Whole-exome sequencing (WES) can identify causative mutations in hereditary diseases. However, WES data might have a large candidate variant list, including false positives. Moreover, in families, it is more difficult to select disease-associated variants because many variants are shared among members. To reduce false positives and extract accurate candidates, we used a multilocus variant instead of a single-locus variant (SNV). We set up a specific window to analyze the multilocus variant and devised a sliding-window approach to observe all variants. We developed the gene selection tool (GST) based on proportion tests for linkage analysis using WES data. This tool is R program coded and has high sensitivity. We tested our code to find the ...
Over the last few decades, genomics is leading toward audacious future, and has been changing our vi...
BACKGROUND:With the expanded availability of next generation sequencing (NGS)-based clinical genetic...
Abstract Despite rapid progress of next-generation sequencing (NGS) technologies, the disease-causin...
<div><p>Whole-exome sequencing (WES) can identify causative mutations in hereditary diseases. Howeve...
Exome and whole-genome analyses powered by next-generation sequencing (NGS) have become invaluable t...
Recent data from 1000 Genomes Project suggest that human genome has large number of variations. Whil...
Purpose: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
PURPOSE: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
New sequencing technology has enabled the identification of thousands of single nucleotide polymorph...
Background: Whole exome sequencing studies identify hundreds to thousands of rare protein coding var...
<div><p>Exome sequencing has been widely used in detecting pathogenic nonsynonymous single nucleotid...
Whole exome sequencing (WES) is a recently developed technique in genetics research that attempts to...
Exome sequencing in families affected by rare genetic disorders has the potential to rapidly identif...
Item does not contain fulltextMOTIVATION: The search for causative genetic variants in rare diseases...
Exome sequencing in families affected by rare genetic disorders has the potential to rapidly identif...
Over the last few decades, genomics is leading toward audacious future, and has been changing our vi...
BACKGROUND:With the expanded availability of next generation sequencing (NGS)-based clinical genetic...
Abstract Despite rapid progress of next-generation sequencing (NGS) technologies, the disease-causin...
<div><p>Whole-exome sequencing (WES) can identify causative mutations in hereditary diseases. Howeve...
Exome and whole-genome analyses powered by next-generation sequencing (NGS) have become invaluable t...
Recent data from 1000 Genomes Project suggest that human genome has large number of variations. Whil...
Purpose: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
PURPOSE: Homozygosity mapping is an effective approach for detecting molecular defects in consanguin...
New sequencing technology has enabled the identification of thousands of single nucleotide polymorph...
Background: Whole exome sequencing studies identify hundreds to thousands of rare protein coding var...
<div><p>Exome sequencing has been widely used in detecting pathogenic nonsynonymous single nucleotid...
Whole exome sequencing (WES) is a recently developed technique in genetics research that attempts to...
Exome sequencing in families affected by rare genetic disorders has the potential to rapidly identif...
Item does not contain fulltextMOTIVATION: The search for causative genetic variants in rare diseases...
Exome sequencing in families affected by rare genetic disorders has the potential to rapidly identif...
Over the last few decades, genomics is leading toward audacious future, and has been changing our vi...
BACKGROUND:With the expanded availability of next generation sequencing (NGS)-based clinical genetic...
Abstract Despite rapid progress of next-generation sequencing (NGS) technologies, the disease-causin...