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Control of replication and segregation of R plasmid Rts1

Journal of Bacteriology
|December 1, 1976
PubMed

Insights

The mutant plasmid pTW2 shows significant instability and uneven segregation in bacteria, even at permissive temperatures. This suggests a potential issue with replication control within the Rst1 genome.

Area of Science:

  • Molecular Biology
  • Microbiology
  • Genetics

Background:

  • The Rst1 plasmid is known for its stability in bacterial hosts.
  • Mutant plasmids can exhibit altered replication and segregation properties.

Purpose of the Study:

  • To investigate the replication and stability of the mutant plasmid pTW2.
  • To compare the behavior of pTW2 with its parent plasmid, Rst1.

Main Methods:

  • Studying plasmid replication in Proteus mirabilis Pm17 at 30°C.
  • Analyzing plasmid DNA levels and kanamycin resistance in host cells.
  • Observing plasmid behavior during inhibited protein synthesis.

Main Results:

  • The mutant plasmid pTW2 exhibited high instability, with approximately 40% R- segregants.
  • pTW2 DNA levels were significantly higher than Rst1 DNA, and replication was uncoordinated with the host chromosome.
  • Instability and increased DNA levels were also observed in Escherichia coli host cells.

Conclusions:

  • pTW2's replication and segregation are likely not coordinated with the host cell cycle.
  • The Rst1 genome may contain genes regulating plasmid replication and segregation.
  • Further research is needed to identify specific genes responsible for pTW2's instability.

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