The versatility of the yeast experimental model has aided in innumerable ways in the understanding of fundamental cellular functions and has also contributed towards the elucidation of molecular mechanisms underlying several pathological conditions in humans. Genome-wide expression, functional, localization and interaction studies on the yeast Saccharomyces cerevisiae exposed to various stressors have made profound contributions towards the understanding of stress response pathways. Analysis of gene expression data from S. cerevisiae cells indicate that the expression of a common set of genes is altered upon exposure to all the stress conditions examined. This common response to multiple stressors is known as the Environmental stress respon...
Great strides have been made in understanding the evolution of gene regulation by focusing on the bu...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
Defining how organisms respond to environmental change has always been an important step toward unde...
The Saccharomycotina subphylum (budding yeasts) spans 400 million years of evolution and includes sp...
All living cells, including yeast cells, are challenged by different types of stresses in their envi...
Natural environments are dynamic, and organisms must sense and respond to changing conditions. One c...
[[abstract]]Unicellular organisms such as yeasts have evolved mechanisms to respond to environmental...
The Saccharomycotina subphylum (budding yeasts) spans 400 million years of evolution and includes sp...
The baker\u27s yeast, Saccharomyces cerevisiae responds to the cytotoxic effects of elevated tempera...
Living organisms are continuously challenged by changes in their environment that can propagate to s...
The baker\u27s yeast, Saccharomyces cerevisiae responds to the cytotoxic effects of elevated tempera...
We explored genomic expression patterns in the yeast Saccharomyces cerevisiae responding to diverse ...
One intriguing challenge in modern biology is to understand how cells respond to, and distinguish be...
Great strides have been made in understanding the evolution of gene regulation by focusing on the bu...
Great strides have been made in understanding the evolution of gene regulation by focusing on the bu...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...
Defining how organisms respond to environmental change has always been an important step toward unde...
The Saccharomycotina subphylum (budding yeasts) spans 400 million years of evolution and includes sp...
All living cells, including yeast cells, are challenged by different types of stresses in their envi...
Natural environments are dynamic, and organisms must sense and respond to changing conditions. One c...
[[abstract]]Unicellular organisms such as yeasts have evolved mechanisms to respond to environmental...
The Saccharomycotina subphylum (budding yeasts) spans 400 million years of evolution and includes sp...
The baker\u27s yeast, Saccharomyces cerevisiae responds to the cytotoxic effects of elevated tempera...
Living organisms are continuously challenged by changes in their environment that can propagate to s...
The baker\u27s yeast, Saccharomyces cerevisiae responds to the cytotoxic effects of elevated tempera...
We explored genomic expression patterns in the yeast Saccharomyces cerevisiae responding to diverse ...
One intriguing challenge in modern biology is to understand how cells respond to, and distinguish be...
Great strides have been made in understanding the evolution of gene regulation by focusing on the bu...
Great strides have been made in understanding the evolution of gene regulation by focusing on the bu...
Organisms can protect themselves against future environmental change. An example is cross-protection...
Microorganisms evolved adaptive responses to survive stressful challenges in ever-changing environme...