The biomass composition represented in constraint-based metabolic models is a key component for predicting cellular metabolism using flux balance analysis (FBA). Despite major advances in analytical technologies, it is often challenging to obtain a detailed composition of all major biomass components experimentally. Studies examining the influence of the biomass composition on the predictions of metabolic models have so far mostly been done on models of microorganisms. Little is known about the impact of varying biomass composition on flux prediction in FBA models of plants, whose metabolism is very versatile and complex because of the presence of multiple subcellular compartments. Also, the published metabolic models of plants differ in si...
Source-sink interactions describe the relationship between different plant organs and the division o...
Plants are the most abundant biomass on Earth. Understanding plant metabolism represents a signific...
The biomass equation is a critical component in genome-scale metabolic models (GEMs): it is used as ...
The biomass composition represented in constraint-based metabolic models is a key component for pred...
The biomass composition represented in constraint-based metabolic models is a key component for pred...
Flux-balance modeling of plant metabolic networks provides an important complement to (13)C-based me...
Genome-scale metabolic models (GSMM) have been extensively applied for a wide variety of organisms. ...
Flux is a key measure of the metabolic phenotype. Recently, complete (genome-scale) metabolic networ...
Flux balance analysis (FBA) of plant metabolism is an established method for predicting metabolic fl...
A stoichiometric model was developed for the application of metabolic flux balance analysis (FBA) wh...
<p>Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resource...
<p>Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resource...
<p>Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resource...
Steady-state metabolic flux analysis (MFA) is an experimental approach that allows the measurement o...
Steady-state (13)C metabolic flux analysis (MFA) is currently the experimental method of choice for ...
Source-sink interactions describe the relationship between different plant organs and the division o...
Plants are the most abundant biomass on Earth. Understanding plant metabolism represents a signific...
The biomass equation is a critical component in genome-scale metabolic models (GEMs): it is used as ...
The biomass composition represented in constraint-based metabolic models is a key component for pred...
The biomass composition represented in constraint-based metabolic models is a key component for pred...
Flux-balance modeling of plant metabolic networks provides an important complement to (13)C-based me...
Genome-scale metabolic models (GSMM) have been extensively applied for a wide variety of organisms. ...
Flux is a key measure of the metabolic phenotype. Recently, complete (genome-scale) metabolic networ...
Flux balance analysis (FBA) of plant metabolism is an established method for predicting metabolic fl...
A stoichiometric model was developed for the application of metabolic flux balance analysis (FBA) wh...
<p>Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resource...
<p>Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resource...
<p>Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resource...
Steady-state metabolic flux analysis (MFA) is an experimental approach that allows the measurement o...
Steady-state (13)C metabolic flux analysis (MFA) is currently the experimental method of choice for ...
Source-sink interactions describe the relationship between different plant organs and the division o...
Plants are the most abundant biomass on Earth. Understanding plant metabolism represents a signific...
The biomass equation is a critical component in genome-scale metabolic models (GEMs): it is used as ...