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The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions

We report the genome of the facultative intracellular parasite Rhodococcus equi, the only animal pathogen within the biotechnologically important actinobacterial genus Rhodococcus. The 5.0-Mb R. equi 103S genome is significantly smaller than those of environmental rhodococci. This is due to genome e...

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Autores principales: Letek, Michal, González, Patricia, MacArthur, Iain, Rodríguez, Héctor, Freeman, Tom C., Valero-Rello, Ana, Blanco, Mónica, Buckley, Tom, Cherevach, Inna, Fahey, Ruth, Hapeshi, Alexia, Holdstock, Jolyon, Leadon, Desmond, Navas, Jesús, Ocampo, Alain, Quail, Michael A., Sanders, Mandy, Scortti, Mariela M., Prescott, John F., Fogarty, Ursula, Meijer, Wim G., Parkhill, Julian, Bentley, Stephen D., Vázquez-Boland, José A.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2947987/
https://www.ncbi.nlm.nih.gov/pubmed/20941392
http://dx.doi.org/10.1371/journal.pgen.1001145
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author Letek, Michal
González, Patricia
MacArthur, Iain
Rodríguez, Héctor
Freeman, Tom C.
Valero-Rello, Ana
Blanco, Mónica
Buckley, Tom
Cherevach, Inna
Fahey, Ruth
Hapeshi, Alexia
Holdstock, Jolyon
Leadon, Desmond
Navas, Jesús
Ocampo, Alain
Quail, Michael A.
Sanders, Mandy
Scortti, Mariela M.
Prescott, John F.
Fogarty, Ursula
Meijer, Wim G.
Parkhill, Julian
Bentley, Stephen D.
Vázquez-Boland, José A.
author_facet Letek, Michal
González, Patricia
MacArthur, Iain
Rodríguez, Héctor
Freeman, Tom C.
Valero-Rello, Ana
Blanco, Mónica
Buckley, Tom
Cherevach, Inna
Fahey, Ruth
Hapeshi, Alexia
Holdstock, Jolyon
Leadon, Desmond
Navas, Jesús
Ocampo, Alain
Quail, Michael A.
Sanders, Mandy
Scortti, Mariela M.
Prescott, John F.
Fogarty, Ursula
Meijer, Wim G.
Parkhill, Julian
Bentley, Stephen D.
Vázquez-Boland, José A.
author_sort Letek, Michal
collection PubMed
description We report the genome of the facultative intracellular parasite Rhodococcus equi, the only animal pathogen within the biotechnologically important actinobacterial genus Rhodococcus. The 5.0-Mb R. equi 103S genome is significantly smaller than those of environmental rhodococci. This is due to genome expansion in nonpathogenic species, via a linear gain of paralogous genes and an accelerated genetic flux, rather than reductive evolution in R. equi. The 103S genome lacks the extensive catabolic and secondary metabolic complement of environmental rhodococci, and it displays unique adaptations for host colonization and competition in the short-chain fatty acid–rich intestine and manure of herbivores—two main R. equi reservoirs. Except for a few horizontally acquired (HGT) pathogenicity loci, including a cytoadhesive pilus determinant (rpl) and the virulence plasmid vap pathogenicity island (PAI) required for intramacrophage survival, most of the potential virulence-associated genes identified in R. equi are conserved in environmental rhodococci or have homologs in nonpathogenic Actinobacteria. This suggests a mechanism of virulence evolution based on the cooption of existing core actinobacterial traits, triggered by key host niche–adaptive HGT events. We tested this hypothesis by investigating R. equi virulence plasmid-chromosome crosstalk, by global transcription profiling and expression network analysis. Two chromosomal genes conserved in environmental rhodococci, encoding putative chorismate mutase and anthranilate synthase enzymes involved in aromatic amino acid biosynthesis, were strongly coregulated with vap PAI virulence genes and required for optimal proliferation in macrophages. The regulatory integration of chromosomal metabolic genes under the control of the HGT–acquired plasmid PAI is thus an important element in the cooptive virulence of R. equi.
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spelling pubmed-29479872010-10-12 The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions Letek, Michal González, Patricia MacArthur, Iain Rodríguez, Héctor Freeman, Tom C. Valero-Rello, Ana Blanco, Mónica Buckley, Tom Cherevach, Inna Fahey, Ruth Hapeshi, Alexia Holdstock, Jolyon Leadon, Desmond Navas, Jesús Ocampo, Alain Quail, Michael A. Sanders, Mandy Scortti, Mariela M. Prescott, John F. Fogarty, Ursula Meijer, Wim G. Parkhill, Julian Bentley, Stephen D. Vázquez-Boland, José A. PLoS Genet Research Article We report the genome of the facultative intracellular parasite Rhodococcus equi, the only animal pathogen within the biotechnologically important actinobacterial genus Rhodococcus. The 5.0-Mb R. equi 103S genome is significantly smaller than those of environmental rhodococci. This is due to genome expansion in nonpathogenic species, via a linear gain of paralogous genes and an accelerated genetic flux, rather than reductive evolution in R. equi. The 103S genome lacks the extensive catabolic and secondary metabolic complement of environmental rhodococci, and it displays unique adaptations for host colonization and competition in the short-chain fatty acid–rich intestine and manure of herbivores—two main R. equi reservoirs. Except for a few horizontally acquired (HGT) pathogenicity loci, including a cytoadhesive pilus determinant (rpl) and the virulence plasmid vap pathogenicity island (PAI) required for intramacrophage survival, most of the potential virulence-associated genes identified in R. equi are conserved in environmental rhodococci or have homologs in nonpathogenic Actinobacteria. This suggests a mechanism of virulence evolution based on the cooption of existing core actinobacterial traits, triggered by key host niche–adaptive HGT events. We tested this hypothesis by investigating R. equi virulence plasmid-chromosome crosstalk, by global transcription profiling and expression network analysis. Two chromosomal genes conserved in environmental rhodococci, encoding putative chorismate mutase and anthranilate synthase enzymes involved in aromatic amino acid biosynthesis, were strongly coregulated with vap PAI virulence genes and required for optimal proliferation in macrophages. The regulatory integration of chromosomal metabolic genes under the control of the HGT–acquired plasmid PAI is thus an important element in the cooptive virulence of R. equi. Public Library of Science 2010-09-30 /pmc/articles/PMC2947987/ /pubmed/20941392 http://dx.doi.org/10.1371/journal.pgen.1001145 Text en Letek 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
Letek, Michal
González, Patricia
MacArthur, Iain
Rodríguez, Héctor
Freeman, Tom C.
Valero-Rello, Ana
Blanco, Mónica
Buckley, Tom
Cherevach, Inna
Fahey, Ruth
Hapeshi, Alexia
Holdstock, Jolyon
Leadon, Desmond
Navas, Jesús
Ocampo, Alain
Quail, Michael A.
Sanders, Mandy
Scortti, Mariela M.
Prescott, John F.
Fogarty, Ursula
Meijer, Wim G.
Parkhill, Julian
Bentley, Stephen D.
Vázquez-Boland, José A.
The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions
title The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions
title_full The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions
title_fullStr The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions
title_full_unstemmed The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions
title_short The Genome of a Pathogenic Rhodococcus: Cooptive Virulence Underpinned by Key Gene Acquisitions
title_sort genome of a pathogenic rhodococcus: cooptive virulence underpinned by key gene acquisitions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2947987/
https://www.ncbi.nlm.nih.gov/pubmed/20941392
http://dx.doi.org/10.1371/journal.pgen.1001145
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