BACKGROUND: We investigated how an extremely transposon element (TE)-rich organism such as the plant-symbiotic ascomycete truffle Tuber melanosporum exploits DNA methylation to cope with the more than 45,000 repeated elements that populate its genome. RESULTS: Whole-genome bisulfite sequencing performed on different developmental stages reveals a high fraction of methylated cytosines with a strong preference for CpG sites. The methylation pattern is highly similar among samples and selectively targets TEs rather than genes. A marked trend toward hypomethylation is observed for TEs located within a 1 kb distance from expressed genes, rather than segregated in TE-rich regions of the genome. Approximately 300 hypomethylated or unmethylate...
Heterobasidion parviporum is the most devastating fungal pathogen of conifer forests in Northern Eur...
Transposable elements (TEs) are exceptional contributors to eukaryotic genome diversity. Their ubiqu...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
BackgroundWe investigated how an extremely transposon element (TE)-rich organism such as the plant-s...
BackgroundTuber melanosporum, also known in the gastronomic community as "truffle", features one of ...
Background: Tuber melanosporum, also known in the gastronomic community as "truffle", features one o...
Transposable Elements (TEs) are key components that shape the organization and evolution of genomes....
DNA methylation is an epigenetic mark that plays an important role in genetic regulation in eukaryot...
International audienceDNA methylation is an epigenetic mark that plays an important role in genetic ...
DNA methylation is an epigenetic mark that plays an important role in genetic regulation in eukaryot...
Heterobasidion parviporum is the most devastating fungal pathogen of conifer forests in Northern Eur...
Transposable elements (TEs) are exceptional contributors to eukaryotic genome diversity. Their ubiqu...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
Background: We investigated how an extremely transposon element (TE)-rich organism such as the plant...
BackgroundWe investigated how an extremely transposon element (TE)-rich organism such as the plant-s...
BackgroundTuber melanosporum, also known in the gastronomic community as "truffle", features one of ...
Background: Tuber melanosporum, also known in the gastronomic community as "truffle", features one o...
Transposable Elements (TEs) are key components that shape the organization and evolution of genomes....
DNA methylation is an epigenetic mark that plays an important role in genetic regulation in eukaryot...
International audienceDNA methylation is an epigenetic mark that plays an important role in genetic ...
DNA methylation is an epigenetic mark that plays an important role in genetic regulation in eukaryot...
Heterobasidion parviporum is the most devastating fungal pathogen of conifer forests in Northern Eur...
Transposable elements (TEs) are exceptional contributors to eukaryotic genome diversity. Their ubiqu...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...