Background The 17 Gb bread wheat genome has massively expanded through the proliferation of transposable elements and two recent rounds of polyploidization. The assembly of a 774 Mb reference sequence of wheat chromosome 3B provided us with the opportunity to explore the impact of transposable elements (TEs) on the complex wheat genome structure and evolution at a resolution and scale never reached so far. Results We develop an automated workflow, CLARI-TE, for TE modeling in complex genomes. We delineate precisely 56,488 intact and 196,391 fragmented TEs along the 3B pseudomolecule, accounting for 85% of the sequence, and reconstruct 30,199 nested insertions. TEs have been mostly silent for the last one million years, and the 3B chromosome...
International audienceBread wheat (Triticum aestivum L.) is a major crop and its genome is one of th...
International audienceBread wheat (Triticum aestivum L.) is a major crop and its genome is one of th...
To improve our understanding of the organization and evolution of the wheat (Triticum aestivum) geno...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
Background: Transposable elements (TEs) are major components of large plant genomes and main drivers...
Abstract Background Transposable elements (TEs) are major components of large plant genomes and main...
Abstract Wheat has one of the largest and most repetitive genomes among major crop plants, containin...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
Abstract Bread wheat (Triticum aestivum L.) is a major crop and its genome is one of the largest eve...
International audienceBread wheat (Triticum aestivum L.) is a major crop and its genome is one of th...
International audienceBread wheat (Triticum aestivum L.) is a major crop and its genome is one of th...
To improve our understanding of the organization and evolution of the wheat (Triticum aestivum) geno...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
International audienceBackground The 17 Gb bread wheat genome has massively expanded through the pro...
Background: Transposable elements (TEs) are major components of large plant genomes and main drivers...
Abstract Background Transposable elements (TEs) are major components of large plant genomes and main...
Abstract Wheat has one of the largest and most repetitive genomes among major crop plants, containin...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
International audienceTransposable elements (TEs) constitute .80% of the wheat genome but their dyna...
Abstract Bread wheat (Triticum aestivum L.) is a major crop and its genome is one of the largest eve...
International audienceBread wheat (Triticum aestivum L.) is a major crop and its genome is one of th...
International audienceBread wheat (Triticum aestivum L.) is a major crop and its genome is one of th...
To improve our understanding of the organization and evolution of the wheat (Triticum aestivum) geno...