Dissecting the architecture of a quantitative trait locus in yeast (original) (raw)
References
Lander, E. S. & Schork, N. J. Genetic dissection of complex traits. Science265, 2037–2048 (1994). ArticleADSCAS Google Scholar
Risch, N. J. Searching for genetic determinants in the new millennium. Nature405, 847–856 (2000). ArticleCAS Google Scholar
Darvasi, A. Experimental strategies for the genetic dissection of complex traits in animal models. Nature Genet.18, 19–24 (1998). ArticleCAS Google Scholar
Mackay, T. F. Quantitative trait loci in Drosophila. Nature Rev. Genet.2, 11–20 (2001). ArticleCAS Google Scholar
Mauricio, R. Mapping quantitative trait loci in plants: uses and caveats for evolutionary biology. Nature Rev. Genet.2, 370–381 (2001). ArticleCAS Google Scholar
Flint, J. & Mott, R. Finding the molecular basis of quantitative traits: successes and pitfalls. Nature Rev. Genet.2, 437–445 (2001). ArticleCAS Google Scholar
Schafer, A. J. & Hawkins, J. R. DNA variation and the future of human genetics. Nature Biotechnol.16, 33–39 (1998). ArticleCAS Google Scholar
McCusker, J. H., Clemons, K. V., Stevens, D. A. & Davis, R. W. Genetic characterization of pathogenic Saccharomyces cerevisiae isolates. Genetics136, 1261–1269 (1994). ArticleCAS Google Scholar
Clemons, K. V., McCusker, J. H., Davis, R. W. & Stevens, D. A. Comparative pathogenesis of clinical and nonclinical isolates of Saccharomyces cerevisiae. J. Infect. Dis.169, 859–867 (1994). ArticleCAS Google Scholar
Murphy, A. & Kavanagh, K. Emergence of Saccharomyces cerevisiae as a human pathogen: Implications for biotechnology. Enzyme Microb. Technol.25, 551–557 (1999). ArticleCAS Google Scholar
McCusker, J. H., Clemons, K. V., Stevens, D. A. & Davis, R. W. Saccharomyces cerevisiae virulence phenotype as determined with CD-1 mice is associated with the ability to grow at 42°C and form pseudohyphae. Infect. Immun.62, 5447–5455 (1994). ArticleCAS Google Scholar
Tawfik, O. W., Papasian, C. J., Dixon, A. Y. & Potter, L. M. Saccharomyces cerevisiae pneumonia in a patient with acquired immune deficiency syndrome. J. Clin. Microbiol.27, 1689–1691 (1989). ArticleCAS Google Scholar
Mortimer, R. K. & Johnston, J. R. Genealogy of principal strains of the yeast genetic stock center. Genetics113, 35–43 (1986). ArticleCAS Google Scholar
Winzeler, E. A. et al. Direct allelic variation scanning of the yeast genome. Science281, 1194–1197 (1998). ArticleADSCAS Google Scholar
Steinmetz, L. M. & Davis, R. W. High-density arrays and insights into genome function. Biotechnol. Genet. Eng. Rev.17, 109–146 (2000). ArticleCAS Google Scholar
Lander, E. S. & Botstein, D. Mapping mendelian factors underlying quantitative traits using RFLP linkage maps. Genetics121, 185–199 (1989). ArticleCAS Google Scholar
Boehnke, M. Limits of resolution of genetic linkage studies: implications for the positional cloning of human disease genes. Am. J. Hum. Genet.55, 379–390 (1994). CASPubMedPubMed Central Google Scholar
Wood, V., Rutherford, K. M., Ivens, A., Rajandream, M. A. & Barrell, B. A re-annotation of the Saccharomyces cerevisiae genome. Comp. Funct. Genom.2, 143–154 (2001). ArticleCAS Google Scholar
Wickner, R. B. MKT1, a nonessential Saccharomyces cerevisiae gene with a temperature-dependent effect on replication of M2 double-stranded RNA. J. Bacteriol.169, 4941–4945 (1987). ArticleCAS Google Scholar
Shoemaker, D. D., Lashkari, D. A., Morris, D., Mittmann, M. & Davis, R. W. Quantitative phenotypic analysis of yeast deletion mutants using a highly parallel molecular bar-coding strategy. Nature Genet.14, 450–456 (1996). ArticleCAS Google Scholar
Goldstein, A. L. & McCusker, J. H. Three new dominant drug resistance cassettes for gene disruption in Saccharomyces cerevisiae. Yeast15, 1541–1553 (1999). ArticleCAS Google Scholar
Wach, A., Brachat, A., Pohlmann, R. & Philippsen, P. New heterologous modules for classical or PCR-based gene disruptions in Saccharomyces cerevisiae. Yeast10, 1793–1808 (1994). ArticleCAS Google Scholar
Herskowitz, I. & Jensen, R. E. in Methods in Enzymology (eds Guthrie, C. & Fink, G. R.) 132–246 (Academic, San Diego, 1991). Google Scholar
Niedenthal, R. K., Riles, L., Johnston, M. & Hegemann, J. H. Green fluorescent protein as a marker for gene expression and subcellular localization in budding yeast. Yeast12, 773–786 (1996). ArticleCAS Google Scholar
Codon, A. C., Gasent-Ramirez, J. M. & Benitez, T. Factors which affect the frequency of sporulation and tetrad formation in Saccharomyces cerevisiae baker's yeasts. Appl. Environ. Microbiol.61, 630–638 (1995). ArticleADSCAS Google Scholar
Spiegelman, J. I. et al. Cloning of the Arabidopsis RSF1 gene by using a mapping strategy based on high-density DNA arrays and denaturing high-performance liquid chromatography. Plant Cell12, 2485–2498 (2000). ArticleCAS Google Scholar
Primig, M. et al. The core meiotic transcriptome in budding yeasts. Nature Genet.26, 415–423 (2000). ArticleCAS Google Scholar