<div><p>Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. These two strategies correspond, respectively, to the use of enzyme-efficient or substrate-efficient metabolic pathways. In reality, fast growth is often associated with wasteful, yield-inefficient metabolism, and a general thermodynamic trade-off between growth rate and biomass yield has been proposed to explain this. We studied growth rate/yield trade-offs by using a novel modeling framework, Enzyme-Flux Cost Minimization (EFCM) and by assuming that the growth rate depends directly on the enzyme investment per rate of biomass production. In a comprehensive mathematical model of core metabolism in <i>E. coli</i>, we screened all element...
Identifying the factors that determine microbial growth rate under various environmental and genetic...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
<div><p>Identifying the factors that determine microbial growth rate under various environmental and...
Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. The...
Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. The...
Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. The...
Living cells react to changes in growth conditions by re-shaping their proteome. This accounts for d...
Living cells react to changes in growth conditions by re-shaping their proteome. This accounts for d...
<div><p>Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capa...
Growth rate and yield are fundamental features of microbial growth. However, we lack a mechanistic a...
Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capacity to ...
A modeling formalism has been developed recently, based on stoichiometry and linear optimization, th...
A modeling formalism has been developed recently, based on stoichiometry and linear optimization, th...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter we d...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Identifying the factors that determine microbial growth rate under various environmental and genetic...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
<div><p>Identifying the factors that determine microbial growth rate under various environmental and...
Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. The...
Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. The...
Microbes may maximize the number of daughter cells per time or per amount of nutrients consumed. The...
Living cells react to changes in growth conditions by re-shaping their proteome. This accounts for d...
Living cells react to changes in growth conditions by re-shaping their proteome. This accounts for d...
<div><p>Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capa...
Growth rate and yield are fundamental features of microbial growth. However, we lack a mechanistic a...
Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capacity to ...
A modeling formalism has been developed recently, based on stoichiometry and linear optimization, th...
A modeling formalism has been developed recently, based on stoichiometry and linear optimization, th...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter we d...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Identifying the factors that determine microbial growth rate under various environmental and genetic...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
<div><p>Identifying the factors that determine microbial growth rate under various environmental and...