Asymmetric diversification of mating pheromones in fission yeast

Taisuke Seike1, Chikashi Shimoda2, Hironori Niki1

  • 1Genetics Strains Research Center, National Institute of Genetics, Mishima, Shizuoka, Japan.

Plos Biology
|January 23, 2019
PubMed

Insights

In fission yeast, M-factor recognition is strict, defining species, while P-factor recognition is flexible, potentially leading to reproductive isolation. This study investigates pheromone and receptor diversity in wild strains.

Area of Science:

  • Fungal reproductive biology
  • Molecular evolution
  • Yeast genetics

Background:

  • Mating in fungi relies on pheromone-receptor interactions.
  • Fission yeast Schizosaccharomyces pombe (Sp) has two mating types (P and M) with specific pheromones (P-factor, M-factor) and receptors (Mam2, Map3).
  • Previous work showed mutations in M-factor and Map3 can cause reproductive isolation.

Purpose of the Study:

  • To explore the mechanisms of reproductive isolation driven by genetic changes in pheromones and receptors.
  • To investigate the natural diversity of pheromone and receptor genes in wild S. pombe strains.
  • To understand the specificity of pheromone recognition between S. pombe and Schizosaccharomyces octosporus (So).

Main Methods:

  • Sequencing and analysis of pheromone (P-factor, M-factor) and receptor (Mam2, Map3) genes from 150 wild S. pombe strains.
  • Comparative analysis of gene sequences between S. pombe and S. octosporus.
  • Assessing pheromone recognition specificity across species.

Main Results:

  • M-factor and Map3 amino acid sequences were conserved across wild strains.
  • P-factor and Mam2 sequences showed significant diversity.
  • P-factor genes exhibited variable tandem repeat numbers (4-8 repeats).
  • So-M-factor did not affect S. pombe P cells, but So-P-factor partially affected S. pombe M cells, indicating stringent M-factor and relaxed P-factor recognition.

Conclusions:

  • Asymmetric diversification of pheromones may be driven by differential receptor specificities.
  • M-factor communication is crucial for species definition.
  • P-factor communication allows for flexible adaptation, potentially initiating prezygotic isolation in S. pombe.

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