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Comparative genomics of Campylobacter iguaniorum to unravel genetic regions associated with reptilian hosts

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Campylobacter iguaniorum is most closely related to the species C. fetus, C. hyointestinalis, and C. lanienae Reptiles, chelonians and lizards in particular, appear to be a primary reservoir of this Campylobacter species. Here we report the genome comparison of C. iguaniorum strain 1485E, isolated from a bearded dragon (Pogona vitticeps), and strain 2463D, isolated from a green iguana (Iguana iguana), with the genomes of closely related taxa, in particular with reptile-associated C. fetus subsp. testudinum In contrast to C. fetus, C. iguaniorum is lacking an S-layer encoding region. Furthermore, a defined lipooligosaccharide biosynthesis locus, encoding multiple glycosyltransferases and bounded by waa genes, is absent from C. iguaniorum Instead, multiple predicted glycosylation regions were identified in C. iguaniorum One of these regions is > 50 kb with deviant G+C content, suggesting acquisition via lateral transfer. These similar, but non-homologous glycosylation regions were located at the same position on the genome in both strains. Multiple genes encoding respiratory enzymes not identified to date within the C. fetus clade were present. C. iguaniorum shared highest homology with C. hyointestinalis and C. fetus As in reptile-associated C. fetus subsp. testudinum, a putative tricarballylate catabolism locus was identified. However, despite colonizing a shared host, no recent recombination between both taxa was detected. This genomic study provides a better understanding of host adaptation, virulence, phylogeny, and evolution of C. iguaniorum and related Campylobacter taxa.

Original languageEnglish
Pages (from-to)3022-3029
Number of pages8
JournalGenome Biology and Evolution
Volume8
Issue number9
DOIs
Publication statusPublished - Sept 2016

Keywords

  • Campylobacter iguaniorum
  • reptile
  • comparative genomics
  • recombination
  • phylogeny
  • evolution

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