Abstract Background Structural variations in the form of DNA insertions and deletions are an important aspect of human genetics and especially relevant to medical disorders. Investigations have shown that such events can be detected via tell-tale discrepancies in the aligned lengths of paired-end DNA sequencing reads. Quantitative aspects underlying this method remain poorly understood, despite its importance and conceptual simplicity. We report the statistical theory characterizing the length-discrepancy scheme for Gaussian libraries, including coverage-related effects that preceding models are unable to account for. Results Deletion and insertion statistics both depend heavily on physical coverage, but otherwise differ dramatically, refut...
<div><p>Insertion and deletion (INDEL) mutations, the most common type of structural variance, are a...
An analysis of insertions and deletions (indels) occurring in a databank of multiple sequence alignm...
One of the most used techniques to study structural variation at a genome level is paired-end mappin...
Abstract Background Recent studies have demonstrated the genetic significance of insertions, deletio...
Efforts such as International HapMap Project and 1000 Genomes Project resulted in a catalog of milli...
Motivation: Insertions and deletions contribute significantly to genomic diversity both at intra and...
Profound knowledge about the nature of mutational processes is essential for a comprehensive underst...
Next generation sequencing (NGS) has enabled us to accurately determine the nucleotide sequence of s...
Genetic diseases are driven by aberrations of the human genome. Identification of such aberrations i...
Motivation: In the past few years, human genome structural variation discovery has enjoyed increased...
International audienceMotivation: The detection of structural variations (SVs) in short-range Paired...
Short insertions and deletions (indels) are the second most abundant form of human genetic variation...
One of the most used techniques to study structural variation at a genome level is paired-end mappin...
Comparison of human genomes shows that along with single nucleotide polymorphisms and small indels, ...
Structural variations (SVs) contribute significantly to the variability of the human genome and exte...
<div><p>Insertion and deletion (INDEL) mutations, the most common type of structural variance, are a...
An analysis of insertions and deletions (indels) occurring in a databank of multiple sequence alignm...
One of the most used techniques to study structural variation at a genome level is paired-end mappin...
Abstract Background Recent studies have demonstrated the genetic significance of insertions, deletio...
Efforts such as International HapMap Project and 1000 Genomes Project resulted in a catalog of milli...
Motivation: Insertions and deletions contribute significantly to genomic diversity both at intra and...
Profound knowledge about the nature of mutational processes is essential for a comprehensive underst...
Next generation sequencing (NGS) has enabled us to accurately determine the nucleotide sequence of s...
Genetic diseases are driven by aberrations of the human genome. Identification of such aberrations i...
Motivation: In the past few years, human genome structural variation discovery has enjoyed increased...
International audienceMotivation: The detection of structural variations (SVs) in short-range Paired...
Short insertions and deletions (indels) are the second most abundant form of human genetic variation...
One of the most used techniques to study structural variation at a genome level is paired-end mappin...
Comparison of human genomes shows that along with single nucleotide polymorphisms and small indels, ...
Structural variations (SVs) contribute significantly to the variability of the human genome and exte...
<div><p>Insertion and deletion (INDEL) mutations, the most common type of structural variance, are a...
An analysis of insertions and deletions (indels) occurring in a databank of multiple sequence alignm...
One of the most used techniques to study structural variation at a genome level is paired-end mappin...