The accurate characterization of structural variation is crucial for our understanding of how large chromosomal alterations affect phenotypic differences and contribute to genome evolution. Whole-genome sequencing is a popular approach for identifying structural variants, but the accuracy of popular tools remains unclear due to the limitations of existing benchmarks. Moreover, the performance of these tools for predicting variants in non-human genomes is less certain, as most tools were developed and benchmarked using data from the human genome. To evaluate the use of long-read data for the validation of short-read structural variant calls, the agreement between predictions from a short-read ensemble learning method and long-read tools were...
Several bioinformatics methods have been proposed for the detection and characterization of genomic ...
From prokaryotes to eukaryotes, phenotypic variation, adaptation and speciation has been associated ...
The incomplete identification of structural variants (SVs) from whole-genome sequencing data limits ...
Whole-genome sequencing is a powerful tool for analyzing genetic variation on a global scale. One pa...
Genetic diseases are driven by aberrations of the human genome. Identification of such aberrations i...
Genetic diversity is maintained by continuing generation and removal of variants. While examining ov...
<div><p>Whole-genome sequencing is a powerful tool for analyzing genetic variation on a global scale...
Detecting genomic structural variants from high-throughput sequencing data is a complex and unresolv...
Structural variants are generally defined as DNA variations larger than 50bp. They have been recogn...
Abstract Background With the rapid development of long-read sequencing technologies, it is possible ...
Whole-genome sequencing represents a promising approach to pinpoint chemically induced mutations in ...
We developed an algorithm to predict structural variants using long reads. We applied multiple signa...
Virtually all genome sequencing efforts in national biobanks, complex and Mendelian disease programs...
A key goal of whole-genome sequencing for studies of human genetics is to interrogate all forms of v...
Variant discovery in medical research typically involves alignment of short sequencing reads to the ...
Several bioinformatics methods have been proposed for the detection and characterization of genomic ...
From prokaryotes to eukaryotes, phenotypic variation, adaptation and speciation has been associated ...
The incomplete identification of structural variants (SVs) from whole-genome sequencing data limits ...
Whole-genome sequencing is a powerful tool for analyzing genetic variation on a global scale. One pa...
Genetic diseases are driven by aberrations of the human genome. Identification of such aberrations i...
Genetic diversity is maintained by continuing generation and removal of variants. While examining ov...
<div><p>Whole-genome sequencing is a powerful tool for analyzing genetic variation on a global scale...
Detecting genomic structural variants from high-throughput sequencing data is a complex and unresolv...
Structural variants are generally defined as DNA variations larger than 50bp. They have been recogn...
Abstract Background With the rapid development of long-read sequencing technologies, it is possible ...
Whole-genome sequencing represents a promising approach to pinpoint chemically induced mutations in ...
We developed an algorithm to predict structural variants using long reads. We applied multiple signa...
Virtually all genome sequencing efforts in national biobanks, complex and Mendelian disease programs...
A key goal of whole-genome sequencing for studies of human genetics is to interrogate all forms of v...
Variant discovery in medical research typically involves alignment of short sequencing reads to the ...
Several bioinformatics methods have been proposed for the detection and characterization of genomic ...
From prokaryotes to eukaryotes, phenotypic variation, adaptation and speciation has been associated ...
The incomplete identification of structural variants (SVs) from whole-genome sequencing data limits ...