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Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome

BACKGROUND: Neisseria meningitidis is a naturally transformable, facultative pathogen colonizing the human nasopharynx. Here, we analyze on a genome-wide level the impact of recombination on gene-complement diversity and virulence evolution in N. meningitidis. We combined comparative genome hybridiz...

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Autores principales: Joseph, Biju, Schwarz, Roland F., Linke, Burkhard, Blom, Jochen, Becker, Anke, Claus, Heike, Goesmann, Alexander, Frosch, Matthias, Müller, Tobias, Vogel, Ulrich, Schoen, Christoph
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3082526/
https://www.ncbi.nlm.nih.gov/pubmed/21541312
http://dx.doi.org/10.1371/journal.pone.0018441
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author Joseph, Biju
Schwarz, Roland F.
Linke, Burkhard
Blom, Jochen
Becker, Anke
Claus, Heike
Goesmann, Alexander
Frosch, Matthias
Müller, Tobias
Vogel, Ulrich
Schoen, Christoph
author_facet Joseph, Biju
Schwarz, Roland F.
Linke, Burkhard
Blom, Jochen
Becker, Anke
Claus, Heike
Goesmann, Alexander
Frosch, Matthias
Müller, Tobias
Vogel, Ulrich
Schoen, Christoph
author_sort Joseph, Biju
collection PubMed
description BACKGROUND: Neisseria meningitidis is a naturally transformable, facultative pathogen colonizing the human nasopharynx. Here, we analyze on a genome-wide level the impact of recombination on gene-complement diversity and virulence evolution in N. meningitidis. We combined comparative genome hybridization using microarrays (mCGH) and multilocus sequence typing (MLST) of 29 meningococcal isolates with computational comparison of a subset of seven meningococcal genome sequences. PRINCIPAL FINDINGS: We found that lateral gene transfer of minimal mobile elements as well as prophages are major forces shaping meningococcal population structure. Extensive gene content comparison revealed novel associations of virulence with genetic elements besides the recently discovered meningococcal disease associated (MDA) island. In particular, we identified an association of virulence with a recently described canonical genomic island termed IHT-E and a differential distribution of genes encoding RTX toxin- and two-partner secretion systems among hyperinvasive and non-hyperinvasive lineages. By computationally screening also the core genome for signs of recombination, we provided evidence that about 40% of the meningococcal core genes are affected by recombination primarily within metabolic genes as well as genes involved in DNA replication and repair. By comparison with the results of previous mCGH studies, our data indicated that genetic structuring as revealed by mCGH is stable over time and highly similar for isolates from different geographic origins. CONCLUSIONS: Recombination comprising lateral transfer of entire genes as well as homologous intragenic recombination has a profound impact on meningococcal population structure and genome composition. Our data support the hypothesis that meningococcal virulence is polygenic in nature and that differences in metabolism might contribute to virulence.
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spelling pubmed-30825262011-05-03 Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome Joseph, Biju Schwarz, Roland F. Linke, Burkhard Blom, Jochen Becker, Anke Claus, Heike Goesmann, Alexander Frosch, Matthias Müller, Tobias Vogel, Ulrich Schoen, Christoph PLoS One Research Article BACKGROUND: Neisseria meningitidis is a naturally transformable, facultative pathogen colonizing the human nasopharynx. Here, we analyze on a genome-wide level the impact of recombination on gene-complement diversity and virulence evolution in N. meningitidis. We combined comparative genome hybridization using microarrays (mCGH) and multilocus sequence typing (MLST) of 29 meningococcal isolates with computational comparison of a subset of seven meningococcal genome sequences. PRINCIPAL FINDINGS: We found that lateral gene transfer of minimal mobile elements as well as prophages are major forces shaping meningococcal population structure. Extensive gene content comparison revealed novel associations of virulence with genetic elements besides the recently discovered meningococcal disease associated (MDA) island. In particular, we identified an association of virulence with a recently described canonical genomic island termed IHT-E and a differential distribution of genes encoding RTX toxin- and two-partner secretion systems among hyperinvasive and non-hyperinvasive lineages. By computationally screening also the core genome for signs of recombination, we provided evidence that about 40% of the meningococcal core genes are affected by recombination primarily within metabolic genes as well as genes involved in DNA replication and repair. By comparison with the results of previous mCGH studies, our data indicated that genetic structuring as revealed by mCGH is stable over time and highly similar for isolates from different geographic origins. CONCLUSIONS: Recombination comprising lateral transfer of entire genes as well as homologous intragenic recombination has a profound impact on meningococcal population structure and genome composition. Our data support the hypothesis that meningococcal virulence is polygenic in nature and that differences in metabolism might contribute to virulence. Public Library of Science 2011-04-26 /pmc/articles/PMC3082526/ /pubmed/21541312 http://dx.doi.org/10.1371/journal.pone.0018441 Text en Joseph et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Joseph, Biju
Schwarz, Roland F.
Linke, Burkhard
Blom, Jochen
Becker, Anke
Claus, Heike
Goesmann, Alexander
Frosch, Matthias
Müller, Tobias
Vogel, Ulrich
Schoen, Christoph
Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome
title Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome
title_full Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome
title_fullStr Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome
title_full_unstemmed Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome
title_short Virulence Evolution of the Human Pathogen Neisseria meningitidis by Recombination in the Core and Accessory Genome
title_sort virulence evolution of the human pathogen neisseria meningitidis by recombination in the core and accessory genome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3082526/
https://www.ncbi.nlm.nih.gov/pubmed/21541312
http://dx.doi.org/10.1371/journal.pone.0018441
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