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Carreto L, et al.  (2008) Comparative genomics of wild type yeast strains unveils important genome diversity. BMC Genomics 9524

Abstract: ABSTRACT: BACKGROUND: Genome variability generates phenotypic heterogeneity and is of relevance for adaptation to environmental change, but the extent of such variability in natural populations is still poorly understood. For example, selected Saccharomyces cerevisiae strains are variable at the ploidy level, have gene amplifications, changes in chromosome copy number, and gross chromosomal rearrangements. This suggests that genome plasticity provides important genetic diversity upon which natural selection mechanisms can operate. RESULTS: In this study, we have used wild-type S. cerevisiae (yeast) strains to investigate genome variation in natural and artificial environments. We have used comparative genome hybridization on array (aCGH) to characterize the genome variability of 16 yeast strains, of laboratory and commercial origin, isolated from vineyards and wine cellars, and from opportunistic human infections. Interestingly, sub-telomeric instability was associated with the clinical phenotype, while Ty element insertion regions determined genomic differences of natural wine fermentation strains. Copy number depletion of ASP3 and YRF1 genes was found in all wild-type strains. Other gene families involved in transmembrane transport, sugar and alcohol metabolism or drug resistance had copy number changes, which also distinguished wine from clinical isolates. CONCLUSIONS: We have isolated and genotyped more than 1000 yeast strains from natural environments and carried out an aCGH analysis of 16 strains representative of distinct genotype clusters. Important genomic variability was identified between these strains, in particular in sub-telomeric regions and in Ty-element insertion sites, suggesting that this type of genome variability is the main source of genetic diversity in natural populations of yeast. The data highlights the usefulness of yeast as a model system to unravel intraspecific natural genome diversity and to elucidate how natural selection shapes the yeast genome.

Status: Published Type: Journal Article PubMed ID: 18983662

Topics addressed in this paper

Number of different genes curated to this paper: 60

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AAD10 AAD3 AAD6 ADH7 AGP3 ARR3 ASP3-1 ASP3-2 ASP3-3 ASP3-4
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Comparative genomic hybridization yg ball
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Omics yg ball

Topics Genes linked to topics (#11 - 20 )
COG3 CUP1-2 DAK2 DIP5 ENA1 ENA2 ENA5 ENB1 FDH1 FIT2
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Evolution blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Topics Genes linked to topics (#21 - 30 )
FIT3 FLO1 FLO10 FLO5 FLO9 FRE5 HPF1 HSP60 HXT11 HXT12
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Topics Genes linked to topics (#31 - 40 )
HXT15 HXT9 IMA4 IMD1 IMD2 MAL11 MAL13 MPH2 MPH3 MSP1
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Topics Genes linked to topics (#41 - 50 )
NCE101 PAU14 PAU15 PAU21 PHO11 PHO12 PHR1 RDS1 SOR1 SOR2
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Topics Genes linked to topics (#51 - 60 )
YIL014C-A YIL171W YLR156W YLR159W YLR161W YRF1-2 YRF1-3 YRF1-4 YRF1-5 YRF1-8
Additional Literature blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
Evolution blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
Industrial Applications blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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