Similar evolutionary trajectories in an environmental Cryptococcus neoformans isolate after human and murine

Poppy Sephton-Clark1, Scott A McConnell2, Nina Grossman2

  • 1Broad Institute of MIT and Harvard, Cambridge, MA 02142.

Insights

A pet cockatoo infected a patient with Cryptococcus neoformans, confirmed by whole genome sequencing. During mouse passage, the fungus acquired mutations, showing genomic changes during mammalian infection.

Area of Science:

  • Mycology
  • Genomics
  • Infectious Diseases

Background:

  • Cryptococcus neoformans is an opportunistic fungal pathogen.
  • Pet birds, like cockatoos, can be reservoirs for C. neoformans.
  • Understanding fungal adaptation during infection is crucial for public health.

Purpose of the Study:

  • To perform whole genome sequencing on clinical and cockatoo strains of C. neoformans.
  • To investigate genomic and phenotypic changes of C. neoformans during mammalian passage.
  • To confirm the suspected transmission of C. neoformans from a pet cockatoo to an immunocompromised patient.

Main Methods:

  • Whole genome sequencing of clinical and cockatoo C. neoformans strains.
  • In vivo mouse model to passage the cockatoo strain.
  • Analysis of single nucleotide polymorphisms (SNPs) and gene mutations.
  • Phenotypic characterization of virulence factors (capsule size, melanization, etc.).

Main Results:

  • The clinical and cockatoo strains were closely related VNII lineage MATα strains, confirming bird-to-human transmission.
  • The cockatoo strain acquired a frameshift mutation in an SWI/SNF chromatin-remodeling gene (LQVO5_000317) during mouse passage.
  • Both strains and mouse-passaged isolates showed a premature stop codon in a ZFC3 homologue (LQVO5_004463), affecting capsule size.
  • Variability in virulence factors was observed in patient and mouse-passaged isolates.

Conclusions:

  • Environmental C. neoformans strains undergo significant genomic and phenotypic adaptation during mammalian infection.
  • Animal virulence can act as a driver for genetic diversification in fungal pathogens.
  • Clinical isolate genomes can reveal mutations acquired during host passage, offering insights into pathogenesis.