Mutant Embryos

Mutant embryos are developing embryos that carry genetic alterations affecting one or more genes, providing a window into how inherited information directs development. A mutation can change gene expression or protein function, disrupting signaling pathways, cell division, tissue differentiation, or body patterning as embryonic cells proliferate and specialize. In biology, researchers study mutant embryos to link specific genes with developmental processes and to model congenital disorders. These investigations can reveal essential molecular mechanisms, identify developmental pathways shared across organisms, and support genetic screening or targeted genome-editing studies.

Mutant Embryos - Related Videos

Research

JoVE Journal - Biology

Live Dissection of Drosophila Embryos: Streamlined Methods for Screening Mutant Collections by Antibody Staining

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Cited by 30 •

2009

We describe a streamlined protocol for generating "fillet" preparations of Drosophila embryos of specific genotypes. This protocol allows efficient execution of a variety of genetic screens. It also allows excellent visualization of structures in the late embryo.

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.

Single-Cell RNA Sequencing of Mutant Whole Mouse Embryos: From the Epiblast to the End of Gastrulation

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Cited by 4 •

2024

This paper establishes a pipeline for high-quality single-cell and nuclei suspensions of gastrulating mouse embryos for sequencing of single cells and nuclei.

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.

Shifting Zebrafish Lethal Skeletal Mutant Penetrance by Progeny Testing

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Cited by 8 •

2017

The goal of this protocol is to alter the penetrance of lethal skeletal mutant phenotypes in zebrafish by selective breeding. Lethal mutants cannot be grown to adulthood and bred themselves, therefore this protocol describes a method for tracking and selecting penetrance through multiple generations by progeny testing.

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