Data from: Divergent natural selection with gene flow along major environmental gradients in Amazonia: insights from genome scans, population genetics and phylogeography of the characin fish Triportheus albus
Cooke, Georgina M., Macquarie University
Chao, Ning L., Federal University of Amazonas
Beheregaray, Luciano B., Macquarie University
Published Aug 20, 2015 on Dryad.
Cite this dataset
Cooke, Georgina M.; Chao, Ning L.; Beheregaray, Luciano B. (2015). Data from: Divergent natural selection with gene flow along major environmental gradients in Amazonia: insights from genome scans, population genetics and phylogeography of the characin fish Triportheus albus [Dataset]. Dryad. https://doi.org/10.5061/dryad.v5gp1233
The unparalleled diversity of tropical ecosystems like the Amazon Basin has been traditionally explained using spatial models within the context of climatic and geological history. Yet, it is adaptive genetic diversity that defines how species evolve and interact within an ecosystem. Here we combine genome scans, population genetics and sequenced-based phylogeographic analyses to examine spatial and ecological arrangements of selected and neutrally evolving regions of the genome of an Amazonian fish, Triportheus albus. Using a sampling design encompassing five major Amazonian rivers, three hydrochemical settings, and 352 nuclear markers and two mitochondrial DNA genes, we assess the influence of environmental gradients as biodiversity drivers in Amazonia. We identify strong divergent natural selection with gene flow and isolation by environment across craton (black and clear color) and Andean (white colour) derived water types. Furthermore, we find that heightened selection and population genetic structure present at the interface of these water types appears more powerful in generating diversity than the spatial arrangement of river systems and vicariant biogeographic history. The results from our study challenge assumptions about the origin and distribution of adaptive and neutral genetic diversity in tropical ecosystems. In addition, they have important implications for measures of biodiversity and evolutionary potential in one of the world’s most diverse and iconic ecosystems.
Mitochondrial ATPase 8, 6 Sequence data for 114 sequences of Triportheus albus including the sample identifier, haplotype label, GenBank accession number and ATPase 8, 6 DNA sequence.
360 AFLP loci for 177 Triportheus albus including individual ID for each sample,the site label, latitude, longitude and loci identifier. Missing AFLP data is denoted with a blank space.