
pBR322 Sequence and Map - SnapGene
First-generation E. coli vector for DNA cloning. This plasmid has a low copy number (~20 copies per cell) due to the rop gene. Sequence Author: New England Biolabs. Explore Over 2.7k …
pBR322 Vector - NEB
pBR322 DNA is a common plasmid cloning vector in E. coli that is 4,361bp and contains ampicillin and tetracycline resistance genes.
pBR322 - Wikipedia
pBR322 is a plasmid and was one of the first widely used E. coli cloning vectors. Created in 1977 in the laboratory of Herbert Boyer at the University of California, San Francisco , it was named …
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pBR322 - NEB
pBR322 is an E. coli plasmid cloning vector containing the origin of replication from pMB1 (a plasmid in the ColE1 com-patibility group; 1–3). The rop gene product, which regulates …
pBR322 Vector -Definition, Structure, Sites, Applications - Microbe …
Aug 3, 2023 · pBR322 is a commonly used cloning vector in E. coli and has tremendous applications in cloning. Origin of replication, Restriction enzyme sites, Selectable marker sites.
Plasmid vector pBR322 and its special-purpose derivatives--a review
The plasmid pBR322 was one of the first EK2 multipurpose cloning vectors to be designed and constructed (ten years ago) for the efficient cloning and selection of recombinant DNA …
pBR322 Vectors Having Tetracycline-Dependent Replication
The plasmid contents of these strains were compared to that of pBAD322S, a 5535 bp spectinomycin-dependent vector that carries the wild type pBR322 origin and is of a size quite …
pBR322 Plasmid DNA - Thermo Fisher Scientific
pBR322 is 4361 bp in length and contains: • The replicon rep responsible for the replication of plasmid (source – plasmid pMB1) • The rop gene, coding for the Rop protein, which promotes …
pBR322 vector map and sequence - novoprolabs.com
Provide pBR322 vector/plasmid map, full length sequence, antibiotic resistance, size and other information
PBR322 - an overview | ScienceDirect Topics
pBR322 is a well characterized plasmid cloning vector containing two antibiotic resistance genes, ampicillin (Amp) and tetracycline (Tet), and several convenient restriction endonuclease sites …