International audienceDNA methylation is a critical epigenetic regulator of development in mammals and social insects, but its significance in development outside these groups is not understood. Here we investigated the genome-wide dynamics of DNA methylation in a mollusc model, the oyster Crassostrea gigas, from the egg to the completion of organogenesis. Large-scale methyla-tion maps reveal that the oyster genome displays a succession of methylated and non meth-ylated regions, which persist throughout development. Differentially methylated regions (DMRs) are strongly regulated during cleavage and metamorphosis. The distribution and levels of methylated DNA within genomic features (exons, introns, promoters, repeats and transposons) show d...
AbstractDNA methylation within promoter regions (PRDM) controls vertebrate early gene transcription ...
Histone methylation patterns are important epigenetic regulators of mammalian development, notably t...
N6‐methyladenosine (m6A) is a prevalent epitranscriptomic mark in eukaryotic RNA, with crucial roles...
International audienceDNA methylation is a critical epigenetic regulator of development in mammals a...
International audienceDNA methylation is a critical epigenetic regulator of development in mammals a...
International audienceDNA methylation is a critical epigenetic regulator of development in mammals a...
International audienceIn vertebrates, epigenetic modifications influence gene transcription, and an ...
International audienceIn vertebrates, epigenetic modifications influence gene transcription, and an ...
International audienceDNA methylation is evolutionarily conserved. Vertebrates exhibit high, widespr...
International audienceDNA methylation is evolutionarily conserved. Vertebrates exhibit high, widespr...
International audienceDNA methylation is evolutionarily conserved. Vertebrates exhibit high, widespr...
Thesis (Master's)--University of Washington, 2014Epigenetics describes DNA modifications that change...
Thesis (Master's)--University of Washington, 2014Epigenetics describes DNA modifications that change...
Abstract Background DNA methylation is an epigenetic mechanism with important regulatory functions i...
Histone methylation patterns are important epigenetic regulators of mammalian development, notably t...
AbstractDNA methylation within promoter regions (PRDM) controls vertebrate early gene transcription ...
Histone methylation patterns are important epigenetic regulators of mammalian development, notably t...
N6‐methyladenosine (m6A) is a prevalent epitranscriptomic mark in eukaryotic RNA, with crucial roles...
International audienceDNA methylation is a critical epigenetic regulator of development in mammals a...
International audienceDNA methylation is a critical epigenetic regulator of development in mammals a...
International audienceDNA methylation is a critical epigenetic regulator of development in mammals a...
International audienceIn vertebrates, epigenetic modifications influence gene transcription, and an ...
International audienceIn vertebrates, epigenetic modifications influence gene transcription, and an ...
International audienceDNA methylation is evolutionarily conserved. Vertebrates exhibit high, widespr...
International audienceDNA methylation is evolutionarily conserved. Vertebrates exhibit high, widespr...
International audienceDNA methylation is evolutionarily conserved. Vertebrates exhibit high, widespr...
Thesis (Master's)--University of Washington, 2014Epigenetics describes DNA modifications that change...
Thesis (Master's)--University of Washington, 2014Epigenetics describes DNA modifications that change...
Abstract Background DNA methylation is an epigenetic mechanism with important regulatory functions i...
Histone methylation patterns are important epigenetic regulators of mammalian development, notably t...
AbstractDNA methylation within promoter regions (PRDM) controls vertebrate early gene transcription ...
Histone methylation patterns are important epigenetic regulators of mammalian development, notably t...
N6‐methyladenosine (m6A) is a prevalent epitranscriptomic mark in eukaryotic RNA, with crucial roles...