DNA methylation is an epigenetic modification required for transposable element (TE) silencing, genome stability, and genomic imprinting. Although DNA methylation has been intensively studied, the dynamic nature of methylation among different species has just begun to be understood. Here we summarize the recent progress in research on the wide variation of DNA methylation in different plants, organs, tissues, and cells; dynamic changes of methylation are also reported during plant growth and development as well as changes in response to environmental stresses. Overall DNA methylation is quite diverse among species, and it occurs in CG, CHG, and CHH (H = A, C, or T) contexts of genes and TEs in angiosperms. Moderately expressed genes are mos...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expre...
DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expre...
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...
lants are continuously exposed to a vast multiplicity of stressful factors, both of biotic or abiot...
<div><p>DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DN...
BACKGROUND: In several eukaryotes, DNA methylation occurs within the coding regions of many genes, t...
Abstract Background DNA cytosine methylation is an epigenetic modification that has been implicated ...
All land plants so far examined use DNA methylation to silence transposons (TEs). DNA methylation th...
Abstract Background Cytosine methylation is crucial for gene regulation and silencing of transposabl...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expre...
DNA methylation is an epigenetic modification of the genome involved in the regulation of gene expre...
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...
lants are continuously exposed to a vast multiplicity of stressful factors, both of biotic or abiot...
<div><p>DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DN...
BACKGROUND: In several eukaryotes, DNA methylation occurs within the coding regions of many genes, t...
Abstract Background DNA cytosine methylation is an epigenetic modification that has been implicated ...
All land plants so far examined use DNA methylation to silence transposons (TEs). DNA methylation th...
Abstract Background Cytosine methylation is crucial for gene regulation and silencing of transposabl...
The immobile lifestyle of plants requires responses to adapt the environmental stress. Flexible epig...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...