Structural Variant Detection

Structural variant detection is the identification and characterization of large genomic changes, including deletions, duplications, inversions, insertions, and translocations, that can alter gene function and genome organization. It works by analyzing patterns such as abnormal sequencing depth, discordant paired-end reads, split reads, or long-read alignments, with optical mapping and complementary assays providing additional evidence for complex rearrangements. In biology, these approaches reveal genetic variation that single-nucleotide analyses may miss, supporting studies of disease mechanisms, cancer genomes, population diversity, genome evolution, and developmental disorders. Accurate detection also improves genome assemblies and helps connect structural changes with phenotypic outcomes.

Structural Variant Detection - Related Videos

Research

JoVE Journal - Biology
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Detection of Rare Genomic Variants from Pooled Sequencing Using SPLINTER

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Cited by 10 •

2012

Pooled DNA sequencing is a fast and cost-effective strategy to detect rare variants associated with complex phenotypes in large cohorts. Here we describe the computational analysis of pooled, next-generation sequencing of 32 cancer-related genes using the SPLINTER software package. This method is scalable, and applicable to any phenotype of interest.

Research

JoVE EoE - PCR Techniques

Chip-Based Digital PCR to Detect Rare Transcript Variants Using a Nanofluidic Chip

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2025

This video demonstrates chip-based digital PCR — a variation of the digital PCR technique that is useful in detecting rare transcript variants. The PCR reaction is partitioned into the chambers of a nanofluidic chip, each of which acts as an independent reaction. The detection of fluorescence signals from the chambers with amplified targets confirms the presence of rare transcript variants in the sample.

Following the Dynamics of Structural Variants in Experimentally Evolved Populations

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Cited by 1 •

2023

We developed a cost-effective method to follow non-single nucleotide polymorphism allele dynamics that can easily be adapted to experimental evolution frozen archives. A triplet PCR technique was coupled with automated parallel capillary electrophoresis to quantify the relative frequency of an insertion allele over the course of experimental evolution.

Array Comparative Genomic Hybridization (Array CGH) for Detection of Genomic Copy Number Variants

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Cited by 7 •

2015

Array CGH for the detection of genomic copy number variants has replaced G-banded karyotype analysis. This paper describes the technology and its application in a diagnostic service laboratory.

Using RNA-sequencing to Detect Novel Splice Variants Related to Drug Resistance in In Vitro Cancer Models

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Cited by 25 •

2016

Here we describe a protocol aimed at investigating the impact of aberrant splicing on drug resistance in solid tumors and hematological malignancies. To this goal, we analyzed the transcriptomic profiles of parental and resistant in vitro models through RNA-seq and established a qRT-PCR based method to validate candidate genes.

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