Tracing the evolution and genomic dynamics of mating-type loci in Cryptococcus pathogens and closely related species

Marco A Coelho1, Márcia David-Palma1, Seonju Marincowitz2

  • 1Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina, USA.

Insights

Sexual reproduction in fungi is governed by mating type (MAT) loci. This study reveals independent P/R locus expansions in Cryptococcus and diverse MAT locus linkage transitions, offering insights into fungal reproductive evolution.

Area of Science:

  • Mycology and Fungal Genetics
  • Evolutionary Biology
  • Genomics

Background:

  • Sexual reproduction in basidiomycete fungi is controlled by mating type (MAT) loci (P/R and HD).
  • These MAT loci display significant evolutionary plasticity, including expansions, rearrangements, and gene losses, often linked to mating system shifts.
  • The genera Cryptococcus and Kwoniella, with their diverse reproductive strategies and MAT locus architectures (bipolar, tetrapolar, linked, unlinked), serve as a model for studying MAT loci evolution.

Purpose of the Study:

  • To investigate the distinct evolutionary trajectories of MAT loci organization in Cryptococcus and Kwoniella.
  • To uncover novel transitions in MAT locus linkage and their impact on fungal reproductive systems.
  • To provide new insights into the genetic and chromosomal mechanisms driving reproductive transitions in basidiomycetes.

Main Methods:

  • Generation of chromosome-level assemblies for comparative genomic analyses.
  • Identification and characterization of MAT loci expansions, rearrangements, and linkage.
  • Mating assays to confirm sexual cycles and progeny analysis to study meiotic exchange and ploidy.

Main Results:

  • Independent expansions of the P/R locus were observed in tetrapolar Cryptococcus, contrasting with Kwoniella's smaller expansions and gene acquisitions.
  • These expansions in Cryptococcus were associated with AT-rich codon enrichment and GC-content reduction, suggesting recombination suppression.
  • Three new MAT locus linkage transitions were identified, including pseudobipolar and bipolar arrangements resulting from translocations and rearrangements.

Conclusions:

  • Distinct evolutionary paths shape MAT loci organization in sister fungal genera.
  • Convergent evolution of fused MAT loci is supported in basidiomycetes, driven by chromosomal rearrangements.
  • The study highlights the importance of diversity sampling for understanding fungal reproductive evolution and provides evidence for recombination despite aneuploidy.

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