ArticleMolecular ecology2024
Population genomics of seal lice provides insights into the postglacial history of northern European seals.
Article in Molecular ecology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed.
- Host Co-Occurrence and Population Size Explain Genetic Differentiation and Diversity in Seal Lice.Molecular ecology · 2025Article
- Spatio-temporal analysis of genetic diversity in the sibling species Contracaecum osculatum sp. B: a tool for monitoring trophic-web dynamics in Arctic Sea waters.Parasitology research · 2025Article
- Mixing in Moderation: Slow Transmission of Non-Local Macroparasites Following a Population Augmentation of an Endangered Australian Skink.Molecular ecology · 2025Article
- Deep origins, distinct adaptations, and species-level status indicated for a glacial relict seal.Proceedings of the National Academy of Sciences of the United States of America · 2025Article
- The Evolutionary History of the Extinct Baltic Sea Harp Seal Population.Ecology and evolution · 2025Article
- Complex Origins and History of the Relict Fennoscandian Ringed Seals.Ecology and evolution · 2025Article
- Population genomics of seal lice provides insights into the postglacial history of northern European seals.Molecular ecology · 2024Article
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10 authors.
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Abstract
Genetic analyses of host-specific parasites can elucidate the evolutionary histories and biological features of their hosts. Here, we used population-genomic analyses of ectoparasitic seal lice (Echinophthirius horridus) to shed light on the postglacial history of seals in the Arctic Ocean and the Baltic Sea region. One key question was the enigmatic origin of relict landlocked ringed seal populations in lakes Saimaa and Ladoga in northern Europe. We found that that lice of four postglacially diverged subspecies of the ringed seal (Pusa hispida) and Baltic gray seal (Halichoerus grypus), like their hosts, form genetically differentiated entities. Using coalescent-based demographic inference, we show that the sequence of divergences of the louse populations is consistent with the geological history of lake formation. In addition, local effective population sizes of the lice are generally proportional to the census sizes of their respective seal host populations. Genome-based reconstructions of long-term effective population sizes revealed clear differences among louse populations associated with gray versus ringed seals, with apparent links to Pleistocene and Holocene climatic variation as well as to the isolation histories of ringed seal subspecies. Interestingly, our analyses also revealed ancient gene flow between the lice of Baltic gray and ringed seals, suggesting that the distributions of Baltic seals overlapped to a greater extent in the past than is the case today. Taken together, our results demonstrate how genomic information from specialized parasites with higher mutation and substitution rates than their hosts can potentially illuminate finer scale population genetic patterns than similar data from their hosts.
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