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Genomics and Proteomics

Differences in Gene Content between Salmonella enterica Serovar Enteritidis Isolates and Comparison to Closely Related Serovars Gallinarum and Dublin

S. Porwollik, C. A. Santiviago, P. Cheng, L. Florea, M. McClelland
S. Porwollik
1Sidney Kimmel Cancer Center, 10835 Road to the Cure, San Diego, California 92121
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C. A. Santiviago
1Sidney Kimmel Cancer Center, 10835 Road to the Cure, San Diego, California 92121
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P. Cheng
1Sidney Kimmel Cancer Center, 10835 Road to the Cure, San Diego, California 92121
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L. Florea
2George Washington University, 801 22nd Street NW, Suite 704, Washington, DC 20052, and Center for Food Safety and Applied Nutrition, Food and Drug Administration, 8301 Muirkirk Rd., Laurel, Maryland 20708
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M. McClelland
1Sidney Kimmel Cancer Center, 10835 Road to the Cure, San Diego, California 92121
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  • For correspondence: mmcclelland@skcc.org
DOI: 10.1128/JB.187.18.6545-6555.2005
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ABSTRACT

Salmonella enterica serovar Enteritidis is often transmitted into the human food supply through eggs of hens that appear healthy. This pathogen became far more prevalent in poultry following eradication of the fowl pathogen S. enterica serovar Gallinarum in the mid-20th century. To investigate whether changes in serovar Enteritidis gene content contributed to this increased prevalence, and to evaluate genetic heterogeneity within the serovar, comparative genomic hybridization was performed on eight 60-year-old and nineteen 10- to 20-year-old serovar Enteritidis strains from various hosts, using a Salmonella-specific microarray. Overall, almost all the serovar Enteritidis genomes were very similar to each other. Excluding two rare strains classified as serovar Enteritidis in the Salmonella reference collection B, only eleven regions of the serovar Enteritidis phage type 4 (PT4) chromosome (sequenced at the Sanger Center) were absent or divergent in any of the other serovar Enteritidis strains tested. The more recent isolates did not have consistent differences from 60-year-old field isolates, suggesting that no large genomic additions on a whole-gene scale were needed for serovar Enteritidis to become more prevalent in domestic fowl. Cross-hybridization of phage genes on the array with related genes in the examined genomes grouped the serovar Enteritidis isolates into two major lineages. Microarray comparisons of the sequenced serovar Enteritidis PT4 to isolates of the closely related serovars Dublin and Gallinarum (biovars Gallinarum and Pullorum) revealed several genomic areas that distinguished them from serovar Enteritidis and from each other. These differences in gene content could be useful in DNA-based typing and in understanding the different phenotypes of these related serovars.

  • Copyright © 2005 American Society for Microbiology
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Differences in Gene Content between Salmonella enterica Serovar Enteritidis Isolates and Comparison to Closely Related Serovars Gallinarum and Dublin
S. Porwollik, C. A. Santiviago, P. Cheng, L. Florea, M. McClelland
Journal of Bacteriology Sep 2005, 187 (18) 6545-6555; DOI: 10.1128/JB.187.18.6545-6555.2005

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Differences in Gene Content between Salmonella enterica Serovar Enteritidis Isolates and Comparison to Closely Related Serovars Gallinarum and Dublin
S. Porwollik, C. A. Santiviago, P. Cheng, L. Florea, M. McClelland
Journal of Bacteriology Sep 2005, 187 (18) 6545-6555; DOI: 10.1128/JB.187.18.6545-6555.2005
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KEYWORDS

Bacterial Typing Techniques
DNA, Bacterial
Genome, Bacterial
Salmonella enteritidis

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