Incluye 10 ficheros de datosTransposable elements (TEs) are exceptional contributors to eukaryotic genome diversity. Their ubiquitous presence impacts the genomes of nearly all species and mediates genome evolution by causing mutations and chromosomal rearrangements and by modulating gene expression. We performed an exhaustive analysis of the TE content in 18 fungal genomes, including strains of the same species and species of the same genera. Our results depicted a scenario of exceptional variability, with species having 0.02 to 29.8% of their genome consisting of transposable elements. A detailed analysis performed on two strains of Pleurotus ostreatus uncovered a genome that is populated mainly by Class I elements, especially LTR...
Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which...
Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which...
Transposable elements constitute an important fraction of eukaryotic genomes. Given their mutagenic ...
Transposable elements (TEs) are exceptional contributors to eukaryotic genome diversity. Their ubiqu...
The last decade brought a still growing experimental evidence of mobilome impact on host's gene expr...
Transposable elements (TEs) impact genome plasticity, architecture and evolution in fungal plant pat...
Transposable Elements (TEs) are key components that shape the organization and evolution of genomes....
Transposable elements (TEs) are mobile DNA sequences that can catalyse their own replication and mov...
The activity of transposable elements (TEs) can be an important driver of genetic diversity with TE-...
Transposable elements (TEs) include a wide range of DNA sequences that can change positions in the g...
Background: Transposable elements (TEs) can be key drivers of evolution, but the me...
Background: Transposable elements (TEs) can be key drivers of evolution, but the me...
Transposable elements (TEs) include a wide range of DNA sequences that can change positions in the g...
Transposable elements (TEs) are major components of eukaryotic genomes. However, the extent of their...
Transposable elements (TEs) include a wide range of DNA sequences that can change positions in the g...
Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which...
Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which...
Transposable elements constitute an important fraction of eukaryotic genomes. Given their mutagenic ...
Transposable elements (TEs) are exceptional contributors to eukaryotic genome diversity. Their ubiqu...
The last decade brought a still growing experimental evidence of mobilome impact on host's gene expr...
Transposable elements (TEs) impact genome plasticity, architecture and evolution in fungal plant pat...
Transposable Elements (TEs) are key components that shape the organization and evolution of genomes....
Transposable elements (TEs) are mobile DNA sequences that can catalyse their own replication and mov...
The activity of transposable elements (TEs) can be an important driver of genetic diversity with TE-...
Transposable elements (TEs) include a wide range of DNA sequences that can change positions in the g...
Background: Transposable elements (TEs) can be key drivers of evolution, but the me...
Background: Transposable elements (TEs) can be key drivers of evolution, but the me...
Transposable elements (TEs) include a wide range of DNA sequences that can change positions in the g...
Transposable elements (TEs) are major components of eukaryotic genomes. However, the extent of their...
Transposable elements (TEs) include a wide range of DNA sequences that can change positions in the g...
Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which...
Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which...
Transposable elements constitute an important fraction of eukaryotic genomes. Given their mutagenic ...