2013
DOI: 10.1128/genomea.01016-13
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Draft Genome Sequence of Salmonella enterica subsp. enterica Serotype Saintpaul Strain S-70, Isolated from an Aquatic Environment

Abstract: Salmonella is a pathogen of worldwide importance, causing disease in a vast range of hosts, including humans. We report the genome sequence of Salmonella enterica subsp. enterica serotype Saintpaul strain S-70, isolated from an aquatic environment.

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Cited by 6 publications
(1 citation statement)
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“…Once the bacteria have adhered to nonphagocytic cells, triggers a process within the host cell to promote its own internalization. Aquatic isolated S. Oranienburg S76 and S. Saintpaul S70 genomes include genes that confer these bacteria the ability to invade epithelial cells (Estrada‐Acosta et al, ; Medrano‐Félix et al, ), such as regulators of the activation of the SPI‐1 that may confer an invasiveness similar to clinical serotypes. The invasion of Caco‐2 cells by these environmental serotypes were ~2.5‐fold more efficient than the clinical isolate, but less invasive than S. Typhimurium.…”
Section: Discussionmentioning
confidence: 99%
“…Once the bacteria have adhered to nonphagocytic cells, triggers a process within the host cell to promote its own internalization. Aquatic isolated S. Oranienburg S76 and S. Saintpaul S70 genomes include genes that confer these bacteria the ability to invade epithelial cells (Estrada‐Acosta et al, ; Medrano‐Félix et al, ), such as regulators of the activation of the SPI‐1 that may confer an invasiveness similar to clinical serotypes. The invasion of Caco‐2 cells by these environmental serotypes were ~2.5‐fold more efficient than the clinical isolate, but less invasive than S. Typhimurium.…”
Section: Discussionmentioning
confidence: 99%