AbstractConnectivity plays an important role in shaping the genetic structure and in evolution of local adaptation. In the marine environment barriers to gene flow are in most cases caused by gradients in environmental factors, ocean circulation and/or larval behavior. Despite the long pelagic larval stages, with high potential for dispersal many marine organisms have been shown to have a fine scale genetic structuring. In this study, by using a combination of high-resolution genetic markers, species hybridization data and biophysical modeling we can present a comprehensive picture of the evolutionary landscape for a keystone species in the Baltic Sea, the blue mussel. We identified distinct genetic differentiation between the West Coast, B...
Many landscape and biotic processes shape the genetic structure of populations. The genetic structur...
The Baltic Sea is an evolutionary young sea that have developed a low salinity in its water from the...
Connectivity between populations shapes the genetic structure of species being crucial for an effect...
While secondary contact between Mytilus edulis and M. trossulus in North America results in mosaic h...
Anthropogenic environmental changes can serve as drivers for evolutionary responses in wild populati...
Baltic blue mussels can colonise and dominate habitats with far lower salinity (<10 psu) than oth...
Baltic blue mussels can colonise and dominate habitats with far lower salinity (<10 psu) than oth...
While secondary contact between Mytilus edulis and Mytilus trossulus in North America results in mos...
International audienceThe Kerguelen archipelago, isolated in the Southern Ocean, shelters a blue mus...
The Kerguelen archipelago, isolated in the Southern Ocean, shelters a blue mussel Mytilus metapopula...
The genetic variation of the Mediterranean blue mussel, Mytilus galloprovincialis from the eastern c...
Baltic blue mussels colonise and dominate benthic habitats with much lower salinity than any other m...
The data file presents the initial genetic data on 4 allozyme loci (Pgm, Odh, Gpi, Est-D) for 31 pop...
Many landscape and biotic processes shape the genetic structure of populations. The genetic structur...
The Baltic Sea is an evolutionary young sea that have developed a low salinity in its water from the...
Connectivity between populations shapes the genetic structure of species being crucial for an effect...
While secondary contact between Mytilus edulis and M. trossulus in North America results in mosaic h...
Anthropogenic environmental changes can serve as drivers for evolutionary responses in wild populati...
Baltic blue mussels can colonise and dominate habitats with far lower salinity (<10 psu) than oth...
Baltic blue mussels can colonise and dominate habitats with far lower salinity (<10 psu) than oth...
While secondary contact between Mytilus edulis and Mytilus trossulus in North America results in mos...
International audienceThe Kerguelen archipelago, isolated in the Southern Ocean, shelters a blue mus...
The Kerguelen archipelago, isolated in the Southern Ocean, shelters a blue mussel Mytilus metapopula...
The genetic variation of the Mediterranean blue mussel, Mytilus galloprovincialis from the eastern c...
Baltic blue mussels colonise and dominate benthic habitats with much lower salinity than any other m...
The data file presents the initial genetic data on 4 allozyme loci (Pgm, Odh, Gpi, Est-D) for 31 pop...
Many landscape and biotic processes shape the genetic structure of populations. The genetic structur...
The Baltic Sea is an evolutionary young sea that have developed a low salinity in its water from the...
Connectivity between populations shapes the genetic structure of species being crucial for an effect...