACT GTC TGA AAC TGC TCC3´ (6)
R:5´TCG CCA GTT ATC TGA CAT TCT G3´ (6) |
255 |
2.5 |
EIEC E11 O124NMb (13) O124:H30 (14) O136:NM (14) O143:NM (14) | ial | F:5´GGT ATG ATG ATG ATG AGT CCA 3´ d (GenBank accession no. D13663) R:5´ GGA GGC CAA CAA TTA TTT CC 3´d | 650 | 10.25 |
aE. coli, Escherichia coli; ETEC, enterotoxigenic E. coli; EPEC, enteropathogenic E. coli; EIEC,
enteroinvasive E. coli; STEC, Shiga-toxin–producing E. coli; PCR, polymerase chain reaction.
bE. coli prototype strains.
cDonated by the Public Health Laboratory Service, Central Health Laboratory, London, United
Kingdom.
dThese primers were designed by us from the gene bank sequences.
References
- Nataro JP, Kaper JB. Diarrheagenic Escherichia coli. Clin Microbiol Rev. 1998;11:142–201.PubMedGoogle Scholar
- Fang GD, Lima AA, Martins CV, Nataro JP, Guerrant RL. Etiology and epidemiology of persistent diarrhea in northeastern Brazil: a hospital-based, prospective, case-control study. J Pediatr Gastroenterol Nutr. 1995;21:137–44. DOIPubMedGoogle Scholar
- Flores Abuxapqui JJ, Suarez Hoil GJ, Heredia Navarrete MR, Puc Franco MA, Vivas Rosel ML. Four biochemical tests for identification of probable enteroinvasive Escherichia coli strains. Rev Latinoam Microbiol. 1999;41:259–61.PubMedGoogle Scholar
- Stacy-Phipps S, Mecca JJ, Weiss JB. Multiplex PCR assay and simple preparation method for stool specimens detect enterotoxigenic Escherichia coli DNA during the course of infection. J Clin Microbiol. 1995;33:1054–9.PubMedGoogle Scholar
- Gunzburg ST, Tornieporth NG, Riley LW. Identification of enteropathogenic Escherichia coli by PCR-based detection of the bundle-forming pilus gene. J Clin Microbiol. 1995;33:1375–7.PubMedGoogle Scholar
- Paton AW, Paton JC. Detection and characterization of Shiga toxigenic Escherichia coli by using multiplex PCR assays for stx1, stx2, eaeA, enterohemorrhagic E. coli hlyA, rfb0111, and rfb0157. J Clin Microbiol. 1998;36:598–602.PubMedGoogle Scholar
- Fleckenstein JM, Lindler LE, Elsinghorst EA, Dale JB. Identification of a gene within a pathogenicity island of enterotoxigenic Escherichia coli H10407 required for maximal secretion of the heat-labile enterotoxin. Infect Immun. 2000;68:2766–74. DOIPubMedGoogle Scholar
- Levine MM, Ristaino P, Marley G, Smith C, Knutton S, Boedeker E, Coli surface antigens 1 and 3 of colonization factor antigen II-positive enterotoxigenic Escherichia coli: morphology, purification and immune responses in humans. Infect Immun. 1984;44:409–20.PubMedGoogle Scholar
- Svennerholm AM, Wenneras C, Holmgren J, McConnell MM, Rowe B. Roles of different coli surface antigens of colonization factor antigen II in colonization by and protective immunogenicity of enterotoxigenic Escherichia coli in rabbits. Infect Immun. 1990;58:341–6.PubMedGoogle Scholar
- Okeke IN, Borneman JA, Shin S, Mellies JL, Quinn LE, Kaper JB. Comparative sequence analysis of the plasmid-encoded regulator of enteropathogenic Escherichia coli strains. Infect Immun. 2001;69:5553–64. DOIPubMedGoogle Scholar
- Schmidt H, Beutin L, Karch H. Molecular analysis of the plasmid-encoded hemolysin of Escherichia coli O157:H7 strain EDL 933. Infect Immun. 1995;63:1055–61.PubMedGoogle Scholar
- Bokete TN, Whittam TS, Wilson RA, Clausen CR, O’Callahan CM, Moseley SL, Genetic and phenotypic analysis of Escherichia coli with enteropathogenic characteristics isolated from Seattle children. J Infect Dis. 1997;175:1382–9. DOIPubMedGoogle Scholar
- Riley LW, Junio LN, Schoolnik GK. HeLa cell invasion by a strain of enteropathogenic Escherichia coli that lacks the O-antegenic polysaccharide. Mol Microbiol. 1990;4:1661–6. DOIPubMedGoogle Scholar
- Martinez MB, Whittan TS, McGraw EA, Rodrigues J, Trabulsi LR. Clonal relationship among invasive and non-invasive strains of enteroinvasive Escherichia coli serogroups. FEMS Microbiol Lett. 1999;172:145–51. DOIPubMedGoogle Scholar
- Rappelli P, Maddau G, Mannu F, Colombo MM, Fiori PL, Cappuccinelli P. Development of a set of multiplex PCR assays for the simultaneous identification of enterotoxigenic, enteropathogenic, enterohemorrhagic and enteroinvasive Escherichia coli. New Microbiol. 2001;24:77–83.PubMedGoogle Scholar
- Pass MA, Odedra R, Batt RM. Multiplex PCRs for identification of Escherichia coli virulence genes. J Clin Microbiol. 2000;38:2001–4.PubMedGoogle Scholar
- Paton AW, Paton JC, Goldwater PN, Manning PA. Direct detection of Escherichia coli Shiga-like toxin genes in primary fecal cultures by polymerase chain reaction. J Clin Microbiol. 1993;31:3063–7.PubMedGoogle Scholar
- Fratamico PM, Sackitey SK, Wiedmann M, Deng MY. Detection of Escherichia coli O157:H7 by multiplex PCR. J Clin Microbiol. 1995;33:2188–91.PubMedGoogle Scholar
- Houng HS, Sethabutr O, Echeverria P. A simple polymerase chain reaction technique to detect and differentiate Shigella and enteroinvasive Escherichia coli in human feces. Diagn Microbiol Infect Dis. 1997;28:19–25. DOIPubMedGoogle Scholar
- Samadpour M, Liston J, Ongerth JE, Tarr PI. Evaluation of DNA probes for detection of Shiga-like–toxin-producing Escherichia coli in food and calf fecal samples. Appl Environ Microbiol. 1990;56:1212–5.PubMedGoogle Scholar
- Stephan R, Ragettli S, Untermann F. Prevalence and characteristics of verotoxin-producing Escherichia coli (VTEC) in stool samples from asymptomatic human carriers working in the meat processing industry in Switzerland. J Appl Microbiol. 2000;88:335–41. DOIPubMedGoogle Scholar
- Tjoa WS, DuPont HL, Sullivan P, Pickering LK, Holguin AH, Olarte J, Location of food consumption and travelers’ diarrhea. Am J Epidemiol. 1977;106:61–6.PubMedGoogle Scholar
- Ericsson CD, Pickering LK, Sullivan P, DuPont HL. The role of location of food consumption in the prevention of travelers’ diarrhea in Mexico. Gastroenterology. 1980;79:812–6.PubMedGoogle Scholar
- Ericsson CD, DuPont HL, Mathewson JJ III. Epidemiologic observations on diarrhea developing in U.S. and Mexican students living in Guadalajara, Mexico. J Travel Med. 1995;2:6–10. DOIPubMedGoogle Scholar
- Oyemade A, Omokhodion FO, Olawuyi JF, Sridhar MK, Olaseha IO. Environmental and personal hygiene practices: risk factors for diarrhoea among children of Nigerian market women. J Diarrhoeal Dis Res. 1998;16:241–7.PubMedGoogle Scholar
- Ries AA, Vugia DJ, Beingolea L, Palacios AM, Vasquez E, Wells JG, Cholera in Piura, Peru: a modern urban epidemic. J Infect Dis. 1992;166:1429–33.PubMedGoogle Scholar
- Bryant HE, Csokonay WM, Love M, Love EJ. Self-reported illness and risk behaviours amongst Canadian travellers while abroad. Can J Public Health. 1991;82:316–9.PubMedGoogle Scholar
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