In response to stress, cells activate signaling pathways that coordinate broad changes in gene expression to enhance cell survival. Remarkably, complex variations in gene expression occur even in isogenic populations and in response to similar signaling inputs. However, the molecular mechanisms underlying this variability and their influence on adaptive cell fate decisions are not fully understood. Here, we use scRNA-seq to longitudinally assess transcriptional dynamics during osmoadaptation in yeast. Our findings reveal highly heterogeneous expression of the osmoresponsive program, which organizes into combinatorial patterns that generate distinct cellular programs. The induction of these programs is favored by global transcriptome repression upon stress. Cells displaying basal expression of the osmoresponsive program are hyper-responsive and resistant to stress. Through a transcription-focused analysis of more than 300 RNA-barcoded deletion mutants, we identify genetic factors that shape the heterogeneity of the osmostress-induced transcriptome, define regulators of stress-related subpopulations and find a link between transcriptional heterogeneity and increased cell fitness. Our findings provide a regulatory map of the complex transcriptional phenotypes underlying osmoadaptation in yeast and highlight the importance of transcriptional heterogeneity in generating distinct adaptive strategies.
Transcriptional heterogeneity shapes stress-adaptive responses in yeast.
转录异质性塑造了酵母的应激适应反应
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作者:Nadal-Ribelles Mariona, Lieb Guillaume, Solé Carme, Matas Yaima, Szachnowski Ugo, Andjus Sara, Quintana Maria, Romo Mònica, Herrero Aitor Gonzalez, Morillon Antonin, Pelet Serge, de Nadal Eulà lia, Posas Francesc
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Mar 17; 16(1):2631 |
| doi: | 10.1038/s41467-025-57911-6 | ||
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