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Transmission of Hypervirulence traits via sexual reproduction within and between lineages of the human fungal pathogen cryptococcus gattii.

Publication ,  Journal Article
Voelz, K; Ma, H; Phadke, S; Byrnes, EJ; Zhu, P; Mueller, O; Farrer, RA; Henk, DA; Lewit, Y; Hsueh, Y-P; Fisher, MC; Idnurm, A; Heitman, J; May, RC
Published in: PLoS Genet
2013

Since 1999 a lineage of the pathogen Cryptococcus gattii has been infecting humans and other animals in Canada and the Pacific Northwest of the USA. It is now the largest outbreak of a life-threatening fungal infection in a healthy population in recorded history. The high virulence of outbreak strains is closely linked to the ability of the pathogen to undergo rapid mitochondrial tubularisation and proliferation following engulfment by host phagocytes. Most outbreaks spread by geographic expansion across suitable niches, but it is known that genetic re-assortment and hybridisation can also lead to rapid range and host expansion. In the context of C. gattii, however, the likelihood of virulence traits associated with the outbreak lineages spreading to other lineages via genetic exchange is currently unknown. Here we address this question by conducting outgroup crosses between distantly related C. gattii lineages (VGII and VGIII) and ingroup crosses between isolates from the same molecular type (VGII). Systematic phenotypic characterisation shows that virulence traits are transmitted to outgroups infrequently, but readily inherited during ingroup crosses. In addition, we observed higher levels of biparental (as opposed to uniparental) mitochondrial inheritance during VGII ingroup sexual mating in this species and provide evidence for mitochondrial recombination following mating. Taken together, our data suggest that hypervirulence can spread among the C. gattii lineages VGII and VGIII, potentially creating novel hypervirulent genotypes, and that current models of uniparental mitochondrial inheritance in the Cryptococcus genus may not be universal.

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Published In

PLoS Genet

DOI

EISSN

1553-7404

Publication Date

2013

Volume

9

Issue

9

Start / End Page

e1003771

Location

United States

Related Subject Headings

  • Virulence
  • Reproduction
  • Recombination, Genetic
  • Phenotype
  • Phagocytes
  • Mitochondria
  • Hybridization, Genetic
  • Humans
  • Host-Pathogen Interactions
  • Genes, Mating Type, Fungal
 

Citation

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Voelz, K., Ma, H., Phadke, S., Byrnes, E. J., Zhu, P., Mueller, O., … May, R. C. (2013). Transmission of Hypervirulence traits via sexual reproduction within and between lineages of the human fungal pathogen cryptococcus gattii. PLoS Genet, 9(9), e1003771. https://doi.org/10.1371/journal.pgen.1003771
Voelz, Kerstin, Hansong Ma, Sujal Phadke, Edmond J. Byrnes, Pinkuan Zhu, Olaf Mueller, Rhys A. Farrer, et al. “Transmission of Hypervirulence traits via sexual reproduction within and between lineages of the human fungal pathogen cryptococcus gattii.PLoS Genet 9, no. 9 (2013): e1003771. https://doi.org/10.1371/journal.pgen.1003771.
Voelz K, Ma H, Phadke S, Byrnes EJ, Zhu P, Mueller O, et al. Transmission of Hypervirulence traits via sexual reproduction within and between lineages of the human fungal pathogen cryptococcus gattii. PLoS Genet. 2013;9(9):e1003771.
Voelz, Kerstin, et al. “Transmission of Hypervirulence traits via sexual reproduction within and between lineages of the human fungal pathogen cryptococcus gattii.PLoS Genet, vol. 9, no. 9, 2013, p. e1003771. Pubmed, doi:10.1371/journal.pgen.1003771.
Voelz K, Ma H, Phadke S, Byrnes EJ, Zhu P, Mueller O, Farrer RA, Henk DA, Lewit Y, Hsueh Y-P, Fisher MC, Idnurm A, Heitman J, May RC. Transmission of Hypervirulence traits via sexual reproduction within and between lineages of the human fungal pathogen cryptococcus gattii. PLoS Genet. 2013;9(9):e1003771.

Published In

PLoS Genet

DOI

EISSN

1553-7404

Publication Date

2013

Volume

9

Issue

9

Start / End Page

e1003771

Location

United States

Related Subject Headings

  • Virulence
  • Reproduction
  • Recombination, Genetic
  • Phenotype
  • Phagocytes
  • Mitochondria
  • Hybridization, Genetic
  • Humans
  • Host-Pathogen Interactions
  • Genes, Mating Type, Fungal