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The evolution of the major histocompatibility complex in upstream versus downstream river populations of the longnose dace. | LitMetric

AI Article Synopsis

  • Populations living upstream and downstream in rivers experience different environmental conditions, leading to diverse genetic resources, particularly concerning immune response genes.
  • Researchers studied longnose dace fish in Alberta rivers, using advanced sequencing techniques to identify key immune-related genetic variations and assess the effects of environmental factors.
  • The study revealed that MHC genes showed significant balancing selection in upstream regions compared to downstream, suggesting that river directionality influences immune gene evolution in these fish populations.

Article Abstract

Populations in upstream versus downstream river locations can be exposed to vastly different environmental and ecological conditions and can thus harbor different genetic resources due to selection and neutral processes. An interesting question is how upstream-downstream directionality in rivers affects the evolution of immune response genes. We used next-generation amplicon sequencing to identify eight alleles of the major histocompatibility complex (MHC) class II β exon 2 in the cyprinid longnose dace () from three rivers in Alberta, upstream and downstream of municipal and agricultural areas along contaminant gradients. We used these data to test for directional and balancing selection on the MHC. We also genotyped microsatellite loci to examine neutral population processes in this system. We found evidence for balancing selection on the MHC in the form of increased nonsynonymous variation relative to neutral expectations, and selection occurred at more amino acid residues upstream than downstream in two rivers. We found this pattern despite no population structure or isolation by distance, based on microsatellite data, at these sites. Overall, our results suggest that MHC evolution is driven by upstream-downstream directionality in fish inhabiting this system.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5433983PMC
http://dx.doi.org/10.1002/ece3.2839DOI Listing

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