Some bacteria, such as Bacillus subtilis, withstand starvation by forming dormant spores that revive when nutrients become available. Although sporulation and spore revival jointly determine survival in fluctuating environments, the relationship between them has been unclear. Here we show that these two processes are linked by a phenotypic "memory" that arises from a carry-over of molecules from the vegetative cell into the spore. By imaging life histories of individual B. subtilis cells using fluorescent reporters, we demonstrate that sporulation timing controls nutrient-induced spore revival. Alanine dehydrogenase contributes to spore memory and controls alanine-induced outgrowth, thereby coupling a spore's revival capacity to the gene ex...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
ABSTRACT Bacillus subtilis cells can mount a number of responses to nutritional deprivation but ulti...
Cellular differentiation is a crucial feature of developmental processes in diverse organisms. Endos...
Quality-quantity tradeoffs govern the production of propagules across taxa and can explain variabili...
SummaryUpon starvation, the bacterium Bacillus subtilis enters the process of sporulation, lasting s...
Bacillus subtilis forms dormant spores upon nutrient depletion. Under favorable environmental condit...
ABSTRACT Bacterial spores, despite being metabolically dormant, possess the remarkable capacity to d...
Bacillus subtilis forms dormant spores upon nutrient depletion. Under favorable environmental condit...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
SummaryMicroorganisms can facilitate their survival in stressful environments by entering a state of...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
Bacillus subtilis spores can reactivate their metabolism through germination upon contact with germi...
Upon nutritional limitation, the bacterium Bacillus subtilis has the capability to enter the irrever...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
ABSTRACT Bacillus subtilis cells can mount a number of responses to nutritional deprivation but ulti...
Cellular differentiation is a crucial feature of developmental processes in diverse organisms. Endos...
Quality-quantity tradeoffs govern the production of propagules across taxa and can explain variabili...
SummaryUpon starvation, the bacterium Bacillus subtilis enters the process of sporulation, lasting s...
Bacillus subtilis forms dormant spores upon nutrient depletion. Under favorable environmental condit...
ABSTRACT Bacterial spores, despite being metabolically dormant, possess the remarkable capacity to d...
Bacillus subtilis forms dormant spores upon nutrient depletion. Under favorable environmental condit...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
SummaryMicroorganisms can facilitate their survival in stressful environments by entering a state of...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
Bacillus subtilis spores can reactivate their metabolism through germination upon contact with germi...
Upon nutritional limitation, the bacterium Bacillus subtilis has the capability to enter the irrever...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
ABSTRACT Bacillus subtilis cells can mount a number of responses to nutritional deprivation but ulti...