Pyrosequencing permits accurate quantification of DNA methylation of specific regions where the proportions of the C/T polymorphism induced by sodium bisulfite treatment of DNA reflects the DNA methylation level. The commercially available high-throughput locus-specific pyrosequencing instruments allow for the simultaneous analysis of 96 samples, but restrict the DNA methylation analysis to CpG dinucleotide sites, which can be limiting in many biological systems. In contrast to mammals where DNA methylation occurs nearly exclusively on CpG dinucleotides, plants genomes harbor DNA methylation also in other sequence contexts including CHG and CHH motives, which cannot be evaluated by these pyrosequencing instruments due to software limitation...
Genome-wide DNA methylation studies have quickly expanded due to advances in next-generation sequenc...
Genome-wide characterization by next-generation sequencing has greatly improved our understanding of...
Abstract Background Cytosine methylation is widesprea...
Pyrosequencing permits accurate quantification of DNA methylation of specific regions where the prop...
Background5' methylation of cytosines in DNA molecules is an important epigenetic mark in eukaryotes...
Background: Cytosine methylation in plant genomes is important for the regulation of gene transcript...
: Cytosine methylation is a significant and widespread regulatory factor in plant systems. Methods f...
Methylation of cytosines ((m)C) is essential for epigenetic gene regulation in plants and mammals. A...
Epigenetic mechanisms, including histone modifications and DNA methylation, mutually regulate chroma...
Tomato plants are used as a model system to study fruit development and quality. Tomato fruit develo...
In plants, methylation at cytosines often leads to changes in gene expression and inactivation of tr...
Methylation of DNA cytosines affects whether transposons are silenced and genes are expressed, and i...
DNA methylation is an epigenetic modification that has the ability to alter gene expression without ...
Methylation of DNA cytosines affects whether transposons are silenced and genes are expressed, and i...
DNA methylation at CpG dinucleotides in mammalian cells is recognized as an epigenetic mechanism tha...
Genome-wide DNA methylation studies have quickly expanded due to advances in next-generation sequenc...
Genome-wide characterization by next-generation sequencing has greatly improved our understanding of...
Abstract Background Cytosine methylation is widesprea...
Pyrosequencing permits accurate quantification of DNA methylation of specific regions where the prop...
Background5' methylation of cytosines in DNA molecules is an important epigenetic mark in eukaryotes...
Background: Cytosine methylation in plant genomes is important for the regulation of gene transcript...
: Cytosine methylation is a significant and widespread regulatory factor in plant systems. Methods f...
Methylation of cytosines ((m)C) is essential for epigenetic gene regulation in plants and mammals. A...
Epigenetic mechanisms, including histone modifications and DNA methylation, mutually regulate chroma...
Tomato plants are used as a model system to study fruit development and quality. Tomato fruit develo...
In plants, methylation at cytosines often leads to changes in gene expression and inactivation of tr...
Methylation of DNA cytosines affects whether transposons are silenced and genes are expressed, and i...
DNA methylation is an epigenetic modification that has the ability to alter gene expression without ...
Methylation of DNA cytosines affects whether transposons are silenced and genes are expressed, and i...
DNA methylation at CpG dinucleotides in mammalian cells is recognized as an epigenetic mechanism tha...
Genome-wide DNA methylation studies have quickly expanded due to advances in next-generation sequenc...
Genome-wide characterization by next-generation sequencing has greatly improved our understanding of...
Abstract Background Cytosine methylation is widesprea...