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Stress experiments repeating Gasch et al.,2000 conditions (Mol Biol Cell
复刻加斯奇(Gasch)等人2000年实验条件的应激实验(《分子细胞生物学》(Mol Biol Cell))
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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
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Wild type cells in different times after transfer to no phosphate medium
Wild type cells were grown in SC medium and then transferred to no phosphate medium Cells were grown to logarithmic phase in SC medium (OD=0.5), washed and transferred to no phosphate medium (OD = 0.0
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Nitrogen limitation reveals large reserves in metabolic and translational capacities of yeast. Nitrogen limitation reveals large reserves in metabolic and translational capacities of yeast
The budding yeast Saccharomyces cerevisiae was used to study gene expression changes with step-wise reduction of nitrogen at a constant specific growth rate. Since nitrogen is critical for amino acid
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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 Genome sequencing. Saccharomyces cerevisiae
LTEE with gat1-2,mep2-2 and lst4-2 for 200 generations under ammonium limited chemostats
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