Double Mutant Analysis

Double mutant analysis is a genetic method that examines the combined effects of two mutations to reveal relationships between genes and the biological processes they control. Researchers create or identify organisms carrying both mutations, compare their phenotype with those of the corresponding single mutants and wild type, and interpret the interaction through concepts such as epistasis, pathway order, and functional redundancy. If the double mutant resembles one single mutant, the corresponding gene may act downstream or mask the other; an enhanced or suppressed phenotype can indicate parallel pathways or genetic interaction. This approach helps map signaling pathways, assign gene function, and explain complex traits in model organisms.

Double Mutant Analysis - Related Videos

Research

JoVE Journal - Biology

Lens Transplantation in Zebrafish and its Application in the Analysis of Eye Mutants

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Cited by 4 •

2009

Lens development involves interactions with other tissues. Several zebrafish eye mutants are characterized by an abnormally small lens size. Here we demonstrate a lens transplantation experiment to determine whether this phenotype is due to intrinsic causes or defective interactions with tissues that surround the lens.

Analysis of DNA Double-strand Break (DSB) Repair in Mammalian Cells

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Cited by 116 •

2010

This article describes GFP-based fluorescence in vivo assays that separately quantify homologous recombination and nonhomologous end joining in mammalian cells.

Immunofluorescence Microscopy for the Analysis of DNA Double-Strand Breaks

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2025

In this video, we describe the immunofluorescence microscopy technique to detect specific DNA damage response proteins localized at the sites of DNA double-strand breaks in human mononuclear cells. The proteins are recognized by specific primary antibodies, which in turn bind to fluorophore-tagged secondary antibodies that fluoresce during microscopic visualization, enabling visualization of the proteins as distinct fluorescent foci within the cell nuclei.

Generation of Maternal Mutants Using zpc:cas9 Knock-in Zebrafish

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2025

Here, we describe a protocol for generating maternal mutant that couples a stable zpc:cas9 knock-in line with Tol2-mediated delivery of sgRNA expression cassettes.

Use of Arabidopsis eceriferum Mutants to Explore Plant Cuticle Biosynthesis

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Cited by 11 •

2008

The plant cuticle is a waxy outer covering on plants that has a primary role in water conservation but is also an important barrier against the entry of pathogenic microorganisms. In this video, we demonstrate the analysis of plant cuticle mutants identified by forward and reverse genetics approaches.

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