Multiple Hybridization Events Punctuate the Evolutionary Trajectory of Malassezia furfur

Bart Theelen1, Verónica Mixão2,3, Giuseppe Ianiri4

  • 1Westerdijk Fungal Biodiversity Institute, Utrecht, The Netherlands.

Mbio
|April 11, 2022
PubMed

Insights

Malassezia furfur, a common skin fungus, can become pathogenic through hybridization. This study reveals multiple hybridization events and a pseudobipolar mating system, offering insights into fungal evolution and pathogenicity.

Area of Science:

  • Microbiology
  • Genomics
  • Evolutionary Biology

Background:

  • Malassezia furfur is a common skin commensal in humans and animals.
  • This fungus can transition from commensalism to pathogenicity, causing skin disorders and systemic infections.
  • Recent genomic analyses suggest M. furfur can exist as hybrid isolates.

Purpose of the Study:

  • To investigate the genomic evolution and phenotypic characteristics of Malassezia furfur hybrids.
  • To compare hybrid strains with their parental lineages.
  • To understand the role of hybridization in M. furfur's adaptation and pathogenicity.

Main Methods:

  • Comparative genomics analysis of hybrid and parental M. furfur strains.
  • Assessment of phenotypic characteristics.
  • Analysis of the mating-type locus.

Main Results:

  • Evidence for at least two distinct hybridization events involving the same parental lineages.
  • Parental strains may themselves be hybrids.
  • Identification of a pseudobipolar mating system in M. furfur.
  • Hybridization involves cell-cell fusion leading to a diploid/aneuploid state.

Conclusions:

  • Multiple hybridization events have shaped the evolutionary trajectory of M. furfur.
  • Hybridization may contribute to the adaptation and pathogenicity of M. furfur.
  • This study provides valuable genomic resources for future pathogenicity research.

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