Evolution of Fluconazole-Resistant Candida albicans Strains by Drug-Induced Mating Competence and Parasexual

Christina Popp1, Bernardo Ramírez-Zavala1, Sonja Schwanfelder1

  • 1Institut für Molekulare Infektionsbiologie, Universität Würzburg, Würzburg, Germany.

Mbio
|February 7, 2019
PubMed

Insights

Antifungal drug treatment in Candida albicans promotes mating competence, enabling clonal populations to combine resistance mechanisms. This leads to increased drug resistance through parasexual recombination and genome rearrangements.

Area of Science:

  • Microbiology
  • Mycology
  • Genetics

Background:

  • Candida albicans is an opportunistic fungal pathogen with a predominantly clonal population structure.
  • Mating-type locus (MTL) heterozygosity typically inhibits mating in C. albicans, limiting sexual recombination.
  • Parasexual recombination is hypothesized to contribute to the adaptation and evolution of C. albicans.

Purpose of the Study:

  • To investigate the role of parasexual recombination in the evolution of fluconazole-resistant C. albicans strains.
  • To determine if drug treatment can promote mating competence and genetic exchange in C. albicans.

Main Methods:

  • Culturing C. albicans strains heterozygous for MTL and fluconazole resistance mutations in the presence of fluconazole.
  • Inducing mating between MTL homozygous derivatives to form parasexual hybrids.
  • Analyzing drug resistance and genetic makeup of mating products under selective pressure.

Main Results:

  • Fluconazole treatment selected for homozygous derivatives with increased drug resistance.
  • Mating of homozygous strains produced hybrids that, after further propagation, showed enhanced fluconazole resistance.
  • Drug treatment induced genomic alterations leading to mating competence and facilitated the exchange of resistance mechanisms.

Conclusions:

  • Antifungal drug pressure can drive genomic rearrangements that confer mating competence in C. albicans.
  • Parasexual recombination allows for the combination of individually acquired drug resistance mechanisms within a clonal population.
  • This process contributes to the rapid evolution of highly drug-resistant C. albicans strains.

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