Literature DB >> 12702675

Mode of selection and experimental evolution of antifungal drug resistance in Saccharomyces cerevisiae.

James B Anderson1, Caroline Sirjusingh, Ainslie B Parsons, Charles Boone, Claire Wickens, Leah E Cowen, Linda M Kohn.   

Abstract

We show that mode of selection, degree of dominance of mutations, and ploidy are determining factors in the evolution of resistance to the antifungal drug fluconazole in yeast. In experiment 1, yeast populations were subjected to a stepwise increase in fluconazole concentration over 400 generations. Under this regimen, two mutations in the same two chromosomal regions rose to high frequency in parallel in three replicate populations. These mutations were semidominant and additive in their effect on resistance. The first of these mutations mapped to PDR1 and resulted in the overexpression of the ABC transporter genes PDR5 and SNQ2. These mutations had an unexpected pleiotropic effect of reducing the residual ability of the wild type to reproduce at the highest concentrations of fluconazole. In experiment 2, yeast populations were subjected to a single high concentration of fluconazole. Under this regimen, a single recessive mutation appeared in each of three replicate populations. In a genome-wide screen of approximately 4700 viable deletion strains, 13 were classified as resistant to fluconazole (ERG3, ERG6, YMR102C, YMR099C, YPL056C, ERG28, OSH1, SCS2, CKA2, SML1, YBR147W, YGR283C, and YLR407W). The mutations in experiment 2 all mapped to ERG3 and resulted in the overexpression of the gene encoding the drug target ERG11, but not PDR5 and SNQ2. Diploid hybrids from experiments 1 and 2 were less fit than the parents in the presence of fluconazole. In a variation of experiment 2, haploids showed a higher frequency of resistance than diploids, suggesting that degree of dominance and ploidy are important factors in the evolution of antifungal drug resistance.

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Year:  2003        PMID: 12702675      PMCID: PMC1462505     

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  26 in total

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Review 3.  The evolutionary biology and population genetics underlying fungal strain typing.

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5.  Overlapping functions of the yeast oxysterol-binding protein homologues.

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Journal:  Genetics       Date:  2001-03       Impact factor: 4.562

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  57 in total

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2.  Haploidy, diploidy and evolution of antifungal drug resistance in Saccharomyces cerevisiae.

Authors:  James B Anderson; Caroline Sirjusingh; Nicole Ricker
Journal:  Genetics       Date:  2004-09-15       Impact factor: 4.562

3.  Adaptive walks toward a moving optimum.

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Review 4.  Genetic constraints on protein evolution.

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5.  Frequency-dependent selection and the evolution of assortative mating.

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6.  The Capture of a Disabled Proteasome Identifies Erg25 as a Substrate for Endoplasmic Reticulum Associated Degradation.

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7.  A microarray-based genetic screen for yeast chronological aging factors.

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8.  Fungal echinocandin resistance.

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9.  Evolutionary divergence in the fungal response to fluconazole revealed by soft clustering.

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10.  Chemical-genetic profile analysis in yeast suggests that a previously uncharacterized open reading frame, YBR261C, affects protein synthesis.

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