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Meiotic Exchange within and between Chromosomes Requires a Common Rec Function in <i>Saccharomyces cerevisiae</i>
43
Citations
33
References
1985
Year
GeneticsMolecular BiologyMolecular GeneticsDiploid MeiosisYeastIntrachromosomal RecombinationGenome InstabilityCell DivisionMeiosisDna ReplicationGenetic VariationChromosomal RearrangementMitosisHaploid Yeast CellsChromatin FunctionBiologyChromatinChromosome DynamicsChromatin StructureMeiotic ExchangeNatural SciencesChromosome BiologyRecombination DynamicMedicineCommon Rec Function
We used haploid yeast cells that express both the MATa and MAT alpha mating-type alleles and contain the spo13-1 mutation to characterize meiotic recombination within single, unpaired chromosomes in Rec+ and Rec- Saccharomyces cerevisiae. In Rec+ haploids, as in diploids, intrachromosomal recombination in the ribosomal DNA was detected in 2 to 6% of meiotic divisions, and most events were unequal reciprocal sister chromatid exchange (SCE). By contrast, intrachromosomal recombination between duplicated copies of the his4 locus occurred in approximately 30% of haploid meiotic divisions, a frequency much higher than that reported in diploids; only about one-half of the events were unequal reciprocal SCE. The spo11-1 mutation, which virtually eliminates meiotic exchange between homologs in diploid meiosis, reduced the frequency of intrachromosomal recombination in both the ribosomal DNA and the his4 duplication during meiosis by 10- to greater than 50-fold. This Rec- mutation affected all forms of recombination within chromosomes: unequal reciprocal SCE, reciprocal intrachromatid exchange, and gene conversion. Intrachromosomal recombination in spo11-1 haploids was restored by transformation with a plasmid containing the wild-type SPO11 gene. Mitotic intrachromosomal recombination frequencies were unaffected by spo11-1. This is the first demonstration of a gene product required for recombination between homologs as well as recombination within chromosomes during meiosis.
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