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PMID: 10878033 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Genomic variability of Haemophilus influenzae isolated from Mexican children determined by using enterobacterial repetitive intergenic consensus sequences and PCR.

Journal of clinical microbiology ·Vol. 38 ·No. 7 ·2000-07-00 ·Pages 2504-11

Gomez-De-Leon P, Santos JI, Caballero J, Gomez D, Espinosa LE, Moreno I, Piñero D, Cravioto A

Abstract

Genomic fingerprints from 92 capsulated and noncapsulated strains of Haemophilus influenzae from Mexican children with different diseases and healthy carriers were generated by PCR using the enterobacterial repetitive intergenic consensus (ERIC) sequences. A cluster analysis by the unweighted pair-group method with arithmetic averages based on the overall similarity as estimated from the characteristics of the genomic fingerprints, was conducted to group the strains. A total of 69 fingerprint patterns were detected in the H. influenzae strains. Isolates from patients with different diseases were represented by a variety of patterns, which clustered into two major groups. Of the 37 strains isolated from cases of meningitis, 24 shared patterns and were clustered into five groups within a similarity level of 1.0. One fragment of 1.25 kb was common to all meningitis strains. H. influenzae strains from healthy carriers presented fingerprint patterns different from those found in strains from sick children. Isolates from healthy individuals were more variable and were distributed differently from those from patients. The results show that ERIC-PCR provides a powerful tool for the determination of the distinctive pathogenicity potentials of H. influenzae strains and encourage its use for molecular epidemiology investigations.

MeSH Terms
Carrier State/microbiology Child Child, Preschool Cluster Analysis DNA Fingerprinting/methods Electrophoresis/methods Genetic Variation Haemophilus Infections/microbiology Haemophilus influenzae/genetics,isolation & purification,pathogenicity Humans Meningitis, Haemophilus/microbiology Mexico Polymerase Chain Reaction/methods Repetitive Sequences, Nucleic Acid/genetics
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Gomez-De-Leon P
Departamentos de Salud Publica y, Universidad Nacional, Autonoma de Mexico, Mexico D.F., Mexico.
Santos J I
Caballero J
Gomez D
Espinosa L E
Moreno I
Piñero D
Cravioto A
References (30)
30 references, click to expand
  1. Special Escherichia coli serotypes among enterotoxigenic strains from diarrhoea in adults and children.
    Med Microbiol Immunol. 1976 Jun 1;162(2):73-80 PMID: 778571
  2. Outer membrane protein profiles of paired nasopharyngeal and middle ear isolates of nontypable Haemophilus influenzae from Mexican children with acute otitis media.
    Clin Infect Dis. 1999 Feb;28(2):267-73 PMID: 10064242
  3. Electrophoretic heterogeneity and interstrain variation of the lipopolysaccharide of Haemophilus influenzae.
    J Infect Dis. 1983 Sep;148(3):492-9 PMID: 6604761
  4. The pathogenicity of Haemophilus influenzae.
    J Med Microbiol. 1984 Aug;18(1):1-16 PMID: 6146721
  5. Genetic relationships of serologically nontypable and serotype b strains of Haemophilus influenzae.
    Infect Immun. 1986 Apr;52(1):183-91 PMID: 3485574
  6. Outer membrane protein and lipooligosaccharide analysis of paired nasopharyngeal and middle ear isolates in otitis media due to nontypable Haemophilus influenzae: pathogenetic and epidemiological observations.
    J Infect Dis. 1987 Nov;156(5):723-31 PMID: 2443581
  7. The molecular mechanism of phase variation of H. influenzae lipopolysaccharide.
    Cell. 1989 Nov 17;59(4):657-65 PMID: 2479481
  8. Global genetic structure and molecular epidemiology of encapsulated Haemophilus influenzae.
    Rev Infect Dis. 1990 Jan-Feb;12(1):75-111 PMID: 1967849
  9. Characterization of repetitive sequences controlling phase variation of Haemophilus influenzae lipopolysaccharide.
    J Bacteriol. 1990 Jun;172(6):3304-9 PMID: 1693145
  10. Characterization of noncapsulate Haemophilus influenzae by whole-cell polypeptide profiles, restriction endonuclease analysis, and rRNA gene restriction patterns.
    J Clin Microbiol. 1991 Feb;29(2):291-6 PMID: 1706727
  11. Organization of the bacterial chromosome.
    Microbiol Rev. 1990 Dec;54(4):502-39 PMID: 2087223
  12. ERIC sequences: a novel family of repetitive elements in the genomes of Escherichia coli, Salmonella typhimurium and other enterobacteria.
    Mol Microbiol. 1991 Apr;5(4):825-34 PMID: 1713281
  13. Distribution of repetitive DNA sequences in eubacteria and application to fingerprinting of bacterial genomes.
    Nucleic Acids Res. 1991 Dec 25;19(24):6823-31 PMID: 1762913
  14. Short, interspersed repetitive DNA sequences in prokaryotic genomes.
    J Bacteriol. 1992 Jul;174(14):4525-9 PMID: 1624445
  15. Use of repetitive (repetitive extragenic palindromic and enterobacterial repetitive intergeneric consensus) sequences and the polymerase chain reaction to fingerprint the genomes of Rhizobium meliloti isolates and other soil bacteria.
    Appl Environ Microbiol. 1992 Jul;58(7):2180-7 PMID: 1637156
  16. Genomic DNA fingerprinting of clinical Haemophilus influenzae isolates by polymerase chain reaction amplification: comparison with major outer-membrane protein and restriction fragment length polymorphism analysis.
    J Med Microbiol. 1994 Jul;41(1):63-8 PMID: 7911842
  17. Dynamics of adaptation and diversification: a 10,000-generation experiment with bacterial populations.
    Proc Natl Acad Sci U S A. 1994 Jul 19;91(15):6808-14 PMID: 8041701
  18. Specific genomic fingerprints of phytopathogenic Xanthomonas and Pseudomonas pathovars and strains generated with repetitive sequences and PCR.
    Appl Environ Microbiol. 1994 Jul;60(7):2286-95 PMID: 8074510
  19. Adaptive evolution of highly mutable loci in pathogenic bacteria.
    Curr Biol. 1994 Jan 1;4(1):24-33 PMID: 7922307
  20. A simple procedure for optimising the polymerase chain reaction (PCR) using modified Taguchi methods.
    Nucleic Acids Res. 1994 Sep 11;22(18):3801-5 PMID: 7937094
  21. PCR for capsular typing of Haemophilus influenzae.
    J Clin Microbiol. 1994 Oct;32(10):2382-6 PMID: 7814470
  22. MSCRAMM-mediated adherence of microorganisms to host tissues.
    Annu Rev Microbiol. 1994;48:585-617 PMID: 7826020
  23. DNA repeats identify novel virulence genes in Haemophilus influenzae.
    Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):11121-5 PMID: 8855319
  24. Clonality of multidrug-resistant nontypeable strains of Haemophilus influenzae.
    J Clin Microbiol. 1996 Nov;34(11):2760-5 PMID: 8897179
  25. Progress towards a vaccine for nontypable Haemophilus influenzae.
    Ann Med. 1996 Feb;28(1):31-7 PMID: 8932503
  26. Nonencapsulated Haemophilus influenzae in Aboriginal infants with otitis media: prolonged carriage of P2 porin variants and evidence for horizontal P2 gene transfer.
    Infect Immun. 1997 Apr;65(4):1468-74 PMID: 9119489
  27. Short-sequence DNA repeats in prokaryotic genomes.
    Microbiol Mol Biol Rev. 1998 Jun;62(2):275-93 PMID: 9618442
  28. Haemophilus influenzae invasive disease in the United States, 1994-1995: near disappearance of a vaccine-preventable childhood disease.
    Emerg Infect Dis. 1998 Apr-Jun;4(2):229-37 PMID: 9621193
  29. Antigenic diversity and gene polymorphisms in Haemophilus influenzae.
    Infect Immun. 1998 Nov;66(11):5053-9 PMID: 9784503
  30. Outer membrane protein and biotype analysis of pathogenic nontypable Haemophilus influenzae.
    Infect Immun. 1982 May;36(2):535-40 PMID: 6979511
Article Info
Journal
Journal of clinical microbiology
Abbr.
J Clin Microbiol
ISSN
0095-1137
Published
2000-07-00
Pages
2504-11
Language
English
Region
United States
NLM ID
7505564
PMCID
PMC86953
Subset
IM
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