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A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands

We discovered a new lineage of the globally important fungal pathogen Cryptococcus gattii on the basis of analysis of six isolates collected from three locations spanning the Central Miombo Woodlands of Zambia, Africa. All isolates were from environments (middens and tree holes) that are associated...

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Autores principales: Farrer, Rhys A., Chang, Miwha, Davis, Michael J., van Dorp, Lucy, Yang, Dong-Hoon, Shea, Terrance, Sewell, Thomas R., Meyer, Wieland, Balloux, Francois, Edwards, Hannah M., Chanda, Duncan, Kwenda, Geoffrey, Vanhove, Mathieu, Chang, Yun C., Cuomo, Christina A., Fisher, Matthew C., Kwon-Chung, Kyung J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6851281/
https://www.ncbi.nlm.nih.gov/pubmed/31719178
http://dx.doi.org/10.1128/mBio.02306-19
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author Farrer, Rhys A.
Chang, Miwha
Davis, Michael J.
van Dorp, Lucy
Yang, Dong-Hoon
Shea, Terrance
Sewell, Thomas R.
Meyer, Wieland
Balloux, Francois
Edwards, Hannah M.
Chanda, Duncan
Kwenda, Geoffrey
Vanhove, Mathieu
Chang, Yun C.
Cuomo, Christina A.
Fisher, Matthew C.
Kwon-Chung, Kyung J.
author_facet Farrer, Rhys A.
Chang, Miwha
Davis, Michael J.
van Dorp, Lucy
Yang, Dong-Hoon
Shea, Terrance
Sewell, Thomas R.
Meyer, Wieland
Balloux, Francois
Edwards, Hannah M.
Chanda, Duncan
Kwenda, Geoffrey
Vanhove, Mathieu
Chang, Yun C.
Cuomo, Christina A.
Fisher, Matthew C.
Kwon-Chung, Kyung J.
author_sort Farrer, Rhys A.
collection PubMed
description We discovered a new lineage of the globally important fungal pathogen Cryptococcus gattii on the basis of analysis of six isolates collected from three locations spanning the Central Miombo Woodlands of Zambia, Africa. All isolates were from environments (middens and tree holes) that are associated with a small mammal, the African hyrax. Phylogenetic and population genetic analyses confirmed that these isolates form a distinct, deeply divergent lineage, which we name VGV. VGV comprises two subclades (A and B) that are capable of causing mild lung infection with negligible neurotropism in mice. Comparing the VGV genome to previously identified lineages of C. gattii revealed a unique suite of genes together with gene loss and inversion events. However, standard URA5 restriction fragment length polymorphism (RFLP) analysis could not distinguish between VGV and VGIV isolates. We therefore developed a new URA5 RFLP method that can reliably identify the newly described lineage. Our work highlights how sampling understudied ecological regions alongside genomic and functional characterization can broaden our understanding of the evolution and ecology of major global pathogens.
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spelling pubmed-68512812019-11-15 A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands Farrer, Rhys A. Chang, Miwha Davis, Michael J. van Dorp, Lucy Yang, Dong-Hoon Shea, Terrance Sewell, Thomas R. Meyer, Wieland Balloux, Francois Edwards, Hannah M. Chanda, Duncan Kwenda, Geoffrey Vanhove, Mathieu Chang, Yun C. Cuomo, Christina A. Fisher, Matthew C. Kwon-Chung, Kyung J. mBio Research Article We discovered a new lineage of the globally important fungal pathogen Cryptococcus gattii on the basis of analysis of six isolates collected from three locations spanning the Central Miombo Woodlands of Zambia, Africa. All isolates were from environments (middens and tree holes) that are associated with a small mammal, the African hyrax. Phylogenetic and population genetic analyses confirmed that these isolates form a distinct, deeply divergent lineage, which we name VGV. VGV comprises two subclades (A and B) that are capable of causing mild lung infection with negligible neurotropism in mice. Comparing the VGV genome to previously identified lineages of C. gattii revealed a unique suite of genes together with gene loss and inversion events. However, standard URA5 restriction fragment length polymorphism (RFLP) analysis could not distinguish between VGV and VGIV isolates. We therefore developed a new URA5 RFLP method that can reliably identify the newly described lineage. Our work highlights how sampling understudied ecological regions alongside genomic and functional characterization can broaden our understanding of the evolution and ecology of major global pathogens. American Society for Microbiology 2019-11-12 /pmc/articles/PMC6851281/ /pubmed/31719178 http://dx.doi.org/10.1128/mBio.02306-19 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1 This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply.
spellingShingle Research Article
Farrer, Rhys A.
Chang, Miwha
Davis, Michael J.
van Dorp, Lucy
Yang, Dong-Hoon
Shea, Terrance
Sewell, Thomas R.
Meyer, Wieland
Balloux, Francois
Edwards, Hannah M.
Chanda, Duncan
Kwenda, Geoffrey
Vanhove, Mathieu
Chang, Yun C.
Cuomo, Christina A.
Fisher, Matthew C.
Kwon-Chung, Kyung J.
A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
title A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
title_full A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
title_fullStr A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
title_full_unstemmed A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
title_short A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
title_sort new lineage of cryptococcus gattii (vgv) discovered in the central zambezian miombo woodlands
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6851281/
https://www.ncbi.nlm.nih.gov/pubmed/31719178
http://dx.doi.org/10.1128/mBio.02306-19
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