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Metabolomics is a powerful tool for the identification of genetic targets for bioprocess optimisation. However, in most cases, only the biosynthetic pathway directed to product formation is analysed, limiting the identification of these targets. Some studies have used untargeted metabolomics, allowi...
2023-08-31 | MTBLS6667 | MetaboLights
Sustainable agriculture requires locally adapted varieties that produce nutritious food with limited agricultural inputs. Genome engineering represents a viable approach to develop cultivars that fulfill these criteria. For example, the red Hassawi rice, a native landrace of Saudi Arabia, tolerates ...
2023-12-14 | MTBLS864 | MetaboLights
Ethylene glycol is a potential feedstock for next-generation biorefineries, as it can be derived from both plastic waste and carbon dioxide. The synthetic D-threose-dependent glycolaldehyde assimilation (STEGA) pathway, which is orthogonal to central metabolism of Escherichia coli, was recently cons...
2026-07-15 | MTBLS15050 | MetaboLights
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013). Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
2024-09-02 | BIOMD0000000471 | BioModels
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013). Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
2024-09-02 | BIOMD0000000472 | BioModels
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013). Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
2024-09-02 | BIOMD0000000469 | BioModels
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013). Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
2024-09-02 | BIOMD0000000470 | BioModels
Kieran Smallbone & Pedro Mendes. Large-Scale Metabolic Models: From Reconstruction to Differential Equations. Industrial Biotechnology 9, 4 (2013). Genome-scale kinetic models of metabolism are important for rational design of the metabolic engineering required for industrial biotechnology applicat...
2024-09-02 | BIOMD0000000473 | BioModels
Reconstructed mutants of yeast by inverse metabolic engineering were characterized by fermentation physiology and tools from systems biology. Six reconstructed mutants of yeast were grown on aerobic batch with galactose as carbon source
ORGANISM(S): Saccharomyces cerevisiae 
Soybean (Glycine max) seeds are an important source of seed storage compounds, including protein, oil, and sugar used for food, feed, chemical, and biofuel production. We assessed detailed temporal transcriptional and metabolic changes in developing soybean embryos to gain a systems biology view of ...
ORGANISM(S): Glycine max 
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