<p>All organisms live in changeable, stressful environments. It has been reported that exposure to low-dose stresses or poisons can improve fitness. However, examining the effects of chronic low-dose chemical exposure is challenging. To address this issue we used temperature sensitive mutations affecting the yeast cell division cycle to induce low-dose stress for 40 generation times, or more. We examined <i>cdc13-1</i> mutants, defective in telomere function, and <i>cdc15-2</i> mutants, defective in mitotic kinase activity. We found that each stress induced similar adaptive responses. Stress-exposed cells became resistant to higher levels of stress but less fit, in comparison with unstressed cells, in conditions of low stress. The costs and...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Abstract Cells respond to environmental fluctuations by regulating multiple transcriptional programs...
Organisms can protect themselves against future environmental change. An example is cross-protection...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
Stress response genes and their regulators form networks that underlie drug resistance. These networ...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
Cells routinely deploy a spectrum of specialized counter-measures to deal with stress. However, a ne...
Stress response genes and their regulators form networks that underlie drug resistance. These networ...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
Stress response genes and their regulators form networks that underlie drug resistance. These networ...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Cellular senescence is a major intermediate step from healthy cells toward tumor cells. By using mic...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Abstract Cells respond to environmental fluctuations by regulating multiple transcriptional programs...
Organisms can protect themselves against future environmental change. An example is cross-protection...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
Stress response genes and their regulators form networks that underlie drug resistance. These networ...
The transcriptional responses of yeast cells to a wide variety of stress conditions have been studie...
Cells routinely deploy a spectrum of specialized counter-measures to deal with stress. However, a ne...
Stress response genes and their regulators form networks that underlie drug resistance. These networ...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
Stress response genes and their regulators form networks that underlie drug resistance. These networ...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Cellular senescence is a major intermediate step from healthy cells toward tumor cells. By using mic...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Abstract Cells respond to environmental fluctuations by regulating multiple transcriptional programs...
Organisms can protect themselves against future environmental change. An example is cross-protection...