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Updated: Jan 30, 2026

Microscopy of Fission Yeast Sexual Lifecycle
Published on: March 9, 2016
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.
Abstract:
In fungi, mating between partners depends on the molecular recognition of two peptidyl mating pheromones by their respective receptors. The fission yeast Schizosaccharomyces pombe (Sp) has two mating types, Plus (P) and Minus (M). The mating pheromones P-factor and M-factor, secreted by P and M cells, are recognized by the receptors mating type auxiliary minus 2 (Mam2) and mating type auxiliary plus 3 (Map3), respectively. Our recent study demonstrated that a few mutations in both M-factor and Map3 can trigger reproductive isolation in S. pombe. Here, we explored the mechanism underlying reproductive isolation through genetic changes of pheromones/receptors in nature. We investigated the diversity of genes encoding the pheromones and their receptor in 150 wild S. pombe strains. Whereas the amino acid sequences of M-factor and Map3 were completely conserved, those of P-factor and Mam2 were very diverse. In addition, the P-factor gene contained varying numbers of tandem repeats of P-factor (4-8 repeats). By exploring the recognition specificity of pheromones between S. pombe and its close relative Schizosaccharomyces octosporus (So), we found that So-M-factor did not have an effect on S. pombe P cells, but So-P-factor had a partial effect on S. pombe M cells. Thus, recognition of M-factor seems to be stringent, whereas that of P-factor is relatively relaxed. We speculate that asymmetric diversification of the two pheromones might be facilitated by the distinctly different specificities of the two receptors. Our findings suggest that M-factor communication plays an important role in defining the species, whereas P-factor communication is able to undergo a certain degree of flexible adaptation-perhaps as a first step toward prezygotic isolation in S. pombe.
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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