4.6 Article

Translocation of mitochondrial DNA into the nuclear genome blurs phylogeographic and conservation genetic studies in seabirds

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Sea surface temperature, rather than land mass or geographic distance, may drive genetic differentiation in a species complex of highly dispersive seabirds

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Summary: Seabirds, particularly Procellariiformes, are highly mobile organisms with a great capacity for long dispersal, though simultaneously showing high philopatry, resulting in contrasting patterns of genetic population structure. Factors such as landmasses, isolation by distance, segregation between breeding and nonbreeding zones, and oceanographic conditions contribute to the differentiation patterns observed in seabirds. The differentiation among populations is influenced by historical and current variation in sea surface temperatures.

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