Pulsed-Field Gel Electrophoresis and the Molecular Epidemiology of Foodborne Pathogens

2014 ◽  
pp. 27-46
Author(s):  
Mohana Ray ◽  
David C. Schwartz
2003 ◽  
Vol 131 (1) ◽  
pp. 607-612 ◽  
Author(s):  
A. R. SOARES ◽  
J. MACHADO

Salmonella enterica serotype Enteritidis is an important serovar comprising 76% of salmonella isolates in Portugal in 2001.For better understand the epidemiology of salmonellosis, a total of 47 isolates of S. Enteritidis phage type (PT) 1b and 6a were analysed by pulsed-field gel electrophoresis (PFGE) and genomic DNA was subjected to macro restriction with XbaI. For PT1b isolates, only three different patterns were observed, and PT6a showed a total of 10 digestion patterns. Curiously, the main pattern among PT1b isolates seams quite similar to main pattern of PT6a isolates, but when the two patterns were analysed with Bionumerics, we observed that they exhibited some differences. It was concluded that, in 2001, there was one predominant pattern for PT1b and PT6a and, possibly, we were in presence of clonal strains that exists all over the country.


2003 ◽  
Vol 47 (2) ◽  
pp. 804-808 ◽  
Author(s):  
Kimberly A. Nichol ◽  
George G. Zhanel ◽  
Daryl J. Hoban

ABSTRACT Eighty-nine penicillin- and ciprofloxacin-resistant Streptococcus pneumoniae isolates were evaluated by serotyping and pulsed-field gel electrophoresis. Although penicillin-resistant isolates demonstrated considerable homogeneity, resistance to ciprofloxacin did not correlate with a reduction in genotypic variability. These results suggest that, unlike that of penicillin resistance, the spread of S. pneumoniae ciprofloxacin resistance in Canada is currently not attributable to clonal dissemination.


1999 ◽  
Vol 37 (6) ◽  
pp. 1927-1931 ◽  
Author(s):  
Samir P. Singh ◽  
Hugh Salamon ◽  
Carol J. Lahti ◽  
Mehran Farid-Moyer ◽  
Peter M. Small

Pulsed-field gel electrophoresis (PFGE) is a powerful molecular biology technique which has provided important insights into the epidemiology and population biology of many pathogens. However, few studies have used PFGE for the molecular epidemiology ofMycobacterium tuberculosis. A laboratory protocol was developed to determine the typeability, stability, and reproducibility of PFGE typing of M. tuberculosis. Formal data-analytical techniques were used to assess the genetic diversity elucidated by PFGE analyses using four separate restriction enzymes and by IS6110 RFLP analyses, as well as to assess the concordance among these typing methods. One hundred epidemiologically characterized clinical isolates of M. tuberculosis were genotyped with four different PFGE enzymes (AseI, DraI,SpeI, and XbaI), as well as by RFLP analysis with IS6110. Identical patterns were found among 34 isolates known to be genetically related, suggesting that the PFGE protocol is robust and reproducible. Among 66 isolates representing population-sampled cases, heterozygosity and information content dependency estimates indicate that all five genotyping systems capture quantitatively similar levels of genetic diversity. Nevertheless, comparisons between PFGE analyses and IS6110 typing reveals that PFGE provided more discrimination among isolates with fewer than five copies of IS6110 and less clustering in isolates with five or more copies. The comparisons confirm the hypothesis that the resolution of IS6110 RFLP genotyping is dependent upon the number of IS6110 elements in the genome of isolates. The general concordance among the results obtained with four independent enzymes suggests that M. tuberculosis is a clonal organism. The availability of a robust genotyping technique largely independent of repetitive elements has implications for the molecular epidemiology of M. tuberculosis.


2016 ◽  
Vol 80 (1) ◽  
pp. 15-24 ◽  
Author(s):  
TOM EDLIND ◽  
JEFFREY D. BREWSTER ◽  
GEORGE C. PAOLI

ABSTRACT Detection of Salmonella enterica in foods typically involves microbiological enrichment, molecular-based assay, and subsequent isolation and identification of a pure culture. This is ideally followed by strain typing, which provides information critical to the investigation of outbreaks and the attribution of their sources. Pulsed-field gel electrophoresis is the “gold standard” for S. enterica strain typing, but its limitations have encouraged the search for alternative methods, including whole genome sequencing. Both methods typically require a pure culture, which adds to the cost and turnaround time. A more rapid and cost-effective method with sufficient discriminatory power would benefit food industries, regulatory agencies, and public health laboratories. To address this need, a novel enrichment, amplification, and sequence-based typing (EAST) approach was developed involving (i) overnight enrichment and total DNA preparation, (ii) amplification of polymorphic tandem repeat–containing loci with electrophoretic detection, and (iii) DNA sequencing and bioinformatic analysis to identify related strains. EAST requires 3 days or less and provides a strain resolution that exceeds serotyping and is comparable to pulsed-field gel electrophoresis. Evaluation with spiked ground turkey demonstrated its sensitivity (with a starting inoculum of ≤1 CFU/g) and specificity (with unique or nearly unique alleles relative to databases of >1,000 strains). In tests with unspiked retail chicken parts, 3 of 11 samples yielded S. enterica–specific PCR products. Sequence analysis of three distinct typing targets (SeMT1, SeCRISPR1, and SeCRISPR2) revealed consistent similarities to specific serotype Schwarzengrund, Montevideo, and Typhimurium strains. EAST provides a time-saving and cost-effective approach for detecting and typing foodborne S. enterica, and postenrichment steps can be commercially outsourced to facilitate its implementation. Initial studies with Listeria monocytogenes and Shiga toxigenic Escherichia coli suggest that EAST can be extended to these foodborne pathogens.


1999 ◽  
Vol 123 (1) ◽  
pp. 133-138 ◽  
Author(s):  
R. F. ATYEO ◽  
S. L. OXBERRY ◽  
D. J. HAMPSON

Pulsed-field gel electrophoresis (PFGE) was applied as a molecular typing tool for the spirochaete Serpulina hyodysenteriae, the agent of swine dysentery. Analysis of a collection of 40 mainly Australian isolates, previously characterized by other methods, divided these into 23 PFGE types. This confirmed that there are many strains of the spirochaete in Australia. PFGE was more discriminatory for strain typing than both multilocus enzyme electrophoresis and serotyping. It had similar discriminatory power to restriction endonuclease analysis, but the results of PFGE were easier to interpret. When applied to 29 isolates collected from 4 farms over periods of up to 8 years, 2 PFGE patterns were found on 3 farms, and a single pattern on the other. In each case a new strain had apparently emerged as a variant of an original parent strain. PFGE was found to be a powerful technique for investigating the molecular epidemiology of swine dysentery outbreaks.


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