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Sex in the PAC: a hidden affair in dark septate endophytes?
Pascal L Zaffarano1, Valentin Queloz, Angelo Duò
1Institute of Integrative Biology (IBZ), Forest Pathology and Dendrology, ETH Zurich, 8092 Zürich, Switzerland.
Background:
Fungi are asexually and sexually reproducing organisms that can combine the evolutionary advantages of the two reproductive modes. However, for many fungi the sexual cycle has never been observed in the field or in vitro and it remains unclear whether sexual reproduction is absent or cryptic. Nevertheless, there are indirect approaches to assess the occurrence of sex in a species, such as population studies, expression analysis of genes involved in mating processes and analysis of their selective constraints. The members of the Phialocephala fortinii s. l. - Acephala applanata species complex (PAC) are ascomycetes and the predominant dark septate endophytes that colonize woody plant roots. Despite their abundance in many ecosystems of the northern hemisphere, no sexual state has been identified to date and little is known about their reproductive biology, and how it shaped their evolutionary history and contributes to their ecological role in forest ecosystems. We therefore aimed at assessing the importance of sexual reproduction by indirect approaches that included molecular analyses of the mating type (MAT) genes involved in reproductive processes.
Results:
The study included 19 PAC species and > 3, 000 strains that represented populations from different hosts, continents and ecosystems. Whereas A. applanata had a homothallic (self-fertile) MAT locus structure, all other species were structurally heterothallic (self-sterile). Compatible mating types were observed to co-occur more frequently than expected by chance. Moreover, in > 80% of the populations a 1:1 mating type ratio and gametic equilibrium were found. MAT genes were shown to evolve under strong purifying selection.
Conclusions:
The signature of sex was found in worldwide populations of PAC species and functionality of MAT genes is likely preserved by purifying selection. We hypothesize that cryptic sex regularely occurs in the PAC and that further field studies and in vitro crosses will lead to the discovery of the sexual state. Although structurally heterothallic species prevail, it cannot be excluded that homothallism represents the ancestral breeding system in the PAC.
Insights
Cryptic sexual reproduction is common in the Phialocephala fortinii species complex (PAC), a group of dark septate endophytes. Molecular analyses reveal widespread evidence of sex, suggesting its crucial role in fungal evolution and ecology.
Area of Science:
- Mycology
- Evolutionary Biology
- Plant Pathology
Background:
- Fungi exhibit both asexual and sexual reproduction, but the sexual cycle is often unobserved or cryptic in many species.
- Dark septate endophytes, such as the Phialocephala fortinii species complex (PAC), are abundant in forest ecosystems, yet their reproductive biology remains largely unknown.
- Understanding fungal reproduction is key to deciphering their evolutionary history and ecological roles.
Purpose of the Study:
- To assess the prevalence and importance of sexual reproduction in the PAC using indirect molecular approaches.
- To investigate the evolutionary constraints on mating type (MAT) genes within this species complex.
Main Methods:
- Analysis of mating type (MAT) gene structures and population genetics across 19 PAC species and over 3,000 strains.
- Examination of MAT gene evolution under selective pressures.
- Comparison of observed mating type frequencies and ratios with theoretical expectations.
Main Results:
- The Acephala applanata species within the PAC displayed a homothallic (self-fertile) MAT locus, while other species were structurally heterothallic (self-sterile).
- Compatible mating types co-occurred more frequently than expected by chance in most populations.
- Over 80% of populations exhibited a 1:1 mating type ratio and gametic equilibrium, with MAT genes evolving under strong purifying selection.
Conclusions:
- Evidence of sexual reproduction was detected in global PAC populations, with functional MAT genes likely maintained by purifying selection.
- Cryptic sex is hypothesized to occur regularly in the PAC, with further research expected to uncover the sexual state.
- While heterothallism predominates, homothallism may represent the ancestral reproductive strategy for the PAC.
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