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DNA methylation in Arabidopsis has a genetic basis and shows evidence of local adaptation

eLife · 2015 · Vol. 4 · pp. e05255–e05255
Manu DubinPei ZhangDazhe MengMarie-Stanislas RemigereauEdward J. OsborneFrancesco Paolo CasalePhilipp DreweAndré KahlesGéraldine JeanBjarni J. VilhjálmssonJoanna GunisSelen IrezViktor VoroninQiang SongQuan LongGunnar RätschOliver StegleRichard M. ClarkMagnus Nordborg

Abstract

Epigenome modulation potentially provides a mechanism for organisms to adapt, within and between generations. However, neither the extent to which this occurs, nor the mechanisms involved are known. Here we investigate DNA methylation variation in Swedish Arabidopsis thaliana accessions grown at two different temperatures. Environmental effects were limited to transposons, where CHH methylation was found to increase with temperature. Genome-wide association studies (GWAS) revealed that the extensive CHH methylation variation was strongly associated with genetic variants in both cis and trans, including a major trans-association close to the DNA methyltransferase CMT2. Unlike CHH methylation, CpG gene body methylation (GBM) was not affected by growth temperature, but was instead correlated with the latitude of origin. Accessions from colder regions had higher levels of GBM for a significant fraction of the genome, and this was associated with increased transcription for the genes affected. GWAS revealed that this effect was largely due to trans-acting loci, many of which showed evidence of local adaptation.

Plant Molecular Biology ResearchGenetic Mapping and Diversity in Plants and AnimalsPlant nutrient uptake and metabolismBiologyDNA methylationEpigenomeGeneticsMethylationArabidopsisGenome-wide association studyGeneCpG siteEpigenomics

MeSH terms

Adaptation, PhysiologicalDNA (Cytosine-5-)-MethyltransferasesDNA Transposable ElementsTemperatureTranscription, GeneticGenetic VariationArabidopsisGene Expression Regulation, PlantGenome, PlantCpG IslandsDNA MethylationGene Expression ProfilingArabidopsis ProteinsEpigenesis, GeneticGenome-Wide Association Study

Funding

  • University of Southern California
  • European Commission
  • Austrian Science Fund
  • National Institutes of Health
  • European Research Council
  • National Human Genome Research Institute
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