Stable Transgenic Lines

Stable transgenic lines are organisms that carry an introduced DNA sequence integrated into their genome and transmit it consistently to subsequent generations. Researchers typically introduce a transgene into embryonic cells or reproductive material, identify individuals in which the construct has integrated, and breed them to establish a heritable line with a defined expression pattern. In biology, these lines provide reproducible systems for studying gene function, regulation, development, and disease processes. They can also express fluorescent reporters or engineered proteins, enabling researchers to track cells, test biological hypotheses, and evaluate genetic effects over time.

Stable Transgenic Lines - Related Videos

Research

JoVE Journal - Biology

Generation of Stable Transgenic C. elegans Using Microinjection

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Cited by 92 •

2008

This video demonstrates the technique of microinjection into the gonad of C. elegans to create transgenic animals.

Differentiating Non-Transgenic and Transgenic Human Pluripotent Stem Cells into Neural Progenitor Cells

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2025

This video demonstrates the generation of neural progenitor cells from non-transgenic and transgenic human pluripotent stem cells (hPSCs). hPSCs are differentiated into neural progenitor cells using a neuronal differentiation medium. While differentiation is induced in non-transgenic cells using small molecules, the transgenic hPSCs are differentiated by adding an antibiotic that induces the promoter for a neuronal differentiation-specific transcription factor.

Generation of Transgenic C. elegans by Biolistic Transformation

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Cited by 27 •

2010

Transgenic worms are commonly used in C. elegans research. Described is a simple, yet effective, protocol to introduce transgenes into worms using biolistic bombardment with DNA-coated gold particles. The effort involved and results of bombardment compare favorably with microinjection for the generation of transgenic animals.

Microinjection of A. aegypti Embryos to Obtain Transgenic Mosquitoes

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Cited by 56 •

2007

In this video, Nijole Jasinskiene demonstrates the methodology employed to generate transgenic Aedes aegypti mosquitoes, which are vectors for dengue fever. The techniques for correctly preparing microinjection needles, dessicating embryos, and performing microinjection are demonstrated.

phiC31-Integrase-Mediated Site-Directed Transgene Integration: A Microinjection Technique for Site-Specific Transgene Integration into an Anopheles Vector

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2025

In this video, we demonstrate phiC31-mediated site-specific transgene integration in the Anopheles embryo via microinjection. This method helps introduce desired genes into a host system for research and industrial applications.

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