Hagmann Jörg, Becker Claude, Müller Jonas, Stegle Oliver, Meyer Rhonda C, Wang George, Schneeberger Korbinian, Fitz Joffrey, Altmann Thomas, Bergelson Joy, Borgwardt Karsten, Weigel Detlef
Department of Molecular Biology, Max Planck Institute for Developmental Biology, Tübingen, Germany.
Machine Learning and Computational Biology Research Group, Max Planck Institute for Developmental Biology and Max Planck Institute for Intelligent Systems, Tübingen, Germany; European Molecular Biology Laboratory, European Bioinformatics Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, United Kingdom.
PLoS Genet. 2015 Jan 8;11(1):e1004920. doi: 10.1371/journal.pgen.1004920. eCollection 2015 Jan.
There has been much excitement about the possibility that exposure to specific environments can induce an ecological memory in the form of whole-sale, genome-wide epigenetic changes that are maintained over many generations. In the model plant Arabidopsis thaliana, numerous heritable DNA methylation differences have been identified in greenhouse-grown isogenic lines, but it remains unknown how natural, highly variable environments affect the rate and spectrum of such changes. Here we present detailed methylome analyses in a geographically dispersed A. thaliana population that constitutes a collection of near-isogenic lines, diverged for at least a century from a common ancestor. Methylome variation largely reflected genetic distance, and was in many aspects similar to that of lines raised in uniform conditions. Thus, even when plants are grown in varying and diverse natural sites, genome-wide epigenetic variation accumulates mostly in a clock-like manner, and epigenetic divergence thus parallels the pattern of genome-wide DNA sequence divergence.
接触特定环境可能会以全基因组范围的表观遗传变化这种形式诱导一种生态记忆,这种记忆会在许多代中得以维持,这一可能性引发了诸多关注。在模式植物拟南芥中,已在温室培育的同基因系中鉴定出许多可遗传的DNA甲基化差异,但自然的、高度可变的环境如何影响此类变化的速率和范围仍不清楚。在此,我们展示了对一个地理上分散的拟南芥种群进行的详细甲基化组分析,该种群由近同基因系组成,与一个共同祖先至少分化了一个世纪。甲基化组变异在很大程度上反映了遗传距离,并且在许多方面与在统一条件下培育的品系相似。因此,即使植物生长在不同且多样的自然环境中,全基因组范围的表观遗传变异大多以类似时钟的方式积累,表观遗传分化因此与全基因组DNA序列分化模式平行。