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Rancati G, et al.  (2008) Aneuploidy underlies rapid adaptive evolution of yeast cells deprived of a conserved cytokinesis motor. Cell 135(5):879-93

Abstract: The ability to evolve is a fundamental feature of biological systems, but the mechanisms underlying this capacity and the evolutionary dynamics of conserved core processes remain elusive. We show that yeast cells deleted of MYO1, encoding the only myosin II normally required for cytokinesis, rapidly evolved divergent pathways to restore growth and cytokinesis. The evolved cytokinesis phenotypes correlated with specific changes in the transcriptome. Polyploidy and aneuploidy were common genetic alterations in the best evolved strains, and aneuploidy could account for gene expression changes due directly to altered chromosome stoichiometry as well as to downstream effects. The phenotypic effect of aneuploidy could be recapitulated with increased copy numbers of specific regulatory genes in myo1Delta cells. These results demonstrate the evolvability of even a well-conserved process and suggest that changes in chromosome stoichiometry provide a source of heritable variation driving the emergence of adaptive phenotypes when the cell division machinery is strongly perturbed.

Status: Published Type: Journal Article | Research Support, N.I.H., Extramural PubMed ID: 19041751

Topics addressed in this paper

Number of different genes curated to this paper: 17

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AFR1 CHS2 HSC82 HSP12 HSP82 MKK2 MYO1 PIR3 PST1 RAS2
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Cellular Location blue ball blue ball
Comparative genomic hybridization yg ball
Evolution blue ball
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Genetic Interactions blue ball blue ball
Genomic expression study yg ball
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Omics yg ball
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Topics Genes linked to topics (#11 - 17 )
RLM1 SRL3 TSL1 YGP1 YGR130C YLR040C YLR194C
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Function/Process blue ball
Genetic Interactions blue ball
Mutants/Phenotypes blue ball
Primary Literature blue ball
Regulatory Role blue ball
RNA Levels and Processing blue ball blue ball blue ball blue ball blue ball
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