Microbial research generally focuses on clonal populations. However, bacterial cells with identical genotypes frequently display different phenotypes under identical conditions. This microbial cell individuality is receiving increasing attention in the literature because of its impact on cellular differentiation, survival under selective conditions, and the interaction of pathogens with their hosts. It is becoming clear that stochasticity in gene expression in conjunction with the architecture of the gene network that underlies the cellular processes can generate phenotypic variation. An important regulatory mechanism is the so-called positive feedback, in which a system reinforces its own response, for instance by stimulating the productio...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
For a long time, bacterial populations were regarded as being uniform with respect to the phys-iolog...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
For a long time, bacterial populations were regarded as being uniform with respect to the phys-iolog...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...
Bistable switches occur in regulatory networks that can exist in two distinct stable states. Such ne...