Natural CMT2 Variation Is Associated With Genome-Wide Methylation Changes and Temperature Seasonality
نویسندگان
چکیده
As Arabidopsis thaliana has colonized a wide range of habitats across the world it is an attractive model for studying the genetic mechanisms underlying environmental adaptation. Here, we used public data from two collections of A. thaliana accessions to associate genetic variability at individual loci with differences in climates at the sampling sites. We use a novel method to screen the genome for plastic alleles that tolerate a broader climate range than the major allele. This approach reduces confounding with population structure and increases power compared to standard genome-wide association methods. Sixteen novel loci were found, including an association between Chromomethylase 2 (CMT2) and temperature seasonality where the genome-wide CHH methylation was different for the group of accessions carrying the plastic allele. Cmt2 mutants were shown to be more tolerant to heat-stress, suggesting genetic regulation of epigenetic modifications as a likely mechanism underlying natural adaptation to variable temperatures, potentially through differential allelic plasticity to temperature-stress.
منابع مشابه
Natural CMT2 variation is associated with genome-wide methylation changes and temperature adaptation
methylation changes and temperature adaptation Xia Shen1, Jennifer De Jonge2, Simon Forsberg1, Mats Pettersson1, Zheya Sheng1, Lars Hennig2 and Örjan Carlborg1* Affiliations: 1Swedish University of Agricultural Sciences, Department of Clinical Sciences, Division of Computational Genetics, Box 7078, SE-750 07 Uppsala, Sweden. 2Swedish University of Agricultural Sciences, Department of Plant Biol...
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