Genomic and Phenotypic Trait Variation of the Opportunistic Human Pathogen Aspergillus flavus and Its Close Relatives

E Anne Hatmaker1,2, Manuel Rangel-Grimaldo3, Huzefa A Raja3

  • 1Department of Biological Sciences, Vanderbilt Universitygrid.152326.1, Nashville, Tennessee, USA.

Microbiology Spectrum
|November 1, 2022
PubMed

Insights

Fungal pathogens like Aspergillus flavus cause disease, but their relatives are not considered harmful. This study found significant strain variation in virulence and traits, challenging current classifications and highlighting the need for strain-level analysis in fungal infections.

Area of Science:

  • Microbiology
  • Evolutionary Biology
  • Medical Mycology

Background:

  • Fungal diseases impact millions globally, yet fungal pathogens are understudied.
  • Aspergillus flavus causes human infections like aspergillosis and fungal keratitis, unlike its closely related nonpathogenic species.

Purpose of the Study:

  • To investigate the evolutionary basis of Aspergillus flavus pathogenicity.
  • To compare genomic, chemical, and phenotypic traits between A. flavus and its nonpathogenic relatives.
  • To assess strain-level variation in virulence.

Main Methods:

  • Comparative genomics to identify unique A. flavus proteins and gene clusters.
  • Secondary metabolite profiling under varying temperature and salt conditions.
  • Virulence assays using Galleria mellonella and murine models of fungal keratitis.

Main Results:

  • Over 3,000 orthologous proteins and seven unique biosynthetic gene clusters were identified in A. flavus.
  • Temperature significantly impacted metabolite production, while salinity did not; metabolite profiles varied even within species.
  • Strain virulence varied widely, with A. flavus strains not showing higher virulence than nonpathogenic relatives in invertebrate models.
  • In a murine keratitis model, A. arachidicola showed reduced disease severity initially, but differences diminished over time.

Conclusions:

  • Extensive strain heterogeneity exists in virulence and phenotypic traits among Aspergillus species, irrespective of their clinical relevance.
  • Strain-level variation, rather than species-level distinctions, may significantly influence fungal disease potential.
  • Current classifications of Aspergillus pathogenicity may not fully capture the complex interplay of genomic and phenotypic factors at the strain level.

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