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Genomic diversity of Salmonella enterica -The UoWUCC 10K genomes project

  • Mark Achtman
  • , Zhemin Zhou
  • , Nabil Fareed Alikhan
  • , William Tyne
  • , Julian Parkhill
  • , Martin Cormican
  • , Chien Shun Chiou
  • , Mia Torpdahl
  • , Eva Litrup
  • , Deirdre M. Prendergast
  • , John E. Moore
  • , Sam Strain
  • , Christian Kornschober
  • , Richard Meinersmann
  • , Alexandra Uesbeck
  • , François Xavier Weill
  • , Aidan Coffey
  • , Helene Andrews-Polymenis
  • , Roy Curtiss
  • , Séamus Fanning
  • Warwick Medical School
  • University of Cambridge
  • National Salmonella
  • Centers for Disease Control
  • Statens Serum Institut
  • Food and the Marine
  • Belfast City Hospital
  • Animal Health and Welfare NI
  • Austrian Agency for Health and Food Safety
  • Donald Danforth Plant Science Center
  • University of Cologne
  • Institut Pasteur, Paris
  • South Campus
  • Texas A&M University
  • University of Florida
  • University College Dublin

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

75 Citations (Scopus)

Abstract

Background: Most publicly available genomes of Salmonella enterica are from human disease in the US and the UK, or from domesticated animals in the US. Methods: Here we describe a historical collection of 10,000 strains isolated between 1891-2010 in 73 different countries. They encompass a broad range of sources, ranging from rivers through reptiles to the diversity of all S. enterica isolated on the island of Ireland between 2000 and 2005. Genomic DNA was isolated, and sequenced by Illumina short read sequencing. Results: The short reads are publicly available in the Short Reads Archive. They were also uploaded to EnteroBase, which assembled and annotated draft genomes. 9769 draft genomes which passed quality control were genotyped with multiple levels of multilocus sequence typing, and used to predict serovars. Genomes were assigned to hierarchical clusters on the basis of numbers of pair-wise allelic differences in core genes, which were mapped to genetic Lineages within phylogenetic trees. Conclusions: The University of Warwick/University College Cork (UoWUCC) project greatly extends the geographic sources, dates and core genomic diversity of publicly available S. enterica genomes. We illustrate these features by an overview of core genomic Lineages within 33,000 publicly available Salmonella genomes whose strains were isolated before 2011. We also present detailed examinations of HC400, HC900 and HC2000 hierarchical clusters within exemplar Lineages, including serovars Typhimurium, Enteritidis and Mbandaka. These analyses confirm the polyphyletic nature of multiple serovars while showing that discrete clusters with geographical specificity can be reliably recognized by hierarchical clustering approaches. The results also demonstrate that the genomes sequenced here provide an important counterbalance to the sampling bias which is so dominant in current genomic sequencing.

Original languageEnglish
Article number223
JournalWellcome Open Research
Volume5
DOIs
Publication statusPublished - 2021
Externally publishedYes

Keywords

  • High throughput sequencing
  • Large scale genomic database
  • Population genomics
  • Salmonella

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