Differential use of multiple genetic sex determination systems in divergent ecomorphs of an African crater lake cichlid
Munby, H.; Linderoth, T.; Fischer, B.; Du, M.; Vernaz, G.; Tyers, A. M.; Ngatunga, B. P.; Shechonge, A.; Denise, H.; McCarthy, S. A.; Bista, I.; Miska, E. A.; Santos, M. E.; Genner, M. J.; Turner, G. F.; Durbin, R.
Show abstract
African cichlid fishes not only exhibit remarkably high rates of speciation but also have some of the fastest evolving sex determination systems in vertebrates. However, little is known empirically in cichlids about the genetic mechanisms generating new sex-determining variants, what forces dictate their fate, the demographic scales at which they evolve, and whether they are related to speciation. To address these questions, we looked for sex-associated loci in full genome data from 647 individuals of Astatotilapia calliptera from Lake Masoko, a small isolated crater lake in Tanzania, which contains two distinct ecomorphs of the species. We identified three separate XY systems on recombining chromosomes. Two Y alleles derive from mutations that increase expression of the gonadal soma-derived factor gene (gsdf) on chromosome 7; the first is a tandem duplication of the entire gene observed throughout much of the Lake Malawi haplochromine cichlid radiation to which A. calliptera belongs, and the second is a 5 kb insertion directly upstream of gsdf. Both the latter variant and another 700 bp insertion on chromosome 19 responsible for the third Y allele arose from transposable element insertions. Males belonging to the Masoko deep-water benthic ecomorph are determined exclusively by the gsdf duplication, whereas all three Y alleles are used in the Masoko littoral ecomorph, in which they appear to act antagonistically among males with different amounts of benthic admixture. This antagonism in the face of ongoing admixture may be important for sustaining multifactorial sex determination in Lake Masoko. In addition to identifying the molecular basis of three coexisting sex determining alleles, these results demonstrate that genetic interactions between Y alleles and genetic background can potentially affect fitness and adaptive evolution.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Genetic sex determination in three closely related hydrothermal vent gastropods, including one species with intersex individuals 96%
- Male evolution under relaxed selection: Evidence for degeneration in sperm produced by male snails from asexual lineages 96%
- Genomic landscape of reproductive isolation in Lucania killifish: The role of sex chromosomes and salinity 95%
Similar papers in this journal
- Searching for intra-locus sexual conflicts in the three-spined stickleback (Gasterosteus aculeatus) genome 95%
- Testing for a role of postzygotic incompatibilities in rapidly speciated Lake Victoria cichlids 95%
- Rapid evolution of recombination landscapes during the divergence of cichlid ecotypes in Lake Masoko 94%
Similar papers in this journal
Similar papers in this journal
- Extensive genetic differentiation between recently evolved sympatric Arctic charr morphs 96%
- A chromosomal inversion may facilitate adaptation despite periodic gene flow in a freshwater fish 95%
- Genomic signals found using RNA sequencing support conservation of walleye (Sander vitreus) in a large freshwater ecosystem. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.