Recombinant Plasmids

Recombinant plasmids are circular DNA molecules engineered to carry and replicate a selected gene or other DNA sequence inside a host cell, making them important tools in molecular biology. Researchers construct them by inserting a target fragment into a plasmid vector using compatible restriction sites or assembly methods, then introduce the construct into bacteria through transformation; an origin of replication supports plasmid copying, while selectable markers help identify cells that received it. Recombinant plasmids enable gene cloning, protein production, genetic analysis, and expression studies. They also support biotechnology applications such as manufacturing recombinant medicines and investigating gene function.

Recombinant Plasmids - Related Videos

Research

JoVE EoE - Viral Growth and Techniques

Generation of Recombinant Adeno-Associated Virus Through Plasmid Transfection

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2026

Source: Ding, J., et al. Preparation of rAAV9 to Overexpress or Knockdown Genes in Mouse Hearts. J. Vis. Exp. (2016)This video demonstrates the production of recombinant adeno-associated virus particles through plasmid transfection in mammalian cells. It highlights the coordinated expression of Rep, Cap, and helper proteins that drive viral genome replication and capsid assembly within the nucleus.

Generation of Recombinant Influenza Virus from Plasmid DNA

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Cited by 129 •

2010

Rescue of influenza A viruses from plasmid DNA is a basic and essential experimental technique that allows influenza researchers to generate recombinant viruses to study multiple aspects in the biology of influenza virus, and to be used as potential vectors or vaccines.

Plasmid-Mediated Generation of Recombinant Rotavirus in Cultured Cells

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2026

Source: Philip, A. A., et al. Simplified Reverse Genetics Method to Recover Recombinant Rotaviruses Expressing Reporter Proteins. J. Vis. Exp. (2020)This video demonstrates the recovery of recombinant rotavirus by transfecting plasmids encoding viral genome segments into hamster kidney cells, followed by amplification in monkey epithelial cells, enabling studies of rotavirus biology, replication, and vaccine development.

Recombineering Homologous Recombination Constructs in Drosophila

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Cited by 9 •

2013

Homologous recombination techniques greatly advance Drosophila genetics by enabling the creation of molecularly precise mutations. The recent adoption of recombineering allows one to manipulate large pieces of DNA and transform them into Drosophila6. The methods presented here combine these techniques to rapidly generate large homologous recombination vectors.

Education

JoVE Science Education - Basic Biology

Plasmid Purification

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2023

Plasmid purification is a technique used to isolate and purify plasmid DNA from genomic DNA, proteins, ribosomes, and the bacterial cell wall. A plasmid is a small, circular, double-stranded DNA that is used as a carrier of specific DNA molecules. When introduced into a host organism via transformation, a plasmid will be replicated, creating numerous copies of the DNA fragment under study. In this video, a step-by-step generalized procedure is described for how to perform plasmid purification.

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