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A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
by
Edwards, Hannah M.
, Kwon-Chung, Kyung J.
, Shea, Terrance
, Sewell, Thomas R.
, Farrer, Rhys A.
, Yang, Dong-Hoon
, Fisher, Matthew C.
, van Dorp, Lucy
, Chang, Yun C.
, Davis, Michael J.
, Vanhove, Mathieu
, Chanda, Duncan
, Cuomo, Christina A.
, Balloux, Francois
, Kwenda, Geoffrey
, Chang, Miwha
, Meyer, Wieland
in
Animal Diseases - microbiology
/ Animals
/ Bronchopulmonary infection
/ Cryptococcus
/ Cryptococcus gattii
/ Cryptococcus gattii - classification
/ Cryptococcus gattii - genetics
/ Disseminated infection
/ drug resistance evolution
/ Ecological and Evolutionary Science
/ Environmental Microbiology
/ Environmental Sciences
/ Forests
/ Genetic analysis
/ genome analysis
/ Genome, Fungal
/ Genomes
/ Genomics - methods
/ molecular epidemiology
/ mycology
/ Pathogens
/ Phenotype
/ Phylogenetics
/ Phylogeny
/ Plant Diseases - microbiology
/ Polymorphism
/ Population genetics
/ Restriction fragment length polymorphism
/ Soil Microbiology
/ Wilderness areas
/ Zambia - epidemiology
2019
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A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
by
Edwards, Hannah M.
, Kwon-Chung, Kyung J.
, Shea, Terrance
, Sewell, Thomas R.
, Farrer, Rhys A.
, Yang, Dong-Hoon
, Fisher, Matthew C.
, van Dorp, Lucy
, Chang, Yun C.
, Davis, Michael J.
, Vanhove, Mathieu
, Chanda, Duncan
, Cuomo, Christina A.
, Balloux, Francois
, Kwenda, Geoffrey
, Chang, Miwha
, Meyer, Wieland
in
Animal Diseases - microbiology
/ Animals
/ Bronchopulmonary infection
/ Cryptococcus
/ Cryptococcus gattii
/ Cryptococcus gattii - classification
/ Cryptococcus gattii - genetics
/ Disseminated infection
/ drug resistance evolution
/ Ecological and Evolutionary Science
/ Environmental Microbiology
/ Environmental Sciences
/ Forests
/ Genetic analysis
/ genome analysis
/ Genome, Fungal
/ Genomes
/ Genomics - methods
/ molecular epidemiology
/ mycology
/ Pathogens
/ Phenotype
/ Phylogenetics
/ Phylogeny
/ Plant Diseases - microbiology
/ Polymorphism
/ Population genetics
/ Restriction fragment length polymorphism
/ Soil Microbiology
/ Wilderness areas
/ Zambia - epidemiology
2019
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A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
by
Edwards, Hannah M.
, Kwon-Chung, Kyung J.
, Shea, Terrance
, Sewell, Thomas R.
, Farrer, Rhys A.
, Yang, Dong-Hoon
, Fisher, Matthew C.
, van Dorp, Lucy
, Chang, Yun C.
, Davis, Michael J.
, Vanhove, Mathieu
, Chanda, Duncan
, Cuomo, Christina A.
, Balloux, Francois
, Kwenda, Geoffrey
, Chang, Miwha
, Meyer, Wieland
in
Animal Diseases - microbiology
/ Animals
/ Bronchopulmonary infection
/ Cryptococcus
/ Cryptococcus gattii
/ Cryptococcus gattii - classification
/ Cryptococcus gattii - genetics
/ Disseminated infection
/ drug resistance evolution
/ Ecological and Evolutionary Science
/ Environmental Microbiology
/ Environmental Sciences
/ Forests
/ Genetic analysis
/ genome analysis
/ Genome, Fungal
/ Genomes
/ Genomics - methods
/ molecular epidemiology
/ mycology
/ Pathogens
/ Phenotype
/ Phylogenetics
/ Phylogeny
/ Plant Diseases - microbiology
/ Polymorphism
/ Population genetics
/ Restriction fragment length polymorphism
/ Soil Microbiology
/ Wilderness areas
/ Zambia - epidemiology
2019
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A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
Journal Article
A New Lineage of Cryptococcus gattii (VGV) Discovered in the Central Zambezian Miombo Woodlands
2019
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Overview
Cryptococcus gattii
is an environmental pathogen that causes severe systemic infection in immunocompetent individuals more often than in immunocompromised humans. Over the past 2 decades, researchers have shown that
C. gattii
falls within four genetically distinct major lineages. By combining field work from an understudied ecological region (the Central Miombo Woodlands of Zambia, Africa), genome sequencing and assemblies, phylogenetic and population genetic analyses, and phenotypic characterization (morphology, histopathological, drug-sensitivity, survival experiments), we discovered a hitherto unknown lineage, which we name VGV (variety
gattii
five). The discovery of a new lineage from an understudied ecological region has far-reaching implications for the study and understanding of fungal pathogens and diseases they cause.
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.
IMPORTANCE
Cryptococcus gattii
is an environmental pathogen that causes severe systemic infection in immunocompetent individuals more often than in immunocompromised humans. Over the past 2 decades, researchers have shown that
C. gattii
falls within four genetically distinct major lineages. By combining field work from an understudied ecological region (the Central Miombo Woodlands of Zambia, Africa), genome sequencing and assemblies, phylogenetic and population genetic analyses, and phenotypic characterization (morphology, histopathological, drug-sensitivity, survival experiments), we discovered a hitherto unknown lineage, which we name VGV (variety
gattii
five). The discovery of a new lineage from an understudied ecological region has far-reaching implications for the study and understanding of fungal pathogens and diseases they cause.
Publisher
American Society for Microbiology
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