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Published on: July 14, 2020
Neisseria meningitidis has acquired sequences within the capsule locus by horizontal genetic transfer
Marianne E A Clemence1, Odile B Harrison1, Martin C J Maiden1
1Department of Zoology, University of Oxford, Oxford, OX1 3SY, UK.
Abstract:
Background: Expression of a capsule from one of serogroups A, B, C, W, X or Y is usually required for Neisseria meningitidis ( Nme) to cause invasive meningococcal disease. The capsule is encoded by the capsule locus, cps, which is proposed to have been acquired by a formerly capsule null organism by horizontal genetic transfer (HGT) from another species. Following identification of putative capsule genes in non-pathogenic Neisseria species, this hypothesis is re-examined. Methods: Whole genome sequence data from Neisseria species, including Nme genomes from a diverse range of clonal complexes and capsule genogroups, and non- Neisseria species, were obtained from PubMLST and GenBank. Sequence alignments of genes from the meningococcal cps, and predicted orthologues in other species, were analysed using Neighbor-nets, BOOTSCANing and maximum likelihood phylogenies. Results: The meningococcal cps was highly mosaic within regions B, C and D. A subset of sequences within regions B and C were phylogenetically nested within homologous sequences belonging to N. subflava, consistent with HGT event in which N. subflava was the donor. In the cps of 23/39 isolates, the two copies of region D were highly divergent, with rfbABC' sequences being more closely related to predicted orthologues in the proposed species N. weixii (GenBank accession number CP023429.1) than the same genes in Nme isolates lacking a capsule. There was also evidence of mosaicism in the rfbABC' sequences of the remaining 16 isolates, as well as rfbABC from many isolates. Conclusions: Data are consistent with the en bloc acquisition of cps in meningococci from N. subflava, followed by further recombination events with other Neisseria species. Nevertheless, the data cannot refute an alternative model, in which native meningococcal capsule existed prior to undergoing HGT with N. subflava and other species. Within-genus recombination events may have given rise to the diversity of meningococcal capsule serogroups.
Insights
The capsule locus (cps) of Neisseria meningitidis was likely acquired from Neisseria subflava via horizontal genetic transfer (HGT). Further recombination events contributed to the diversity of meningococcal capsule serogroups.
Area of Science:
- Microbiology
- Genomics
- Evolutionary Biology
Background:
- Invasive meningococcal disease is typically caused by Neisseria meningitidis (Nme) expressing a capsule.
- The capsule locus (cps) is thought to have been acquired by horizontal genetic transfer (HGT).
- This study re-examines the origin of the cps locus by investigating capsule genes in pathogenic and non-pathogenic Neisseria species.
Purpose of the Study:
- To investigate the origin and evolution of the Neisseria meningitidis capsule locus (cps).
- To determine if the cps locus was acquired via horizontal genetic transfer (HGT) from other Neisseria species.
- To explore the role of recombination in the diversification of meningococcal capsule serogroups.
Main Methods:
- Whole genome sequencing of various Neisseria species, including Nme and non-pathogenic strains.
- Sequence alignment and phylogenetic analysis (Neighbor-nets, BOOTSCANing, maximum likelihood phylogenies) of cps genes and their orthologues.
- Comparative genomics to identify putative capsule genes in non-pathogenic Neisseria.
Main Results:
- The meningococcal cps locus exhibits mosaicism across regions B, C, and D.
- Phylogenetic analysis indicates HGT of regions B and C from Neisseria subflava.
- Region D sequences show close relationships to Neisseria weixii, suggesting further recombination events.
Conclusions:
- The data support the acquisition of the entire cps locus by Neisseria meningitidis from Neisseria subflava, followed by recombination.
- An alternative model where a native meningococcal capsule existed before HGT cannot be refuted.
- Intra-genus recombination events likely contributed to the observed diversity in meningococcal capsule serogroups.
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