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Molecular Ecology · 2022 · Vol. 31 · Issue 5 · Wiley
A growing literature demonstrates the impact of helminths on their host gut microbiome. We investigated whether the stickleback host microbiome depends on ecoevolutionary variables by testing the impact of exposure to the cestode parasite Schistocephalus solidus with respect to infection success, host genotype, parasite genotype, and parasite microbiome composition. We observed constitutive differences in the microbiome of sti...
Molecular Ecology · 2019 · Vol. 28 · Issue 10 · Wiley
Parasites are one of the strongest selective agents in nature. They select for hosts that evolve counter‐adaptive strategies to cope with infection. Helminth parasites are special because they can modulate their hosts’ immune responses. This phenomenon is important in epidemiological contexts, where coinfections may be affected. How different types of hosts and helminths interact with each other is insufficiently investigated....
Molecular Ecology · 2016 · Vol. 25 · Issue 4 · Wiley
The observation of habitat‐specific phenotypes suggests the action of natural selection. The three‐spined stickleback ( Gasterosteus aculeatus ) has repeatedly colonized and adapted to diverse freshwater habitats across the northern hemisphere since the last glaciation, while giving rise to recurring phenotypes associated with specific habitats. Parapatric lake and river populations of sticklebacks harbour distinct parasite co...
Molecular Ecology · 2013 · Vol. 22 · Issue 3 · Wiley
Understanding the extent of local adaptation in natural populations and the mechanisms that allow individuals to adapt to their native environment is a major avenue in molecular ecology research. Evidence for the frequent occurrence of diverging ecotypes in species that inhabit multiple ecological habitats is accumulating, but experimental approaches to understanding the biological pathways as well as the underlying genetic me...
Molecular Ecology · 2013 · Vol. 22 · Issue 3 · Wiley
Since the end of the Pleistocene, the three‐spined stickleback ( Gasterosteus aculeatus ) has repeatedly colonized and adapted to various freshwater habitats probably originating from ancestral marine populations. Standing genetic variation and the underlying genomic architecture both have been speculated to contribute to recent adaptive radiations of sticklebacks. Here, we expand on the current genomic resources of this fish...
Ecology Letters · 2012 · Vol. 15 · Issue 7 · Wiley
Although crucial for the understanding of adaptive evolution, genetically resolved examples of local adaptation are rare. To maximize survival and reproduction in their local environment, hosts should resist their local parasites and pathogens. The major histocompatibility complex ( MHC ) with its key function in parasite resistance represents an ideal candidate to investigate parasite‐mediated local adaptation. Using replicat...