International audienceBackground: Accurate catalogs of structural variants (SVs) in mammalian genomes are necessary to elucidate the potential mechanisms that drive SV formation and to assess their functional impact. Next generation sequencing methods for SV detection are an advance on array-based methods, but are almost exclusively limited to four basic types: deletions, insertions, inversions and copy number gains. Results: By visual inspection of 100 Mbp of genome to which next generation sequence data from 17 inbred mouse strains had been aligned, we identify and interpret 21 paired-end mapping patterns, which we validate by PCR. These paired-end mapping patterns reveal a greater diversity and complexity in SVs than previously recognize...
Advances in whole-genome sequencing (WGS) promise to enable the accurate and comprehensive structura...
Abstract Background Allelic variation is the cornerstone of genetically determined differences in ge...
International audienceBackground: Array comparative genomic hybridization (aCGH) to detect copy numb...
International audienceBackground: Accurate catalogs of structural variants (SVs) in mammalian genome...
BACKGROUND: Accurate catalogs of structural variants (SVs) in mammalian genomes are necessary to elu...
International audienceStructural variation is widespread in mammalian genomes and is an important ca...
Structural variation is widespread in mammalian genomes and is an important cause of disease, but ju...
International audienceStructural variation is variation in structure of DNA regions affecting DNA se...
Structural variation (SV) encompasses diverse types of genomic variants including deletions, duplica...
Structural variation is variation in structure of DNA regions affecting DNA sequence length and/or o...
Genomic structural variants (SVs) are abundant in humans, differing from other forms of variation in...
Structural variant (SV) differences between human genomes can cause germline and mosaic disease as w...
Genomic structural variants (SVs) are abundant in humans, differing from other forms of variation in...
Advances in whole-genome sequencing (WGS) promise to enable the accurate and comprehensive structura...
Abstract Background Allelic variation is the cornerstone of genetically determined differences in ge...
International audienceBackground: Array comparative genomic hybridization (aCGH) to detect copy numb...
International audienceBackground: Accurate catalogs of structural variants (SVs) in mammalian genome...
BACKGROUND: Accurate catalogs of structural variants (SVs) in mammalian genomes are necessary to elu...
International audienceStructural variation is widespread in mammalian genomes and is an important ca...
Structural variation is widespread in mammalian genomes and is an important cause of disease, but ju...
International audienceStructural variation is variation in structure of DNA regions affecting DNA se...
Structural variation (SV) encompasses diverse types of genomic variants including deletions, duplica...
Structural variation is variation in structure of DNA regions affecting DNA sequence length and/or o...
Genomic structural variants (SVs) are abundant in humans, differing from other forms of variation in...
Structural variant (SV) differences between human genomes can cause germline and mosaic disease as w...
Genomic structural variants (SVs) are abundant in humans, differing from other forms of variation in...
Advances in whole-genome sequencing (WGS) promise to enable the accurate and comprehensive structura...
Abstract Background Allelic variation is the cornerstone of genetically determined differences in ge...
International audienceBackground: Array comparative genomic hybridization (aCGH) to detect copy numb...