Effect of donor copy number on the rate of gene conversion in the yeast Saccharomyces cerevisiae
β Scribed by Melamed, Cathy ;Kupiec, Martin
- Publisher
- Springer
- Year
- 1992
- Tongue
- English
- Weight
- 890 KB
- Volume
- 235
- Category
- Article
- ISSN
- 0026-8925
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β¦ Synopsis
Nonreciprocal recombination (gene conversion) between homologous sequences at nonhomologous locations in the genome occurs readily in the yeast Saccharomyces cerevisiae. In order to test whether the rate of gene conversion is dependent on the number of homologous copies available in the cell to act as donors of information, the level of conversion of a defined allele was measured in strains carrying plasmids containing homologous sequences. The level of recombination was elevated in a strain carrying multiple copies of the plasmid, compared with the same strain carrying a single copy of the homologous sequences either on a plasmid or integrated in the genome. Thus, the level of conversion is proportional to the number of copies of donor sequences present in the cell. We discuss these results within the framework of currently favoured models of recombination.
π SIMILAR VOLUMES
Saccharomyces cerevisiae cultures were selected to determine the effects of plasmid size on host growth kinetics and plasmid copy number. A complete synthetic medium was verified and the effects of yeast nitrogen base without amino acids medium and leucine selection were established for the strain.
## Abstract Nocodazole completely inhibited cell division of __Saccharomyces cerevisiae__, contrary to methylbenzimidazoleβ2βylcarbamate, estimated by cell counting. Growth as measured by turbidity and dry weight estimations, however, was not influenced. Treatment for two hours with nocodazole inte