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PMID: 14745780 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A DNA microarray for fission yeast: minimal changes in global gene expression after temperature shift.

Yeast (Chichester, England) ·Vol. 21 ·No. 1 ·2004-01-15 ·Pages 25-39

Xue Y, Haas SA, Brino L, Gusnanto A, Reimers M, Talibi D, Vingron M, Ekwall K, Wright AP

Abstract

Completion of the fission yeast genome sequence has opened up possibilities for post-genomic approaches. We have constructed a DNA microarray for genome-wide gene expression analysis in fission yeast. The microarray contains DNA fragments, PCR-amplified from a genomic DNA template, that represent > 99% of the 5000 or so annotated fission yeast genes, as well as a number of control sequences. The GenomePRIDE software used attempts to design similarly sized DNA fragments corresponding to gene regions within single exons, near the 3'-end of genes that lack homology to other fission yeast genes. To validate the design and utility of the array, we studied expression changes after a 2 h temperature shift from 25 degrees C to 36 degrees C, conditions widely used when studying temperature-sensitive mutants. Obligingly, the vast majority of genes do not change more than two-fold, supporting the widely held view that temperature-shift experiments specifically reveal phenotypes associated with temperature-sensitive mutants. However, we did identify a small group of genes that showed a reproducible change in expression. Importantly, most of these corresponded to previously characterized heat-shock genes, whose expression has been reported to change after more extreme temperature shifts than those used here. We conclude that the DNA microarray represents a useful resource for fission yeast researchers as well as the broader yeast community, since it will facilitate comparison with the distantly related budding yeast, Saccharomyces cerevisiae. To maximize the utility of this resource, the array and its component parts are fully described in On-line Supplementary Information and are also available commercially.

MeSH Terms
DNA, Fungal/genetics Gene Expression Regulation, Fungal/physiology Genome, Fungal Heat-Shock Proteins/genetics Oligonucleotide Array Sequence Analysis/methods Polymerase Chain Reaction Reproducibility of Results Schizosaccharomyces/genetics Temperature
Chemicals
DNA, Fungal Heat-Shock Proteins
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Xue Yongtao
Natural Sciences Section, Södertörns University College, S-141 89 Huddinge, Sweden.
Haas Stefan A
Brino Laurent
Gusnanto Arief
Reimers Mark
Talibi Driss
Vingron Martin
Ekwall Karl
Wright Anthony P H
Article Info
Journal
Yeast (Chichester, England)
Abbr.
Yeast
ISSN
0749-503X
Published
2004-01-15
Pages
25-39
Language
English
Region
England
NLM ID
8607637
Subset
IM
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