Polyketides produced by the entomopathogenic fungus Metarhizium anisopliae induce Candida albicans growth

Nicolau Sbaraini1, Jinyu Hu2, Indra Roux2

  • 1Centro de Biotecnologia, Programa de Pós-graduação em Biologia Celular e Molecular, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil; School of Molecular Sciences, The University of Western Australia, Perth, WA 6009, Australia.

Insights

Researchers discovered new polyketides, BAA and BAB, from Metarhizium anisopliae. These compounds did not show insecticidal activity but unexpectedly promoted Candida albicans growth and countered fluconazole effects.

Area of Science:

  • Mycology
  • Biochemistry
  • Chemical Ecology

Background:

  • Metarhizium anisopliae is a key entomopathogenic fungus with unexplored secondary metabolite potential.
  • Secondary metabolites are crucial for host interaction and survival in soil.
  • Highly reducing polyketide synthases (PKS) are often involved in producing bioactive compounds.

Purpose of the Study:

  • To investigate an unusual carnitine acyltransferase-containing PKS in M. anisopliae.
  • To characterize the polyketides produced by this PKS.
  • To evaluate the biological activity of the isolated compounds against arthropods and other fungi.

Main Methods:

  • Genome mining to identify the PKS gene.
  • Heterologous expression in Aspergillus nidulans for compound production.
  • Bioassays including intra-hemocoel injection in Galleria mellonella and minimum inhibitory concentration (MIC) assays against various fungi.

Main Results:

  • Two new polyketides, BAA and BAB, and one known compound were isolated.
  • BAA showed no insecticidal activity against Galleria mellonella.
  • BAA and BAB had no effect on Cryptococcus neoformans, weak antifungal activity against Saccharomyces cerevisiae, but promoted Candida albicans growth.
  • BAA mitigated fluconazole's fungicidal effect on C. albicans.

Conclusions:

  • The study describes novel polyketides from M. anisopliae with unique biological activities.
  • These findings expand the known repertoire of secondary metabolites in Metarhizium species.
  • The results highlight the potential of these polyketides in inter-fungal interactions and drug resistance modulation.