DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expression and modulation of chromatin structure. Plant genomes are widely methylated, and the methylation generally occurs on the cytosine bases through the activity of specific enzymes called DNA methyltransferases. On the other hand, methylated DNA can also undergo demethylation through the action of demethylases. The methylation landscape is finely tuned and assumes a pivotal role in plant development and evolution. This review illustrates different molecular aspects of DNA methylation and some plant physiological processes influenced by this epigenetic modification in model species, crops, and ornamental plants such as orchids. In addition, t...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
Despite major progress in dissecting the molecular pathways that control DNA methylation patterns in...
DNA methylation is an important epigenetic modification of the genome in all organisms. This review ...
DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expre...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
All land plants so far examined use DNA methylation to silence transposons (TEs). DNA methylation th...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
DNA methylation marks regulate gene expression and genome structure. Stability and dynamics of DNA m...
AbstractPlants contain three distinct DNA methyltransferase types that are responsible for the estab...
Being sessile organisms, plants show a high degree of developmental plasticity to cope with a consta...
Heritable phenotypic variation in plants can be caused not only by underlying genetic differences, b...
In eukaryotic cells the methylation of cytosines in DNA is an essential mechanism which is implied i...
BackgroundIn eukaryotes, the combinatorial usage of cis-regulatory elements enables the assembly of ...
BackgroundIn eukaryotes, the combinatorial usage of cis-regulatory elements enables the assembly of ...
DNA methylation in plants appears to be a phenomenon more complex than in animals both for site spe...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
Despite major progress in dissecting the molecular pathways that control DNA methylation patterns in...
DNA methylation is an important epigenetic modification of the genome in all organisms. This review ...
DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expre...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
All land plants so far examined use DNA methylation to silence transposons (TEs). DNA methylation th...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
DNA methylation marks regulate gene expression and genome structure. Stability and dynamics of DNA m...
AbstractPlants contain three distinct DNA methyltransferase types that are responsible for the estab...
Being sessile organisms, plants show a high degree of developmental plasticity to cope with a consta...
Heritable phenotypic variation in plants can be caused not only by underlying genetic differences, b...
In eukaryotic cells the methylation of cytosines in DNA is an essential mechanism which is implied i...
BackgroundIn eukaryotes, the combinatorial usage of cis-regulatory elements enables the assembly of ...
BackgroundIn eukaryotes, the combinatorial usage of cis-regulatory elements enables the assembly of ...
DNA methylation in plants appears to be a phenomenon more complex than in animals both for site spe...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
Despite major progress in dissecting the molecular pathways that control DNA methylation patterns in...
DNA methylation is an important epigenetic modification of the genome in all organisms. This review ...