MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.

The emerging pathogen Cryptococcus gattii causes life-threatening disease in immunocompetent and immunocompromised hosts. Of the four major molecular types (VGI-VGIV), the molecular type VGIII has recently emerged as cause of disease in otherwise healthy individuals, prompting a need to investigate...

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Main Authors: Carolina Firacative, Chandler C Roe, Richard Malik, Kennio Ferreira-Paim, Patricia Escandón, Jane E Sykes, Laura Rocío Castañón-Olivares, Cudberto Contreras-Peres, Blanca Samayoa, Tania C Sorrell, Elizabeth Castañeda, Shawn R Lockhart, David M Engelthaler, Wieland Meyer
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-08-01
Series:PLoS Neglected Tropical Diseases
Online Access:http://europepmc.org/articles/PMC4975453?pdf=render
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spelling doaj-894276a2a172407f8fb682c7b6b55fc32020-11-24T20:42:55ZengPublic Library of Science (PLoS)PLoS Neglected Tropical Diseases1935-27271935-27352016-08-01108e000486110.1371/journal.pntd.0004861MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.Carolina FiracativeChandler C RoeRichard MalikKennio Ferreira-PaimPatricia EscandónJane E SykesLaura Rocío Castañón-OlivaresCudberto Contreras-PeresBlanca SamayoaTania C SorrellElizabeth CastañedaShawn R LockhartDavid M EngelthalerWieland MeyerThe emerging pathogen Cryptococcus gattii causes life-threatening disease in immunocompetent and immunocompromised hosts. Of the four major molecular types (VGI-VGIV), the molecular type VGIII has recently emerged as cause of disease in otherwise healthy individuals, prompting a need to investigate its population genetic structure to understand if there are potential genotype-dependent characteristics in its epidemiology, environmental niche(s), host range and clinical features of disease. Multilocus sequence typing (MLST) of 122 clinical, environmental and veterinary C. gattii VGIII isolates from Australia, Colombia, Guatemala, Mexico, New Zealand, Paraguay, USA and Venezuela, and whole genome sequencing (WGS) of 60 isolates representing all established MLST types identified four divergent sub-populations. The majority of the isolates belong to two main clades, corresponding either to serotype B or C, indicating an ongoing species evolution. Both major clades included clinical, environmental and veterinary isolates. The C. gattii VGIII population was genetically highly diverse, with minor differences between countries, isolation source, serotype and mating type. Little to no recombination was found between the two major groups, serotype B and C, at the whole and mitochondrial genome level. C. gattii VGIII is widespread in the Americas, with sporadic cases occurring elsewhere, WGS revealed Mexico and USA as a likely origin of the serotype B VGIII population and Colombia as a possible origin of the serotype C VGIII population. Serotype B isolates are more virulent than serotype C isolates in a murine model of infection, causing predominantly pulmonary cryptococcosis. No specific link between genotype and virulence was observed. Antifungal susceptibility testing against six antifungal drugs revealed that serotype B isolates are more susceptible to azoles than serotype C isolates, highlighting the importance of strain typing to guide effective treatment to improve the disease outcome.http://europepmc.org/articles/PMC4975453?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Carolina Firacative
Chandler C Roe
Richard Malik
Kennio Ferreira-Paim
Patricia Escandón
Jane E Sykes
Laura Rocío Castañón-Olivares
Cudberto Contreras-Peres
Blanca Samayoa
Tania C Sorrell
Elizabeth Castañeda
Shawn R Lockhart
David M Engelthaler
Wieland Meyer
spellingShingle Carolina Firacative
Chandler C Roe
Richard Malik
Kennio Ferreira-Paim
Patricia Escandón
Jane E Sykes
Laura Rocío Castañón-Olivares
Cudberto Contreras-Peres
Blanca Samayoa
Tania C Sorrell
Elizabeth Castañeda
Shawn R Lockhart
David M Engelthaler
Wieland Meyer
MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.
PLoS Neglected Tropical Diseases
author_facet Carolina Firacative
Chandler C Roe
Richard Malik
Kennio Ferreira-Paim
Patricia Escandón
Jane E Sykes
Laura Rocío Castañón-Olivares
Cudberto Contreras-Peres
Blanca Samayoa
Tania C Sorrell
Elizabeth Castañeda
Shawn R Lockhart
David M Engelthaler
Wieland Meyer
author_sort Carolina Firacative
title MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.
title_short MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.
title_full MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.
title_fullStr MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.
title_full_unstemmed MLST and Whole-Genome-Based Population Analysis of Cryptococcus gattii VGIII Links Clinical, Veterinary and Environmental Strains, and Reveals Divergent Serotype Specific Sub-populations and Distant Ancestors.
title_sort mlst and whole-genome-based population analysis of cryptococcus gattii vgiii links clinical, veterinary and environmental strains, and reveals divergent serotype specific sub-populations and distant ancestors.
publisher Public Library of Science (PLoS)
series PLoS Neglected Tropical Diseases
issn 1935-2727
1935-2735
publishDate 2016-08-01
description The emerging pathogen Cryptococcus gattii causes life-threatening disease in immunocompetent and immunocompromised hosts. Of the four major molecular types (VGI-VGIV), the molecular type VGIII has recently emerged as cause of disease in otherwise healthy individuals, prompting a need to investigate its population genetic structure to understand if there are potential genotype-dependent characteristics in its epidemiology, environmental niche(s), host range and clinical features of disease. Multilocus sequence typing (MLST) of 122 clinical, environmental and veterinary C. gattii VGIII isolates from Australia, Colombia, Guatemala, Mexico, New Zealand, Paraguay, USA and Venezuela, and whole genome sequencing (WGS) of 60 isolates representing all established MLST types identified four divergent sub-populations. The majority of the isolates belong to two main clades, corresponding either to serotype B or C, indicating an ongoing species evolution. Both major clades included clinical, environmental and veterinary isolates. The C. gattii VGIII population was genetically highly diverse, with minor differences between countries, isolation source, serotype and mating type. Little to no recombination was found between the two major groups, serotype B and C, at the whole and mitochondrial genome level. C. gattii VGIII is widespread in the Americas, with sporadic cases occurring elsewhere, WGS revealed Mexico and USA as a likely origin of the serotype B VGIII population and Colombia as a possible origin of the serotype C VGIII population. Serotype B isolates are more virulent than serotype C isolates in a murine model of infection, causing predominantly pulmonary cryptococcosis. No specific link between genotype and virulence was observed. Antifungal susceptibility testing against six antifungal drugs revealed that serotype B isolates are more susceptible to azoles than serotype C isolates, highlighting the importance of strain typing to guide effective treatment to improve the disease outcome.
url http://europepmc.org/articles/PMC4975453?pdf=render
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