Genomics of speciation in a great speciator (Aves: Zosterops) reveals the roles of both natural and sexual selection
Gabrielli, M.; Leroy, T.; Roux, C.; Mila, B.; Thebaud, C.; Nabholz, B.
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Examining patterns of differentiation among lineage pairs at different stages of the speciation continuum can help disentangle the effects of linked and divergent selection, and identify lineage-specific targets of selection that may act as barrier loci during speciation. Here, we developed this approach using genomic data from a set of African and Indian Ocean belonging to the Zosteropidae family, commonly referred to as a "Great Speciator". We sampled a divergence continuum aiming to identify candidate barrier loci in phenotypically, genetically distinct, and parapatrically distributed, forms from a species complex, through comparisons with closely related species. Using three independent approaches, we showed that divergence at selected loci between geographic forms is mainly concentrated on the Z chromosome, unless forms differ in their ecologies. Functional annotation revealed that genes linked to song formation and immunity could be involved in reproductive isolation between forms only separated by physical barriers, while it is mostly genes related to adaptation to local conditions, morphology, and song behaviour that may explain reproductive isolation between forms with different ecologies, highlighting a role for combined effects of natural and sexual selection in driving the evolution of reproductive barriers in this rapidly speciating lineage
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