Comparative Genomic Hybridization

Comparative genomic hybridization (CGH) is a molecular cytogenetic technique that detects DNA copy-number changes across the genome, including gains, losses, and amplifications that may contribute to genetic disease. In CGH, fluorescently labeled patient and reference DNA are mixed and hybridized to normal chromosomes or a DNA microarray; differences in fluorescence intensity reveal regions with unequal genomic representation. Array-based CGH provides higher resolution than chromosome-based analysis and can identify submicroscopic deletions and duplications. In genetics, CGH supports the diagnosis and characterization of chromosomal abnormalities, cancer-associated genomic changes, developmental disorders, and unexplained congenital conditions.

Comparative Genomic Hybridization - Related Videos

Research

JoVE Journal - Biology

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.

Technical Demonstration of Whole Genome Array Comparative Genomic Hybridization

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Cited by 5 •

2008

This video is a technical demonstration of the hybridization protocol for whole genome tiling path array CGH, which scans the entire human genome using only 25-100 ng of DNA that can be isolated from a variety of sources, including archival formalin fixed material.

Education

JoVE Core - Molecular Biology

Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes

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2020

The present-day mitochondrial and chloroplast genomes have retained some of the characteristics of their ancestral prokaryotes and also have acquired new attributes during their evolution within eukaryotic cells. Like prokaryotic genomes, mitochondrial and chloroplast genomes neither bind with histone-like proteins nor show complex packaging into chromosome-like structures, as observed in eukaryotes. Unlike mitotic cell divisions observed in eukaryotic cells, mitochondria and chloroplasts...

Research

JoVE Journal - Biology
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Generation of RNA/DNA Hybrids in Genomic DNA by Transformation using RNA-containing Oligonucleotides

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Cited by 4 •

2010

This work shows how to form an RNA/DNA hybrid at the chromosomal level and reveal transfer of genetic information from RNA to genomic DNA in yeast cells.

Detection of the Genome and Transcripts of a Persistent DNA Virus in Neuronal Tissues by Fluorescent In situ Hybridization Combined with Immunostaining

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Cited by 11 •

2014

We established a fluorescent in situ hybridization protocol for the detection of a persistent DNA virus genome within tissue sections of animal models. This protocol enables studying infection process by codetection of the viral genome, its RNA products, and viral or cellular proteins within single cells.

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