Sylvain Billiard, Vincent Castric, Tatiana Giraud, Éric Meyer, Pierre Saumitou-Laprade, Henrique Teotónio
Sexual reproduction in eukaryotes typically involves the merging of gametes, cells, or nuclei belonging to different mating classes, such as small and large gametes, mating types, or sexes. In this review, we combine theoretical results, recent genomic data, and documented changes in mating systems among ciliate, fungal, plant, algal and animal lineages to identify general patterns in the evolution of mating classes and their underlying genetic architectures. We emphasize how interactions among distinct coexisting "layers" of mating classes within a species (e.g., sexes plus self-incompatibility systems) have shaped their evolution. We raise key unresolved questions, including why no species appears to maintain more than three coexisting layers of mating classes.