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Published on: May 7, 2016
Non-migratory lineages experience higher diversification rates: global evidence from salmonid fishes
Christopher P Burridge1, Luke Simpson1, Mark V H Wilson2
1Discipline of Biological Sciences, University of Tasmania, Hobart, TAS, Australia.
Abstract:
Biologists have long sought to understand the forces driving biological speciation. Contrasts in dispersal ability (e.g., migration) are hypothesised to influence rates of lineage diversification. However, past inferences of migration-diversification relationships have been contradictory, suggesting the need for further investigation and more nuanced explanations. Here we test for a relationship between diadromy (marine-freshwater migration) and diversification in salmonids, a dominant group of fishes native across the temperate Northern Hemisphere. We reconstruct a molecular phylogeny comprising 140 species and apply State-dependent Speciation Extinction models to quantify diversification. Diversification rates are higher in non-diadromous relative to diadromous salmonid lineages, echoing the findings of a recent study of homologous southern temperate freshwater fishes, but conflicting with global studies incorporating tropical lineages. Climate appears to be a key factor explaining diadromy-diversification relationships, with the negative relationship observed in temperate lineages likely reflecting increased isolation and speciation of non-diadromous lineages following recolonisation of glacially perturbed habitats. In contrast, the positive diadromy-diversification relationships observed in studies spanning tropical fishes may reflect the role of diadromy in facilitating colonisation of stable, low-competition habitats.
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