Rearrangements of highly polymorphic regions near telomeres of Saccharomyces cerevisiae.
Open Access
- 1 November 1984
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 4 (11) , 2509-2517
- https://doi.org/10.1128/mcb.4.11.2509
Abstract
We have examined the mitotic and meiotic properties of telomeric regions in various laboratory strains of yeast. Using a sequence (Y probe) derived from a cloned yeast telomere (J. Szostak and E. Blackburn, Cell 29:245-255, 1982), we found that various strains of Saccharomyces cerevisiae show extensive polymorphisms of restriction endonuclease fragment length. Some of the variation in the lengths of telomeric fragments appears to be under the control of a small number of genes. When DNA from various strains was digested with endonuclease KpnI, nearly all of the fragments homologous to the Y probe were found to be of different size. The pattern of fragments in different strains was extremely variable, with a greater degree of polymorphism than that observed for fragments containing the mobile TY1 element. Tetrad analysis of haploid meiotic segregants from diploids heterozygous for many different Y-homologous KpnI fragments revealed that most of them exhibited Mendelian (2:0) segregation. However, only a small proportion of these fragments displayed the obligate 2:2 parental segregation expected of simple allelic variants at the same chromosome end. From the segregations of these fragments, we concluded that some yeast telomeres lack a Y-homologous sequence and that the chromosome arms containing a Y-homologous sequence are different among various yeast strains. Regions near yeast telomeres frequently undergo rearrangement. Among eight tetrads from three different diploids, we have found three novel Y-homologous restriction fragments that appear to have arisen during meiosis. In all three cases, the appearance of a new fragment was accompanied by the loss of another band. In one of these cases, the rearrangement leading to a novel fragment arose in an isogenic diploid, in which both homologous chromosomes should have been identical. Among these same tetrads we also found examples of apparent mitotic gene conversions and mitotic recombination involving telemetric regions.This publication has 21 references indexed in Scilit:
- Detection of specific sequences among DNA fragments separated by gel electrophoresisPublished by Elsevier ,2006
- Structure of the growing telomeres of trypanosomesCell, 1984
- Identification of a telomeric DNA sequence in Trypanosoma bruceiCell, 1984
- Telomeric properties of C4A4-homologous sequences in micronuclear DNA of Oxytricha fallaxCell, 1984
- Is there left-handed DNA at the ends of yeast chromosomes?Nature, 1983
- Genomic environment of the expression-linked extra copies of genes for surface antigens of Trypanosoma brucei resembles the end of a chromosomeNature, 1982
- Genomic environment of T. brucei VSG genes: presence of a minichromosomeNature, 1982
- Ribosomal RNA gene amplification in tetrahymena may be associated with chromosome breakage and DNA eliminationCell, 1981
- A family of inverted repeat sequences and specific single-strand gaps at the termini of the Physarum rDNA palindromeCell, 1980
- A tandemly repeated sequence at the termini of the extrachromosomal ribosomal RNA genes in TetrahymenaJournal of Molecular Biology, 1978