Clonal populations of microbial cells often show a high degree of phenotypic variability under homogeneous conditions. Stochastic fluctuations in the cellular components that determine cellular states can cause two distinct subpopulations, a property called bistability Phenotypic heterogeneity can be readily obtained by interlinking multiple gene regulatory pathways, effectively resulting in a genetic logic-ANTI gate. Although switching between states can occur within the cells' lifetime, cells can also pass their cellular state over to the next generation by a mechanism known as epigenetic inheritance and thus perpetuate the phenotypic state. Importantly, heterogeneous populations can demonstrate increased fitness compared with homogeneous...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Contrary to the traditional view that bacterial populations are clonal, single-cell analysis reveals...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Bet-hedging is an evolutionary theory that describes how risk spreading can increase fitness of a ge...
Bet-hedging is an evolutionary theory that describes how risk spreading can increase fitness of a ge...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Contrary to the traditional view that bacterial populations are clonal, single-cell analysis reveals...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Clonal populations of microbial cells often show a high degree of phenotypic variability under homog...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Microbial communities are continuously exposed to unpredictable changes in their environment. To thr...
Bet-hedging is an evolutionary theory that describes how risk spreading can increase fitness of a ge...
Bet-hedging is an evolutionary theory that describes how risk spreading can increase fitness of a ge...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Bacteria have developed an impressive ability to survive and propagate in highly diverse and changin...
Contrary to the traditional view that bacterial populations are clonal, single-cell analysis reveals...