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June 1, 1985Proceedings of the National Academy of Sciences792 citationsOpen Access

An electrophoretic karyotype for yeast.

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GCGeorges F. CarleMOMaynard V. Olson

Key Points

  • The aim is to establish an electrophoretic karyotype for yeast by separating chromosomal DNA into distinct bands.
  • Used orthogonal-field-alternation gel electrophoresis to separate DNA into 12 bands.
  • Applied DNA X DNA hybridization probes to correlate DNA bands with genetically defined chromosomes.
  • Studied various laboratory strains to observe chromosome-length polymorphisms.
  • Identified 15 chromosomes represented by 12 bands, with 9 singlets and 3 comigrating doublets.
  • Assigned previously unmapped fragment F8 to chromosome XIII.
  • A 16th chromosome (number XII), containing rRNA genes, did not reproducibly enter the gels.

Abstract

The chromosomal DNA molecules of a standard laboratory strain of Saccharomyces cerevisiae have been separated into 12 well-resolved bands by orthogonal-field-alternation gel electrophoresis. DNA X DNA hybridization probes derived from cloned genes have been used to correlate this banding pattern with yeast's genetically defined chromosomes. The 12 bands are shown to represent 9 singlets and 3 comigrating doublets, thereby accounting for 15 chromosomes that were identified as I-XI and XIII-XVI. Because the three comigrating doublets could be readily resolved in certain laboratory yeast strains that contain chromosome-length polymorphisms relative to our standard strain, all 15 of these chromosomes could be displayed as a single band in at least one of four strains that were studied. A 16th chromosome (number XII), which is known to contain the genes for rRNA, does not reproducibly enter the gels. By making use of the band identifications, the previously unmapped fragment F8 was assigned to chromosome XIII. With the possible exception of chromosomes that differ greatly in size or electrophoretic behavior from all the known chromosomes, the results appear to define a complete "electrophoretic karyotype" for yeast.

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Cite This Study

Carle et al. (1985) studied this question.

synapsesocial.com/papers/6a0fa9e7d8c5cf602efd008ahttps://doi.org/10.1073/pnas.82.11.3756
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