Cargando…
Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil
Cryptococcus neoformans and Cryptococcus gattii are responsible globally for almost one million cryptococcosis cases yearly, mostly in immunocompromised patients, such as those living with HIV. Infections due to C. gattii have mainly been described in tropical and subtropical regions, but its adapta...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4986980/ https://www.ncbi.nlm.nih.gov/pubmed/27529479 http://dx.doi.org/10.1371/journal.pntd.0004885 |
_version_ | 1782448251619770368 |
---|---|
author | Souto, Ana C. P. Bonfietti, Lucas X. Ferreira-Paim, Kennio Trilles, Luciana Martins, Marilena Ribeiro-Alves, Marcelo Pham, Cau D. Martins, Liline dos Santos, Wallace Chang, Marilene Brito-Santos, Fabio Santos, Dayane C. S. Fortes, Silvana Lockhart, Shawn R. Wanke, Bodo Melhem, Márcia S. C. Lazéra, Márcia S. Meyer, Wieland |
author_facet | Souto, Ana C. P. Bonfietti, Lucas X. Ferreira-Paim, Kennio Trilles, Luciana Martins, Marilena Ribeiro-Alves, Marcelo Pham, Cau D. Martins, Liline dos Santos, Wallace Chang, Marilene Brito-Santos, Fabio Santos, Dayane C. S. Fortes, Silvana Lockhart, Shawn R. Wanke, Bodo Melhem, Márcia S. C. Lazéra, Márcia S. Meyer, Wieland |
author_sort | Souto, Ana C. P. |
collection | PubMed |
description | Cryptococcus neoformans and Cryptococcus gattii are responsible globally for almost one million cryptococcosis cases yearly, mostly in immunocompromised patients, such as those living with HIV. Infections due to C. gattii have mainly been described in tropical and subtropical regions, but its adaptation to temperate regions was crucial in the species evolution and highlighted the importance of this pathogenic yeast in the context of disease. Cryptococcus gattii molecular type VGII has come to the forefront in connection with an on-going emergence in the Pacific North West of North America. Taking into account that previous work pointed towards South America as an origin of this species, the present work aimed to assess the genetic diversity within the Brazilian C. gattii VGII population in order to gain new insights into its origin and global dispersal from the South American continent using the ISHAM consensus MLST typing scheme. Our results corroborate the finding that the Brazilian C. gattii VGII population is highly diverse. The diversity is likely due to recombination generated from sexual reproduction, as evidenced by the presence of both mating types in clinical and environmental samples. The data presented herein strongly supports the emergence of highly virulent strains from ancestors in the Northern regions of Brazil, Amazonia and the Northeast. Numerous genotypes represent a link between Brazil and other parts of the world reinforcing South America as the most likely origin of the C. gattii VGII subtypes and their subsequent global spread, including their dispersal into North America, where they caused a major emergence. |
format | Online Article Text |
id | pubmed-4986980 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-49869802016-08-29 Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil Souto, Ana C. P. Bonfietti, Lucas X. Ferreira-Paim, Kennio Trilles, Luciana Martins, Marilena Ribeiro-Alves, Marcelo Pham, Cau D. Martins, Liline dos Santos, Wallace Chang, Marilene Brito-Santos, Fabio Santos, Dayane C. S. Fortes, Silvana Lockhart, Shawn R. Wanke, Bodo Melhem, Márcia S. C. Lazéra, Márcia S. Meyer, Wieland PLoS Negl Trop Dis Research Article Cryptococcus neoformans and Cryptococcus gattii are responsible globally for almost one million cryptococcosis cases yearly, mostly in immunocompromised patients, such as those living with HIV. Infections due to C. gattii have mainly been described in tropical and subtropical regions, but its adaptation to temperate regions was crucial in the species evolution and highlighted the importance of this pathogenic yeast in the context of disease. Cryptococcus gattii molecular type VGII has come to the forefront in connection with an on-going emergence in the Pacific North West of North America. Taking into account that previous work pointed towards South America as an origin of this species, the present work aimed to assess the genetic diversity within the Brazilian C. gattii VGII population in order to gain new insights into its origin and global dispersal from the South American continent using the ISHAM consensus MLST typing scheme. Our results corroborate the finding that the Brazilian C. gattii VGII population is highly diverse. The diversity is likely due to recombination generated from sexual reproduction, as evidenced by the presence of both mating types in clinical and environmental samples. The data presented herein strongly supports the emergence of highly virulent strains from ancestors in the Northern regions of Brazil, Amazonia and the Northeast. Numerous genotypes represent a link between Brazil and other parts of the world reinforcing South America as the most likely origin of the C. gattii VGII subtypes and their subsequent global spread, including their dispersal into North America, where they caused a major emergence. Public Library of Science 2016-08-16 /pmc/articles/PMC4986980/ /pubmed/27529479 http://dx.doi.org/10.1371/journal.pntd.0004885 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication. |
spellingShingle | Research Article Souto, Ana C. P. Bonfietti, Lucas X. Ferreira-Paim, Kennio Trilles, Luciana Martins, Marilena Ribeiro-Alves, Marcelo Pham, Cau D. Martins, Liline dos Santos, Wallace Chang, Marilene Brito-Santos, Fabio Santos, Dayane C. S. Fortes, Silvana Lockhart, Shawn R. Wanke, Bodo Melhem, Márcia S. C. Lazéra, Márcia S. Meyer, Wieland Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil |
title | Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil |
title_full | Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil |
title_fullStr | Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil |
title_full_unstemmed | Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil |
title_short | Population Genetic Analysis Reveals a High Genetic Diversity in the Brazilian Cryptococcus gattii VGII Population and Shifts the Global Origin from the Amazon Rainforest to the Semi-arid Desert in the Northeast of Brazil |
title_sort | population genetic analysis reveals a high genetic diversity in the brazilian cryptococcus gattii vgii population and shifts the global origin from the amazon rainforest to the semi-arid desert in the northeast of brazil |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4986980/ https://www.ncbi.nlm.nih.gov/pubmed/27529479 http://dx.doi.org/10.1371/journal.pntd.0004885 |
work_keys_str_mv | AT soutoanacp populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT bonfiettilucasx populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT ferreirapaimkennio populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT trillesluciana populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT martinsmarilena populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT ribeiroalvesmarcelo populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT phamcaud populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT martinsliline populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT dossantoswallace populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT changmarilene populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT britosantosfabio populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT santosdayanecs populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT fortessilvana populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT lockhartshawnr populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT wankebodo populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT melhemmarciasc populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT lazeramarcias populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil AT meyerwieland populationgeneticanalysisrevealsahighgeneticdiversityinthebraziliancryptococcusgattiivgiipopulationandshiftstheglobaloriginfromtheamazonrainforesttothesemiariddesertinthenortheastofbrazil |