Environmental gradients decouple demographic and adaptive connectivity in a highly mobile coastal marine species
Brauer, C.; Bertram, A.; Sandoval-Castillo, J.; Fowler, A.; Bell, J.; Hamer, P.; Wellenreuther, M.; Beheregaray, L. B.
Show abstract
Understanding how eco-evolutionary processes shape genetic variation and persistence in marine species with highly variable recruitment dynamics and dispersal potential remains a fundamental challenge, particularly when considering the interplay between gene flow and local adaptation. Here, we employed a seascape genomics approach to investigate population connectivity and local adaptation in Australasian snapper (Chrysophrys auratus, Sparidae) along 1500 km of the environmentally heterogeneous southern Australian coastline. Using 14,699 SNPs, we identified two distinct regional populations aligned with known biogeographical regions. Genotype-environment association analyses revealed 855 candidate adaptive loci associated with environmental variation, including temperature, salinity, and primary productivity. Connectivity analyses using neutral markers indicated high gene flow throughout both eastern and western regions, while candidate adaptive loci revealed substantially reduced connectivity, especially for Northern Spencer Gulf and West Coast populations. This pattern of locally restricted gene flow at adaptive genomic regions suggests that strong environmental gradients are driving adaptive divergence despite high overall connectivity. Our results support contingent migration as a potential mechanism modulating the balance between local adaptation and gene flow in this economically and ecologically important marine species. These findings might also have implications for regional management of other coastal fisheries that are experiencing substantial declines. As climate change alters coastal marine environments around the world, the dynamics of local recruitment, site fidelity and local adaptation are expected to change. This highlights the importance of integrating knowledge about eco-evolutionary processes into marine resource management, fisheries stock assessment, and restocking and stock enhancement activities.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Diving into broad-scale and high-resolution population genomics to decipher drivers of structure and climatic vulnerability in a marine invertebrate 97%
- Gene flow influences the genomic architecture of local adaptation in six riverine fish species 97%
- Long distance migration is a major factor driving local adaptation at continental scale in Coho Salmon 97%
Similar papers in this journal
- Population structure and genomic evidence for local adaptation to freshwater and marine environments in anadromous Arctic Char (Salvelinus alpinus) throughout Nunavik, Quebec, Canada 98%
- Seascape genomics reveals limited dispersal and suggest spatially varying selection among European populations of sea lamprey (Petromyzon marinus) 98%
- Defining conservation units in a highly diverse species: A case on Arctic charr 96%
Similar papers in this journal
- Genomic signals found using RNA sequencing support conservation of walleye (Sander vitreus) in a large freshwater ecosystem. 96%
- Extensive genetic differentiation between recently evolved sympatric Arctic charr morphs 96%
- A chromosomal inversion may facilitate adaptation despite periodic gene flow in a freshwater fish 95%
Similar papers in this journal
- Post-glacial recolonization and multiple scales of secondary contact contribute to contemporary Atlantic salmon (Salmo salar) genomic variation in North America. 96%
- Population dynamics of Amazonian floodplain forest species support spatial variation on genetic diversity but not range expansions through time 93%
- Rapid radiation of Southern Ocean shags in response to receding sea ice 92%
Similar papers in this journal
- Postglacial recolonization of the Southern Ocean by elephant seals occurred from multiple glacial refugia 94%
- Transient demographic dynamics of recovering fish populations shaped by past climate variability, harvest, and management 93%
- Recurrent extreme climatic events are driving gorgonian populations to local extinction: low adaptive potential to marine heatwaves. 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.