Understanding the relationship between transposable elements (TEs) and their closest positional genes in the host genome is a key point to explore their potential role in genome evolution. Transposable elements can regulate and affect gene expression not only because of their mobility within the genome but also because of their transcriptional activity. A comprehensive knowledge of structural organization between transposable elements and neighboring genes is important to study TE functional role in gene regulation. We implemented a pipeline which is capable to reveal the positional and directional relationship between TEs and adjacent gene distribution in the host genome
Background: Functional regulatory sequences are present in many transposable element (TE) copies, re...
AbstractThe movement of transposable elements (TE) in eukaryotic genomes can often result in the occ...
Abstract In recent years, much attention has been paid to comparative genomic studies of transposabl...
Understanding the relationship between transposable elements (TEs) and their closest positional gene...
Understanding the relationship between transposable elements (TEs) and their associated genes in the...
International audienceTransposable elements are known by many names, including 'transposons', 'inter...
Background: Transposable elements (TEs) are powerful creators of genotypic and phenotypic diversity ...
Transposable elements (TEs) are nearly ubiquitous in eukaryotes. The increase in genomic data, as we...
Transposable elements (TEs) are common mobile DNA elements present in nearly all genomes. Since the ...
Transposable elements (TEs) are genetic elements capable of changing position within the genome. Alt...
The genome is no longer deemed as a fixed and inert item but rather as a moldable matter that is con...
International audienceTransposable elements (TEs) are mobile DNA elements that can invade the genome...
Transposable elements (TEs) are present in all organisms and nearly half of the human and mouse geno...
Sequences derived from transposable elements (TEs) comprise nearly 40 - 50% of the genomic DNA of mo...
The movement of transposable elements (TE) in eukaryotic genomes can often result in the occurrence ...
Background: Functional regulatory sequences are present in many transposable element (TE) copies, re...
AbstractThe movement of transposable elements (TE) in eukaryotic genomes can often result in the occ...
Abstract In recent years, much attention has been paid to comparative genomic studies of transposabl...
Understanding the relationship between transposable elements (TEs) and their closest positional gene...
Understanding the relationship between transposable elements (TEs) and their associated genes in the...
International audienceTransposable elements are known by many names, including 'transposons', 'inter...
Background: Transposable elements (TEs) are powerful creators of genotypic and phenotypic diversity ...
Transposable elements (TEs) are nearly ubiquitous in eukaryotes. The increase in genomic data, as we...
Transposable elements (TEs) are common mobile DNA elements present in nearly all genomes. Since the ...
Transposable elements (TEs) are genetic elements capable of changing position within the genome. Alt...
The genome is no longer deemed as a fixed and inert item but rather as a moldable matter that is con...
International audienceTransposable elements (TEs) are mobile DNA elements that can invade the genome...
Transposable elements (TEs) are present in all organisms and nearly half of the human and mouse geno...
Sequences derived from transposable elements (TEs) comprise nearly 40 - 50% of the genomic DNA of mo...
The movement of transposable elements (TE) in eukaryotic genomes can often result in the occurrence ...
Background: Functional regulatory sequences are present in many transposable element (TE) copies, re...
AbstractThe movement of transposable elements (TE) in eukaryotic genomes can often result in the occ...
Abstract In recent years, much attention has been paid to comparative genomic studies of transposabl...