Abstract
Data are presented suggesting that the most critical factor determining whether an Hfr dnaAts strain can synthesize deoxyribonucleic acid and form colonies at temperatures that are nonpermissive for corresponding F- strains is neither the site of insertion of F nor the presence of additional mutations in the F particle or the chromosome; it is whether the particle is capable of autonomous replication at the temperature used. Consequently, suppression of the DnaA phenotype in Hfr strains occurs at 40 C but not, in most of them, at 42 C without the occurrence of additional mutations. The site of insertion of F may also be important since it is shown that in one Hfr dnaA strain partial suppression does occur at 42 C. In addition, it is shown that strains exhibiting suppression by integration of F at 40 C on minimal agar plates do not do so at this temperature on nutrient agar plates.
MeSH Terms
Chromosome Mapping
Chromosomes, Bacterial/metabolism
Conjugation, Genetic
Culture Media
DNA Replication
DNA, Bacterial/biosynthesis
Escherichia coli/enzymology,growth & development,metabolism
Extrachromosomal Inheritance
Galactosidases/biosynthesis
Glucose/metabolism
Mutation
Sex
Temperature
Chemicals
Culture Media
DNA, Bacterial
Galactosidases
Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Tresguerres E F
Nandadasa H G
Pritchard R H
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