Cytosine methylation is an ancient epigenetic modification yet its function and extent within genomes is highly variable across eukaryotes. In mammals, methylation controls transposable elements and regulates the promoters of genes. In insects, DNA methylation is generally restricted to a small subset of transcribed genes, with both intergenic regions and transposable elements (TEs) depleted of methylation. The evolutionary origin and the function of these methylation patterns are poorly understood. Here we characterise the evolution of DNA methylation across the arthropod phylum. While the common ancestor of the arthropods had low levels of TE methylation and did not methylate promoters, both of these functions have evolved independently i...
Epigenetic mechanisms, such as DNA methylation, are poorly understood in arthropods compared to mamm...
Cytosine methylation is widely distributed in multicellular organisms. We present a comprehensive su...
Cytosine DNA methylation has been demonstrated in numerous eukaryotic organisms and has been shown t...
Cytosine methylation is an ancient epigenetic modification yet its function and extent within genome...
Cytosine methylation is an ancient epigenetic modification yet its function and extent within genome...
Cytosine methylation is an ancient epigenetic modification yet its function and extent within genome...
DNA methylation plays an important role in gene regu-lation in animals. However, the evolution and f...
BACKGROUND: Cytosine DNA methylation has been detected in many eukaryotic organisms and has been sho...
Variation in DNA methylation patterns among genes, individuals, and populations appears to be highly...
DNA methylation of transcription units (gene bodies) occurs in the genomes of many animal and plant ...
It has been experimentally shown that DNA methylation is involved in the regulation of gene expressi...
The function of DNA methylation has been investigated in depth in vertebrate and plant genomes, esta...
Background: Cytosine DNA methylation has been detected in many eukaryotic organisms and has been sho...
Epigenetic information is widely appreciated for its role in gene regulation in eukaryotic organisms...
DNA methylation is an evolutionary ancient epigenetic modification that is phylogenetically widespre...
Epigenetic mechanisms, such as DNA methylation, are poorly understood in arthropods compared to mamm...
Cytosine methylation is widely distributed in multicellular organisms. We present a comprehensive su...
Cytosine DNA methylation has been demonstrated in numerous eukaryotic organisms and has been shown t...
Cytosine methylation is an ancient epigenetic modification yet its function and extent within genome...
Cytosine methylation is an ancient epigenetic modification yet its function and extent within genome...
Cytosine methylation is an ancient epigenetic modification yet its function and extent within genome...
DNA methylation plays an important role in gene regu-lation in animals. However, the evolution and f...
BACKGROUND: Cytosine DNA methylation has been detected in many eukaryotic organisms and has been sho...
Variation in DNA methylation patterns among genes, individuals, and populations appears to be highly...
DNA methylation of transcription units (gene bodies) occurs in the genomes of many animal and plant ...
It has been experimentally shown that DNA methylation is involved in the regulation of gene expressi...
The function of DNA methylation has been investigated in depth in vertebrate and plant genomes, esta...
Background: Cytosine DNA methylation has been detected in many eukaryotic organisms and has been sho...
Epigenetic information is widely appreciated for its role in gene regulation in eukaryotic organisms...
DNA methylation is an evolutionary ancient epigenetic modification that is phylogenetically widespre...
Epigenetic mechanisms, such as DNA methylation, are poorly understood in arthropods compared to mamm...
Cytosine methylation is widely distributed in multicellular organisms. We present a comprehensive su...
Cytosine DNA methylation has been demonstrated in numerous eukaryotic organisms and has been shown t...