Abstract Background The evolution of gene body methylation (gbM), its origins, and its functional consequences are poorly understood. By pairing the largest collection of transcriptomes (>1000) and methylomes (77) across Viridiplantae, we provide novel insights into the evolution of gbM and its relationship to CHROMOMETHYLASE (CMT) proteins. Results CMTs are evolutionary conserved DNA methyltransferases in Viridiplantae. Duplication events gave rise to what are now referred to as CMT1, 2 and 3. Independent losses of CMT1, 2, and 3 in eudicots, CMT2 and ZMET in monocots and monocots/commelinids, variation in copy number, and non-neutral evolution suggests overlapping or fluid functional evolution of this gene family. DNA methylation within g...
In plants, DNA methylation occurs in distinct sequence contexts, including CG, CHG, and CHH. Thus, p...
DNA methylation is a conserved epigenetic modification, usually of the 5th carbon of cytosine in euk...
Despite major progress in dissecting the molecular pathways that control DNA methylation patterns in...
In plants, CG DNA methylation is prevalent in the transcribed regions of many constitutively express...
Little is known about patterns of genic DNA methylation across the plant kingdom or about the evolut...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation in plants is traditionally partitioned into CG, CHG and CHH contexts (with H any nuc...
The RNA-directed DNA methylation pathway (RdDM) can be divided into three phases: (i) small interfer...
Cytosine methylation is an epigenetic mark present in most eukaryotic genomes that contributes to th...
DNA methylation in plants is traditionally partitioned into CG, CHG and CHH contexts (with H any nuc...
International audienceGene body methylation (gbM) is an epigenetic mark where gene exons are methyla...
DNA methylation is an epigenetic mark that ensures silencing of transposable elements (TEs) and affe...
BACKGROUND: In several eukaryotes, DNA methylation occurs within the coding regions of many genes, t...
In plants, DNA methylation occurs in distinct sequence contexts, including CG, CHG, and CHH. Thus, p...
DNA methylation is a conserved epigenetic modification, usually of the 5th carbon of cytosine in euk...
Despite major progress in dissecting the molecular pathways that control DNA methylation patterns in...
In plants, CG DNA methylation is prevalent in the transcribed regions of many constitutively express...
Little is known about patterns of genic DNA methylation across the plant kingdom or about the evolut...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation in plants is traditionally partitioned into CG, CHG and CHH contexts (with H any nuc...
The RNA-directed DNA methylation pathway (RdDM) can be divided into three phases: (i) small interfer...
Cytosine methylation is an epigenetic mark present in most eukaryotic genomes that contributes to th...
DNA methylation in plants is traditionally partitioned into CG, CHG and CHH contexts (with H any nuc...
International audienceGene body methylation (gbM) is an epigenetic mark where gene exons are methyla...
DNA methylation is an epigenetic mark that ensures silencing of transposable elements (TEs) and affe...
BACKGROUND: In several eukaryotes, DNA methylation occurs within the coding regions of many genes, t...
In plants, DNA methylation occurs in distinct sequence contexts, including CG, CHG, and CHH. Thus, p...
DNA methylation is a conserved epigenetic modification, usually of the 5th carbon of cytosine in euk...
Despite major progress in dissecting the molecular pathways that control DNA methylation patterns in...