Chromosome-Level Genome Assembly of a Human Fungal Pathogen Reveals Synteny among Geographically Distinct Species

Mark Voorhies1, Shirli Cohen2, Terrance P Shea3

  • 1Department of Microbiology and Immunology, University of California, San Franciscogrid.266102.1, San Francisco, California, USA.

Mbio
|January 28, 2022
PubMed

Insights

This study provides chromosome-level genome assemblies for five Histoplasma strains, revealing conserved gene order and improving analysis of fungal gene expression. These findings enhance understanding of this important fungal pathogen.

Area of Science:

  • Medical Mycology
  • Genomics
  • Fungal Pathogenesis

Background:

  • Histoplasma capsulatum is a dimorphic fungus causing common respiratory infections.
  • Existing Histoplasma genome assemblies are fragmented, hindering comprehensive analysis.
  • Geographically distinct clades of Histoplasma have been identified worldwide.

Purpose of the Study:

  • To generate chromosome-level genome assemblies for five Histoplasma strains.
  • To characterize the large-scale genome architecture and repeat regions.
  • To improve the analysis of high-throughput data for Histoplasma.

Main Methods:

  • Resequencing of five Histoplasma strains using Oxford Nanopore Technologies long-read sequencing.
  • Chromosomal-level assembly of Histoplasma genomes.
  • Mapping of transcriptome data onto newly assembled chromosomes.

Main Results:

  • Complete chromosomal-level assemblies were achieved for all five strains.
  • Extensive synteny was observed among geographically distant Histoplasma isolates.
  • RYP2 gene duplication was identified in the G186AR strain.
  • Transposon and transposon-embedded gene expression was upregulated in the yeast phase.

Conclusions:

  • Chromosome-level assemblies are crucial for understanding fungal pathogen biology.
  • Comparative genomics reveals conserved genome architecture in Histoplasma.
  • New assemblies facilitate improved analysis of gene expression and regulation.

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