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Genome analysis of Salmonella enterica subsp. diarizonae isolates from invasive human infections reveals enrichment of virulence-related functions in lineage ST1256

  • Joaquín Giner-Lamia
  • , Pablo Vinuesa
  • , Laura Betancor
  • , Claudia Silva
  • , Julieta Bisio
  • , Lorena Soleto
  • , José A. Chabalgoity
  • , José Luis Puente
  • , Fernando C. Soncini
  • , Eleonora García-Vescovi
  • , Griselda Flores
  • , José Pedraza
  • , Lucia Yim
  • , Coralith García
  • , Lizeth Astocondor
  • , Theresa Ochoa
  • , Noemí Hinostroza
  • , M. Graciela Pucciarelli
  • , Alfredo Hernández-Alvarez
  • , Victor Del Moral
  • Francisco García-Del Portillo
  • Consejo Superior de Investigaciones Científicas (CNB-CSIC)
  • Universidad Politécnica de Madrid
  • Universidad Nacional Autónoma de México Campus Morelos
  • Universidad de la República
  • Bioprocesos. Instituto de Biotecnología
  • Ministerio de Salud Bolivia
  • Universidad Autónoma Gabriel René Moreno

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

Background: Salmonella enterica subsp. diarizonae (IIIb) is frequently isolated from the environment, cold-blooded reptiles, sheep and humans; however only a few studies describe the isolation of this subspecies from invasive human infections. The factors contributing to this unusual behavior are currently unknown. Results: We report here the genome features of two diarizonae strains, SBO13 and SBO27, isolated from endocervical tissue collected post-abortion and from cerebrospinal fluid of a newborn child, respectively, in the city of Santa Cruz, Bolivia. Although isolated six years apart, SBO27 in 2008 and SBO13 in 2014, both strains belong to the same sequence type 1256 (ST1256) and show a high degree of genome conservation sharing more than 99% of their genes, including the conservation of a ~ 10 kb plasmid. A prominent feature of the two genomes is the presence of 24 genomic islands (GIs), in addition to 10 complete Salmonella pathogenicity islands (SPI) and fragments of SPI-7, a pathogenicity island first reported in the human-adapted serovar Typhi. Some of the GIs identified in SBO13 and SBO27 harbor genes putatively encoding auto-transporters involved in adhesion, lipopolysaccharide modifying enzymes, putative toxins, pili-related proteins, efflux pumps, and several putative membrane cation transport related-genes, among others. These two Bolivian isolates also share genes encoding the type-III secretion system effector proteins SseK2, SseK3 and SlrP with other diarizonae sequence types (ST) mainly-associated with infections in humans. The sseK2, sseK3 and slrP genes were either absent or showing frameshift mutations in a significant proportion of genomes from environmental diarizonae isolates. Conclusions: The comparative genomic study of two diarizonae strains isolated in Bolivia from human patients uncovered the presence of many genes putatively related to virulence. The statistically-significant acquisition of a unique combination of these functions by diarizonae strains isolated from humans may have impacted the ability of these isolates to successfully infect the human host.

Original languageEnglish
Article number99
JournalBMC Genomics
Volume20
Issue number1
DOIs
StatePublished - 31 Jan 2019

Keywords

  • Comparative genomics
  • Invasive human infections
  • Salmonella enterica
  • Subspecies diarizonae
  • Type-III effectors
  • Virulence genes

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