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

نویسندگان

  • Manu J. Dubin
  • Pei Zhang
  • Dazhe Meng
  • Marie-Stanislas Remigereau
  • Edward J. Osborne
  • Francesco Paolo Casale
  • Phillip Drewe
  • Andr'e Kahles
  • Bjarni Vilhj'almsson
  • Joanna Jagoda
  • Selen Irez
  • Viktor Voronin
  • Qiang Song
  • Quan Long
  • Gunnar Ratsch
  • Oliver Stegle
  • Richard M. Clark
  • Magnus Nordborg
چکیده

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

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

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تاریخ انتشار 2014