In their natural environment microorganisms encounter changes in substrate availability, involving either nutrient concentrations or nutrient types. They have to adapt to the new conditions in order to survive. We present a model for slow microbial adaptation, involving the synthesis of new enzymes, in response to changes in the availability of substitutable substrates. The model is based on reciprocal (or mutual) inhibition of expression of both the substrate-specific carriers and the associated assimilatory machinery. The inhibition kinetics is derived from the kinetics of synthesizing units. An interesting property of the adaptation model is that the presence of a single limiting resource results in a constant maximum specific substrate ...
A comprehensive model for microbial growth in multiple substrate environment developed by Venkatesh ...
Bacteria in changing environments must constantly adapt to grow and survive. The adaptive response t...
A comprehensive moel is developed based on an optimal strategy describing varied microbial growth ph...
Microbes acclimate to changes in substrate availability by altering the number of transporters on th...
Microbes acclimate to changes in substrate availability by altering the number of transporters on th...
Exposed to changes in their environment, microorganisms will adapt their phenotype, including metabo...
Mathematical models for microbial growth based on reaction kinetics are generally successful in pred...
Cybernetic model assumes that a microorganism is an optimal strategist, sets goals, sub-goals and su...
The specific consumption rate of substrate, as well as the associated specific growth rate, is an es...
Mathematical models which relate the growth rate of a microorganism to a single limiting substrate c...
Mathematical models which utilize standard reaction kinetics to describe microbial growth are genera...
The specific consumption rate of substrate, as well as the associated specific growth rate, is an es...
A mechanistic model was developed, which described the growth of a bacterial colony on an agar mediu...
It is generally observed that the growth yields are greater under substrate-limited conditions than ...
Mathematical models which relate the growth rate of a microorganism to a single limiting substrate c...
A comprehensive model for microbial growth in multiple substrate environment developed by Venkatesh ...
Bacteria in changing environments must constantly adapt to grow and survive. The adaptive response t...
A comprehensive moel is developed based on an optimal strategy describing varied microbial growth ph...
Microbes acclimate to changes in substrate availability by altering the number of transporters on th...
Microbes acclimate to changes in substrate availability by altering the number of transporters on th...
Exposed to changes in their environment, microorganisms will adapt their phenotype, including metabo...
Mathematical models for microbial growth based on reaction kinetics are generally successful in pred...
Cybernetic model assumes that a microorganism is an optimal strategist, sets goals, sub-goals and su...
The specific consumption rate of substrate, as well as the associated specific growth rate, is an es...
Mathematical models which relate the growth rate of a microorganism to a single limiting substrate c...
Mathematical models which utilize standard reaction kinetics to describe microbial growth are genera...
The specific consumption rate of substrate, as well as the associated specific growth rate, is an es...
A mechanistic model was developed, which described the growth of a bacterial colony on an agar mediu...
It is generally observed that the growth yields are greater under substrate-limited conditions than ...
Mathematical models which relate the growth rate of a microorganism to a single limiting substrate c...
A comprehensive model for microbial growth in multiple substrate environment developed by Venkatesh ...
Bacteria in changing environments must constantly adapt to grow and survive. The adaptive response t...
A comprehensive moel is developed based on an optimal strategy describing varied microbial growth ph...