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Long-term balancing selection contributes to adaptation in Arabidopsis and its relatives. | LitMetric

Long-term balancing selection contributes to adaptation in Arabidopsis and its relatives.

Genome Biol

State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.

Published: November 2017

AI Article Synopsis

  • Balancing selection helps maintain genetic variation in populations, contrasting with positive selection which fixes beneficial traits; however, its broad impacts on gene adaptation remain underexplored.
  • A study examined genes under balancing selection in two plant species, uncovering five specific genes associated with stress response and adaptation, showing significant ecological differences between haplotype groups.
  • Findings suggest that many more genes than just the well-known ones are under balancing selection, highlighting their crucial role in adapting to different environments, particularly regarding resistance to stress.

Article Abstract

Background: In contrast to positive selection, which reduces genetic variation by fixing beneficial alleles, balancing selection maintains genetic variation within a population or species and plays crucial roles in adaptation in diverse organisms. However, which genes, genome-wide, are under balancing selection and the extent to which these genes are involved in adaptation are largely unknown.

Results: We performed a genome-wide scan for genes under balancing selection across two plant species, Arabidopsis thaliana and its relative Capsella rubella, which diverged about 8 million generations ago. Among hundreds of genes with shared coding-region polymorphisms, we find evidence for long-term balancing selection in five genes: AT1G35220, AT2G16570, AT4G29360, AT5G38460, and AT5G44000. These genes are involved in the response to biotic and abiotic stress and other fundamental biochemical processes. More intriguingly, for these genes, we detected significant ecological diversification between the two haplotype groups, suggesting that balancing selection has been very important for adaptation.

Conclusions: Our results indicate that beyond the well-known S-locus genes and resistance genes, many loci are under balancing selection. These genes are mostly correlated with resistance to stress or other fundamental functions and likely play a more important role in adaptation to diverse habitats than previously thought.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5686891PMC
http://dx.doi.org/10.1186/s13059-017-1342-8DOI Listing

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