Genome-scale metabolic models (GSMM) have been extensively applied for a wide variety of organisms. However, for plants genome-scale modeling is still in its infancy. It has been successfully developed for Arabidopsis in the last few years. In this study we appraise the existing GSMM for Arabidopsis by computing biomass accumulation using flux balance analysis (FBA) and attempt to outline potential applications for horticultural crops in the future. The predicted growth rates for the Poolman et al. (2009) and Dal’Molin et al. (2010) model were quite similar, despite different carbon sources were provided (glucose and sucrose,100 mmol/g*h DW). The exchange fluxes for respiration in nonphotosynthetic cells confirmed that plants prefer NH3 in ...
Previously we have used a genome scale model of rice metabolism to describe how metabolism reconfigu...
<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...
Genome-scale metabolic models (GSMM) have been extensively applied for a wide variety of organisms. ...
Plants are the most abundant biomass on Earth. Understanding plant metabolism represents a signific...
AbstractAs it is becoming easier and faster to generate various types of high-throughput data, one w...
The biomass composition represented in constraint-based metabolic models is a key component for pred...
The number of genome-scale metabolic models has been rising quickly in recent years, and the scope o...
Recent advances in genome sequencing technology have enabled the elucidation of complete genome sequ...
Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resources. ...
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...
Genome-scale metabolic network models have been successfully used to describe metabolism in a variet...
The decline of available fossil fuel reserves has triggered worldwide efforts to develop alternative...
We describe the construction and analysis of a genome-scale metabolic model of Arabidopsis (Arabidop...
Previously we have used a genome scale model of rice metabolism to describe how metabolism reconfigu...
<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...
Genome-scale metabolic models (GSMM) have been extensively applied for a wide variety of organisms. ...
Plants are the most abundant biomass on Earth. Understanding plant metabolism represents a signific...
AbstractAs it is becoming easier and faster to generate various types of high-throughput data, one w...
The biomass composition represented in constraint-based metabolic models is a key component for pred...
The number of genome-scale metabolic models has been rising quickly in recent years, and the scope o...
Recent advances in genome sequencing technology have enabled the elucidation of complete genome sequ...
Plant metabolism is highly adapted in response to its surrounding for acquiring limiting resources. ...
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...
Genome-scale metabolic network models have been successfully used to describe metabolism in a variet...
The decline of available fossil fuel reserves has triggered worldwide efforts to develop alternative...
We describe the construction and analysis of a genome-scale metabolic model of Arabidopsis (Arabidop...
Previously we have used a genome scale model of rice metabolism to describe how metabolism reconfigu...
<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...