International audienceTransposable elements (TEs) are the main components of genomes. However, due to their repetitive nature, they are very difficult to study using data obtained with short-read sequencing technologies. Here, we describe an efficient pipeline to accurately recover TE insertion (TEI) sites and sequences from long reads obtained by Oxford Nanopore Technology (ONT) sequencing. With this pipeline, we could precisely describe the landscapes of the most recent TEIs in wild-type strains of Drosophila 2 melanogaster and Drosophila simulans. Their comparison suggests that this subset of TE sequences is more similar than previously thought in these two species. The chromosome assemblies obtained using this pipeline also allowed reco...
Background: The recent availability of genome sequences has provided unparalleled insights into the ...
Here we present computational machinery to efficiently and accurately identify transposable element ...
Here we present computational machinery to efficiently and accurately identify transposable element ...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
Transposable elements (TEs) are the main components of genomes. However, due to their repetitive nat...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
Transposable elements (TEs) are mobile genetic elements that parasitize genomes by semi-autonomously...
To understand how transposon landscapes (TLs) vary across animal genomes, we describe a new method c...
Abstract Background Transposable elements (TEs) are major components of eukaryotic genomes and drive...
<div><p>Transposable elements (TEs) are mobile genetic elements that parasitize genomes by semi-auto...
Background: The recent availability of genome sequences has provided unparalleled insights into the ...
Here we present computational machinery to efficiently and accurately identify transposable element ...
Here we present computational machinery to efficiently and accurately identify transposable element ...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
Transposable elements (TEs) are the main components of genomes. However, due to their repetitive nat...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
International audienceTransposable elements (TEs) are the main components of genomes. However, due t...
Transposable elements (TEs) are mobile genetic elements that parasitize genomes by semi-autonomously...
To understand how transposon landscapes (TLs) vary across animal genomes, we describe a new method c...
Abstract Background Transposable elements (TEs) are major components of eukaryotic genomes and drive...
<div><p>Transposable elements (TEs) are mobile genetic elements that parasitize genomes by semi-auto...
Background: The recent availability of genome sequences has provided unparalleled insights into the ...
Here we present computational machinery to efficiently and accurately identify transposable element ...
Here we present computational machinery to efficiently and accurately identify transposable element ...