ABSTRACT: Whole genome sequencing of S. cerevisiae strain F45, progeny of a cross between YO502, a modified haploid progeny of diploid strain DBVPG1853 (white-tecc strain), and YO486, a modified version of strain UC5 (sake strain).
Project description:Diploid and haploid strains often exhibit different tolerance to variety of stresses. Transcriptome of acclimation to ethanol stress in diploid and haploid strain of Saccharomyces cerevisiae was analyzed. We analyzed transcriptome profiles of diploid and haploid strains in the presence of ethanol.
2010-01-30 | GSE20108 | GEO
Project description:RAD-seq of progeny from cross UC5 x DBVPG1853 for ploidy estimation
Project description:Diploid and haploid strains often exhibit different tolerance to variety of stresses. Transcriptome of acclimation to ethanol stress in diploid and haploid strain of Saccharomyces cerevisiae was analyzed. We analyzed transcriptome profiles of diploid and haploid strains in the presence of ethanol. Haploid and diploid strains were cultured in YEPD media with 0%, 3% and 7% ethanol(v/v) in fermentors. The samples were collected at the growth stage for each strain under different conditions.
Project description:We report the high-throughput profiling of histone variant CNEP-A/Cnp1 in fission yeast Schizosaccharomyces pombe. By obtaining 1-10 ng immunoprecipitated DNA, we generated genome-wide CENP-A/Cnp1 maps of the wild type meiotic haploid progeny of heterozygous deletion diploid wip1∆/+, mhf1∆/+ and mhf2∆/+ and CENP-A/Cnp1 maps of mhf2+ carrying the inactivated Centromere 1 or Centromere 2. We find that CENP-A/Cnp1 spreading into the pericentromeric regions in wild type meiotic progeny of heterozygous deletion diploid wip1∆/+, mhf1∆/+ and mhf2∆/+.
Project description:A comprehensive RNASeq analysis was performed on Primary Human Oral Keratinocytes following their interaction with the haploid WT strain GZY903 and the diploid strain SC5314. Results imply the differential response of host to both strain types.
Project description:The parasitoid wasp Nasonia vitripennis is a major insect model for morphology, behavior, and genetics. It has haplodiploid sex determination: unfertilized eggs develop into haploid males and fertilized eggs develop into diploid females. Additionally, polyploids (diploid males, triploid females) occur in Nasonia, representing gene expression mechanisms regulating sexual maintenance outside of standard haplodiploidy. Here, we generated a transcriptomic atlas for N. vitripennis across two tissues (head and abdomen) for typical haploid males and diploid females and polyploid diploid males and triploid females. These data are a resource for analyses on transcriptomic differences across sex, tissue type, ploidy, strain, and temporal change.