Hybridization following secondary contact of genetically divergent populations can influence the range expansion of invasive species, though specific outcomes depend on the environmental dependence of hybrid fitness. Here, using two genetically and ecologically divergent threespine stickleback lineages that differ in their history of freshwater colonization, we estimate fitness variation of parental lineages and hybrids in semi-natural freshwater ponds with contrasting histories of nutrient loading. In our experiment, we found that fish from the older freshwater lineage (Lake Geneva) and hybrids outperformed fish from the younger freshwater lineage (Lake Constance) in terms of both growth and survival, regardless of the environmental context of our ponds. Across all ponds, hybrids exhibited the highest survival. Although wild-caught adult populations differed in their functional and defence morphology, it is unclear which of these traits underlie the fitness differences observed among juveniles in our experiment. Overall, our work suggests that when hybrid fitness is insensitive to environmental conditions, as observed here, introgression may promote population expansion into unoccupied habitats and accelerate invasion success.
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http://dx.doi.org/10.1111/jeb.14194 | DOI Listing |
A new species of freshwater pipefish, Microphis arrakisae sp. nov., is described from the West Indonesian Islands (Java, Bali and Lombok).
View Article and Find Full Text PDFJ Helminthol
November 2024
Killifish Foundation, La Plata, Buenos Aires Province, Argentina.
Clinostomids are a group of digeneans in which substantial diversity has been recently discovered, with some metacercariae specific to their fish hosts. Genetic analysis has been instrumental in elucidating species diversity within this genus. Recently, seven COI lineages were reported in Argentina, along with three metacercarial morphotypes lacking molecular data.
View Article and Find Full Text PDFJ Helminthol
November 2024
Departamento de Biología, Recinto Universitario de Mayagüez, Universidad de Puerto Rico, Call Box 9000, Mayagüez00681-9000, Puerto Rico.
Curr Biol
November 2024
University of Missouri, St. Louis, Department of Biology, 1 University Boulevard, St. Louis, MO 63121, USA; University of Missouri, St. Louis, Whitney R. Harris World Ecology Center, 1 University Boulevard, St. Louis, MO 63121, USA; Saint Louis Zoo, WildCare Institute, 1 Government Drive, St. Louis, MO 63110, USA. Electronic address:
Mol Phylogenet Evol
December 2024
Department of Biological Sciences, The George Washington University, Washington, DC, USA.
Repeated evolution of novel life histories that are correlated with ecological variables offers opportunities to study convergence in genetic, developmental, and metabolic features. Nearly half of the 800 species of Aplocheiloid killifishes, a clade of teleost fishes with a circumtropical distribution, are "annual" or seasonal species that survive in ephemeral bodies of water that desiccate and are unfeasible for growth, reproduction, or survival for weeks to months every year. But the repeated evolution of adaptations that are key features of the annual life history among these fishes remains poorly known without a robust phylogenetic framework.
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