Diploid budding yeast (Saccharomyces cerevisiae) can adopt one of several alternative differentiation fates in response to nutrient limitation, and each of these fates provides distinct biological functions. When different strain backgrounds are taken into account, these various fates occur in response to similar environmental cues, are regulated by the same signal transduction pathways, and share many of the same master regulators. I propose that the relationships between fate choice, environmental cues and signaling pathways are not Boolean, but involve graded levels of signals, pathway activation and master-regulator activity. In the absence of large differences between environmental cues, small differences in the concentration of cues m...
AbstractThe survival of cells relies on their ability to respond specifically to diverse environment...
Quorum sensing is a well-described mechanism of intercellular signalling among bacteria, which invol...
Delineating the strategies by which cells contend with combinatorial changing environments is crucia...
Yeast colonies are, alongside to bacterial biofilms, multicellular communities formed by unicellular...
A major challenge for cells lies in their ability to detect, respond and adapt to changing environme...
AbstractIn the budding yeast, a large fraction of genes is coordinately regulated with growth rate. ...
<div><p>Molecular signaling networks are ubiquitous across life and likely evolved to allow organism...
<div><p>Chemical signaling between organisms is a ubiquitous and evolutionarily dynamic process that...
Fungal species exhibit diverse behaviors when presented with extracellular challenges. Pathogenic fu...
Heterotrophic organisms rely on the ingestion of organic molecules or nutrients from the environment...
Yeasts are unicellular organisms, but on a solid substrate they are capable of forming complex organ...
Molecular signaling networks are ubiquitous across life and likely evolved to allow organisms to sen...
As the adage says, variety is the spice of life, and despite our best attempts, cells, even those wi...
Microbes can engage in social interactions ranging from cooperation to warfare. Biofilms are structu...
Chemical signaling between organisms is a ubiquitous and evolutionarily dynamic process that helps t...
AbstractThe survival of cells relies on their ability to respond specifically to diverse environment...
Quorum sensing is a well-described mechanism of intercellular signalling among bacteria, which invol...
Delineating the strategies by which cells contend with combinatorial changing environments is crucia...
Yeast colonies are, alongside to bacterial biofilms, multicellular communities formed by unicellular...
A major challenge for cells lies in their ability to detect, respond and adapt to changing environme...
AbstractIn the budding yeast, a large fraction of genes is coordinately regulated with growth rate. ...
<div><p>Molecular signaling networks are ubiquitous across life and likely evolved to allow organism...
<div><p>Chemical signaling between organisms is a ubiquitous and evolutionarily dynamic process that...
Fungal species exhibit diverse behaviors when presented with extracellular challenges. Pathogenic fu...
Heterotrophic organisms rely on the ingestion of organic molecules or nutrients from the environment...
Yeasts are unicellular organisms, but on a solid substrate they are capable of forming complex organ...
Molecular signaling networks are ubiquitous across life and likely evolved to allow organisms to sen...
As the adage says, variety is the spice of life, and despite our best attempts, cells, even those wi...
Microbes can engage in social interactions ranging from cooperation to warfare. Biofilms are structu...
Chemical signaling between organisms is a ubiquitous and evolutionarily dynamic process that helps t...
AbstractThe survival of cells relies on their ability to respond specifically to diverse environment...
Quorum sensing is a well-described mechanism of intercellular signalling among bacteria, which invol...
Delineating the strategies by which cells contend with combinatorial changing environments is crucia...