Lambda Dna

Lambda DNA is the double-stranded DNA genome of bacteriophage λ (lambda), a virus that infects Escherichia coli and serves as a classic model for studying molecular biology. Packaged as a linear molecule with complementary cohesive ends, it can circularize after entering a bacterial cell and then follow either the lytic pathway, which produces new phage particles, or lysogeny, in which the genome integrates into the host chromosome. Researchers use lambda DNA to investigate gene regulation, recombination, genome organization, and phage-host interactions, as well as in cloning strategies and restriction-enzyme mapping.

Lambda Dna - Related Videos

Research

JoVE Journal - Immunology and Infection
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Following Cell-fate in E. coli After Infection by Phage Lambda

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Cited by 20 •

2011

This article describes the procedure for preparing a fluorescently-labeled version of bacteriophage lambda, infection of E. coli bacteria, following the infection outcome under the microscope, and analysis of infection results.

Research

JoVE Journal - Immunology and Infection

The Lambda Select cII Mutation Detection System

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Cited by 3 •

2018

We describe a detailed protocol for the Lambda Select cII mutation assay in cultured cells of transgenic rodents or the corresponding animals treated with a chemical/physical agent of interest. This approach has been widely used for mutagenicity testing of carcinogens in mammalian cells.

Direct Observation of Enzymes Replicating DNA Using a Single-molecule DNA Stretching Assay

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Cited by 13 •

2010

We describe a method for observing real time replication of individual DNA molecules mediated by proteins of the bacteriophage replication system.

Education

JoVE Lab Manual - Biology
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DNA Isolation and Restriction Enzyme Analysis - Student Protocol

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2019

DNA Isolation ExpandNOTE: In this experiment you will perform DNA isolation under two experimental conditions: one using a buffer containing the detergent SDS and one without detergent. Hypotheses: The alternate hypothesis for this experiment might be that the sample prepared without SDS, a strong anionic detergent that breaks apart cell membranes, will yield less DNA than the sample prepared with SDS. The null hypothesis for this experiment might be that both samples will yield an equal amount...

Preparation of Viral DNA from Nucleocapsids

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Cited by 40 •

2011

We describe the process of isolating high purity herpesvirus nucleocapsid DNA from infected cells. The final DNA captured from solution is of high concentration and purity, making it ideally suited for high-throughput sequencing, high fidelity PCR reactions, and transfections to produce new viral recombinants.

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