The Dynamic Genome and Transcriptome of the Human Fungal Pathogen Blastomyces and Close Relative Emmonsia

José F Muñoz1, Gregory M Gauthier2, Christopher A Desjardins3

  • 1Cellular and Molecular Biology Unit, Corporación para Investigaciones Biológicas, Medellín, Colombia; Institute of Biology, Universidad de Antioquia, Medellín, Colombia.

Plos Genetics
|October 7, 2015
PubMed

Insights

Genome sequencing of Blastomyces reveals expanded genomes with unique GC-poor regions, suggesting recent evolution. Key virulence factors, including antioxidant responses and host interaction genes, were identified in this fungal pathogen.

Area of Science:

  • Mycology and Fungal Genomics
  • Infectious Diseases and Pathogenesis

Background:

  • Blastomycosis, histoplasmosis, and paracoccidioidomycosis are significant human fungal diseases in the Americas caused by thermally dimorphic pathogens.
  • Blastomyces is the etiological agent of blastomycosis, a serious fungal infection.

Purpose of the Study:

  • To perform whole-genome sequencing and analysis of Blastomyces and related Emmonsia species.
  • To investigate genomic features and gene expression patterns contributing to Blastomyces virulence and host adaptation.

Main Methods:

  • Genome sequencing of four Blastomyces strains and two Emmonsia species.
  • Comparative genomic analysis to identify unique genomic regions and gene copy number variations.
  • Gene expression analysis of Blastomyces dermatitidis during host-pathogen interaction (macrophages and mouse model).

Main Results:

  • Blastomyces genomes exhibit significant expansion with unique, low GC-content regions enriched for gypsy elements, absent in related species.
  • Gene copy number variations were observed in genes related to host interaction, such as proteases and antigens.
  • In vivo studies revealed a strong antioxidant defense response and upregulation of dioxygenases, secreted proteins, zinc acquisition, and amino acid metabolism genes in Blastomyces.

Conclusions:

  • The expanded, GC-poor regions in Blastomyces genomes likely represent recent evolutionary acquisitions contributing to its distinct biology.
  • Specific gene families, including those involved in antioxidant defense, host interaction, and nutrient acquisition, are critical for Blastomyces virulence.
  • Comparative genomics and transcriptomics provide insights into the unique adaptations of Blastomyces to its host environment.

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