Genome Editing

Genome editing is a set of molecular methods that alter targeted DNA sequences in living cells or organisms, enabling researchers to test how genes control development and other biological traits. In widely used CRISPR-Cas systems, a guide RNA directs a Cas nuclease to a matching genomic sequence, where the nuclease creates a targeted break that cells repair through end joining or a template-guided pathway, producing gene disruptions or defined sequence changes. In developmental biology, genome editing supports gene-function studies, enhancer analysis, mutant embryo generation, and engineered model organisms. These applications help connect genetic sequences with cell fate, tissue formation, and developmental disorders.

Genome Editing - Related Videos

Education

JoVE Science Education - Advanced Biology

Genome Editing

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2023

A well-established technique for modifying specific sequences in the genome is gene targeting by homologous recombination, but this method can be laborious and only works in certain organisms. Recent advances have led to the development of “genome editing”, which works by inducing double-strand breaks in DNA using engineered nuclease enzymes guided to target genomic sites by either proteins or RNAs that recognize specific sequences. When a cell attempts to repair this damage, mutations can be...

Research

JoVE EoE - Genome Editing Techniques

CRISPR-Mediated Base Editing Tools: A Genome Editing Technique to Induce Targeted Base Substitution

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2025

This video explains the concept of CRISPR-mediated cytosine base editors for inducing targeted nucleotide substitution.

Microinjection for Transgenesis and Genome Editing in Threespine Sticklebacks

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Cited by 30 •

2016

Transgenic manipulations and genome editing are critical for functionally testing the roles of genes and cis-regulatory elements. Here a detailed microinjection protocol for the generation of genomic modifications (including Tol2-mediated fluorescent reporter transgene constructs, TALENs, and CRISPRs) is presented for the emergent model fish, the threespine stickleback.

Research

JoVE Journal - Biology
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Genome Editing with CompoZr Custom Zinc Finger Nucleases (ZFNs)

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Cited by 28 •

2012

The CompoZr Custom Zinc-Finger Nuclease (ZFN) Service enables precise genome editing in any organism or cell line at any locus defined by the user. This article describes the process for the design, manufacture, validation and implementation of the CompoZr Custom ZFN Service.

Improved Genome Editing via Oviductal Nucleic Acids Delivery-based In Vivo Electroporation Technique for Knockout Mice Generation

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2025

The efficiency of the Improved Genome Editing via Oviductal Nucleic Acids Delivery (I-GONAD) method is comparable to traditional microinjection, which requires zygote collection from donor females and transfer to pseudo-pregnant females. This protocol demonstrates its effectiveness by introducing CRISPR/Cas9-induced mutations into the ROSA26 locus on chromosome 6.

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