官方服务:
资源简介:
RNAseq data from three novel yeast organisms to compare relative growth and other measures in acidic environments
应用场景:
创建时间:
2020-01-31
相关数据集
Proteomic analysis demonstrated transcription factor gene YRR1 deletion in Saccharomyces cerevisiae enhances its resistance to vanillin through the upregulation of transcriptional activator Haa1, coactivator Mbf1, and proteasome assembly chaperone Tma17 expression
Vanillin is one of the major phenolic inhibitors of Saccharomyces cerevisiae in lignocellulosic hydrolysates. Deleting transcription factor gene YRR1 improves vanillin resistance by promoting some tra
NIAID Data Ecosystem90
Single-cell RNA-seq reveals intrinsic and extrinsic regulatory heterogeneity in yeast responding to stress. Saccharomyces cerevisiae BY4741
Single-cell RNA sequencing before and after salt treatment in Saccharomyces cerevisiae. Overall design: Dataset represents transcriptomes for 163 individual S. cerevisiae cells
NIAID Data Ecosystem30
SWATH Analysis of Yeast Proteome over Time in Response to Osmotic Stress
SWATH analysis of Yeast Proteome over time in response to Osmotic Stress. We sampled cell cultures in biological triplicates at six time points following the application of osmotic stress and acquired
NIAID Data Ecosystem10
Additional file 12 of Natural variation in yeast reveals multiple paths for acquiring higher stress resistance
Additional file 12: Table S9: Excel table of categories of differential salt-responsive expression in Fig. 4.
DataCite Commons2024-08-18 更新40
Saccharomyces cerevisiae response to various stressors
Samples GSM206658-GSM206693: Acquired Stress resistance in S. cerevisiae: NaCl primary and H2O2 secondary Transcriptional timecourses of yeast cells exposed to 0.7M NaCl alone, 0.5mM H2O2 alone, or 0.
Alliance of Genome Resources20



