Display Settings:

Format

Send to:

Choose Destination
Accession: PRJNA280885 ID: 280885

Saccharomyces cerevisiae (baker's yeast)

The Fitness Consequences of Aneuploidy Are Driven by Condition-Dependent Gene Effects

See Genome Information for Saccharomyces cerevisiae
Aneuploidy is a hallmark of tumor cells, and yet the precise relationship between aneuploidy and a cell’s proliferative ability, or cellular fitness, has remained elusive. More...
AccessionPRJNA280885; GEO: GSE67769
Data TypeVariation
ScopeMultiisolate
OrganismSaccharomyces cerevisiae[Taxonomy ID: 4932]
Eukaryota; Fungi; Dikarya; Ascomycota; Saccharomycotina; Saccharomycetes; Saccharomycetales; Saccharomycetaceae; Saccharomyces; Saccharomyces cerevisiae
PublicationsSunshine AB et al., "The fitness consequences of aneuploidy are driven by condition-dependent gene effects.", PLoS Biol, 2015 May;13(5):e1002155
SubmissionRegistration date: 10-Apr-2015
Dunham Lab, Genome Sciences, University of Washington
RelevanceModel Organism
Project Data:
Resource NameNumber
of Links
Publications
PubMed1
PMC1
Other datasets
GEO DataSets1
GEO Data Details
ParameterValue
Data volume, Spots1349808
Data volume, Processed Mbytes40
Data volume, Supplementary Mbytes134

Supplemental Content

Recent activity

  • Fusarium pseudograminearum CS3096
    Fusarium pseudograminearum CS3096
    Fusarium pseudograminearum fdb3 knock-out mutant sequencing
    BioProject
  • Homo sapiens
    Homo sapiens
    Setd1a and NURF mediate chromatin dynamics and gene regulation during erythroid cell differentiation
    BioProject
  • Saccharomyces cerevisiae
    Saccharomyces cerevisiae
    The Fitness Consequences of Aneuploidy Are Driven by Condition-Dependent Gene Effects
    BioProject
  • rat gut metagenome
    rat gut metagenome
    Fecal microbiota of rats Targeted Locus (Loci)
    BioProject

Your browsing activity is empty.

Activity recording is turned off.

Turn recording back on

See more...
Support Center