4.5 Article

Genome and Methylome analysis of a phylogenetic novel Campylobacter coli cluster with C. jejuni introgression

期刊

MICROBIAL GENOMICS
卷 7, 期 10, 页码 -

出版社

MICROBIOLOGY SOC
DOI: 10.1099/mgen.0.000679

关键词

Campylobacter coli; Campylobacter jejuni; genome; introgression; methylome; PacBio SMRT sequencing

资金

  1. Deutsche Forschungsgemeinschaft [DFG ZA 697/6-1]
  2. Forschungsforderungsprogramm of the Universitatsmedizin Gottingen (UMG), Germany
  3. Deutsche Forschungsgemeinschaft
  4. Georg August Universitat Gottingen

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The recent discovery of mixed Campylobacter coli strains suggests that C. coli and C. jejuni may be going through a process of accelerated gene transfer termed 'despeciation'. The phylogenetic tree revealed a separate cluster of Campylobacter isolates that possibly indicates genetic introgression. These hybrid strains, resulting from genetic introgression between C. coli and C. jejuni, have a genomic mosaic structure influenced by C. jejuni.
The intriguing recent discovery of Campylobacter coli strains, especially of clade 1, that (i) possess mosaic C. coli/C. jejuni alleles, (ii) demonstrate mixed multilocus sequence types (MLSTs) and (iii) have undergone genome-wide introgression has led to the speculation that these two species may be involved in an accelerated rate of horizontal gene transfer that is progressively leading to the merging of both species in a process coined 'despeciation'. In an MLST-based neighbour-joining tree of a number of C. coli and C. jejuni isolates of different clades, three prominent Campylobacter isolates formed a seemingly separate cluster besides the previously described C. coli and C. jejuni clades. In the light of the suspected, ongoing genetic introgression between the C. coli and C. jejuni species, this cluster of Campylobacter isolates is proposed to present one of the hybrid clonal complexes in the despeciation process of the genus. Specific DNA methylation as well as restriction modification systems are known to be involved in selective uptake of external DNA and their role in such genetic introgression remains to be further investigated. In this study, the phylogeny and DNA methylation of these putative C. coli/C. jejuni hybrid strains were explored, their genomic mosaic structure caused by C. jejuni introgression was demonstrated and basic phenotypic assays were used to characterize these isolates. The genomes of the three hybrid Campylobacter strains were sequenced using PacBio SMRT sequencing, followed by methylome analysis by Restriction-Modification Finder and genome analysis by Parsnp, Smash++ and blast. Additionally, the strains were phenotypically characterized with respect to growth behaviour, motility, eukaryotic cell invasion and adhesion, autoagglutination, biofilm formation, and water survival ability. Our analyses show that the three hybrid Campylobacter strains are clade 1 C. coli strains, which have acquired between 8.1 and 9.1 % of their genome from C. jejuni. The C. jejuni genomic segments acquired are distributed over the entire genome and do not form a coherent cluster. Most of the genes originating from C. jejuni are involved in chemotaxis and motility, membrane transport, cell signalling, or the resistance to toxic compounds such as bile acids. Interspecies gene transfer from C. jejuni has contributed 8.1-9.1% to the genome of three C. coli isolates and initiated the despeciation between C. jejuni and C. coli. Based on their functional annotation, the genes originating from C. jejuni enable the adaptation of the three strains to an intra-intestinal habitat. The transfer of a fused type II restriction-modification system that recognizes the CAYNNNNNCTC/GAGNNNNNRTG motif seems to be the key for the recombination of the C. jejuni genetic material with C. coli genomes.

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