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PMID: 3897792 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Heat shock induces chromosome loss in the yeast Candida albicans.

Molecular & general genetics : MGG ·Vol. 200 ·No. 1 ·1985-00-00 ·Pages 162-8

Hilton C, Markie D, Corner B, Rikkerink E, Poulter R

Abstract

The heat shock protocol described in this paper causes mitotic instability in log phase Candida albicans cells. Such instability is induced in diploid, aneuploid and tetraploid strains. The strains analysed are multiple heterozygotes which facilitates the detection of mitotic instability as manifested by the formation of homozygotes. Strains previously shown to be carrying cis linked mutant alleles show coincident segregation of the linked alleles. Conversely, strains which carry unlinked mutant alleles display no such coincident segregation. This segregation of complete linkage groups suggests that heat shock is inducing chromosome loss in C. albicans. The application of this protocol to the genetics of the imperfect fungus C. albicans has produced evidence of at least three chromosomes.

MeSH Terms
Candida albicans/genetics,radiation effects Chromosomes/radiation effects Heterozygote Hot Temperature Kinetics Mutation Phenotype Ploidies Species Specificity Ultraviolet Rays
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Hilton C
Markie D
Corner B
Rikkerink E
Poulter R
References (14)
14 references, click to expand
  1. Heterozygosity and segregation in Candida albicans.
    Mol Gen Genet. 1980;180(1):107-13 PMID: 7003306
  2. Parasexual genetic analysis of Candida albicans by spheroplast fusion.
    J Bacteriol. 1981 Jun;146(3):833-40 PMID: 7016832
  3. Segregation of 5-fluorocytosine-resistance variants by Candida albicans.
    Antimicrob Agents Chemother. 1981 Jun;19(6):1078-81 PMID: 7023383
  4. Analytical methods for yeasts.
    Methods Cell Biol. 1975;12:111-47 PMID: 172763
  5. Recombination analysis of naturally diploid Candida albicans.
    J Bacteriol. 1982 Dec;152(3):969-75 PMID: 6754707
  6. Temperature-dependent internuclear transfer of genetic material in heterokaryons of Candida albicans.
    Curr Genet. 1984 Apr;8(3):181-7 PMID: 24177737
  7. Mitotic recombination in Candida albicans: recessive lethal alleles linked to a gene required for methionine biosynthesis.
    Mol Gen Genet. 1982;187(3):477-85 PMID: 6757662
  8. The detection of monosomic colonies produced by mitotic chromosome non-disjunction in the yeast Saccharomyces cerevisiae.
    Mutat Res. 1976 Jul;36(1):49-66 PMID: 781528
  9. Genetic analysis of red, adenine-requiring mutants of Candida albicans.
    J Bacteriol. 1983 Dec;156(3):1066-77 PMID: 6358187
  10. Natural heterozygosity in Candida albicans.
    J Bacteriol. 1981 Feb;145(2):896-903 PMID: 6780534
  11. Conservation of genetic linkage in nonisogenic isolates of Candida albicans.
    J Bacteriol. 1983 Nov;156(2):498-506 PMID: 6355060
  12. Genetic Mapping in SCHIZOSACCHAROMYCES POMBE by Mitotic and Meiotic Analysis and Induced Haploidization.
    Genetics. 1977 Nov;87(3):471-89 PMID: 17248775
  13. Tumour promoters induce mitotic aneuploidy in yeast.
    Nature. 1981 Nov 19;294(5838):263-5 PMID: 7029309
  14. DNA content, kinetic complexity, and the ploidy question in Candida albicans.
    Mol Cell Biol. 1982 Jul;2(7):853-62 PMID: 6765567
Article Info
Journal
Molecular & general genetics : MGG
Abbr.
Mol Gen Genet
ISSN
0026-8925
Published
1985-00-00
Pages
162-8
Language
English
Region
Germany
NLM ID
0125036
Subset
IM
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