Growth rate is a near-universal selective pressure across microbial species. High growth rates require hundreds of metabolic enzymes, each with different nonlinear kinetics, to be precisely tuned within the bounds set by physicochemical constraints. Yet, the metabolic behaviour of many species is characterized by simple relations between growth rate, enzyme expression levels and metabolic rates. We asked if this simplicity could be the outcome of optimisation by evolution. Indeed, when the growth rate is maximized—in a static environment under mass-conservation and enzyme expression constraints—we prove mathematically that the resulting optimal metabolic flux distribution is described by a limited number of subnetworks, known as Elementary ...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
<div><p>High-throughput data generation and genome-scale stoichiometric models have greatly facilita...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
This thesis, called Elementary approaches to microbial growth rate maximisation, reports on a theore...
Microbial cells evolved a remarkable ability to adapt to environmental conditions, or to withstand o...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Although the network topology of metabolism is well known, understanding the principles that govern ...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
Although the network topology of metabolism is well known, understanding the principles that govern ...
Although the network topology of metabolism is well known, understanding the principles that govern ...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
<div><p>High-throughput data generation and genome-scale stoichiometric models have greatly facilita...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
This thesis, called Elementary approaches to microbial growth rate maximisation, reports on a theore...
Microbial cells evolved a remarkable ability to adapt to environmental conditions, or to withstand o...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Although the network topology of metabolism is well known, understanding the principles that govern ...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
Although the network topology of metabolism is well known, understanding the principles that govern ...
Although the network topology of metabolism is well known, understanding the principles that govern ...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
<div><p>High-throughput data generation and genome-scale stoichiometric models have greatly facilita...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...