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Andalis AA, et al.  (2004) Defects arising from whole-genome duplications in Saccharomyces cerevisiae. Genetics 167(3):1109-21

Abstract: Comparisons among closely related species have led to the proposal that the duplications found in many extant genomes are the remnants of an ancient polyploidization event, rather than a result of successive duplications of individual chromosomal segments. If this interpretation is correct, it would support Ohno's proposal that polyploidization drives evolution by generating the genetic material necessary for the creation of new genes. Paradoxically, analysis of contemporary polyploids suggests that increased ploidy is an inherently unstable state. To shed light on this apparent contradiction and to determine the effects of nascent duplications of the entire genome, we generated isogenic polyploid strains of the budding yeast Saccharomyces cerevisiae. Our data show that an increase in ploidy results in a marked decrease in a cell's ability to survive during stationary phase in growth medium. Tetraploid cells die rapidly, whereas isogenic haploids remain viable for weeks. Unlike haploid cells, which arrest growth as unbudded cells, tetraploid cells continue to bud and form mitotic spindles in stationary phase. The stationary-phase death of tetraploids can be prevented by mutations or conditions that result in growth arrest. These data show that whole-genome duplications are accompanied by defects that affect viability and subsequent survival of the new organism.

Status: Published Type: Journal Article PubMed ID: 15280227

Topics addressed in this paper

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AAH1 ACO1 ACR1 ACS1 ALD2 ARD1 ATH1 BCK1 BCY1 CIT1
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Genomic expression study yg ball
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CLN3 COR1 CTT1 ENO2 FBP1 FUM1 GDB1 GLC3 GLG1 GLG2
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GLK1 GPX1 GSY1 GSY2 HAS1 HSP12 HSP26 HSP42 HXK1 HXK2
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Topics Genes linked to topics (#31 - 40 )
ICL1 IDH1 IDP2 KGD1 KGD2 LSC2 MDH1 MDH2 MLS1 NQM1
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Topics Genes linked to topics (#41 - 50 )
NTH1 NTH2 PCK1 PGM2 RPL15A RPL16B RPL6A RPS20 RVS161 SAM1
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Topics Genes linked to topics (#51 - 57 )
SDH1 SDH2 SNZ1 TPS1 TPS2 UBI4 UTP5
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