Appl Microbiol Biotechnol. 2013 Jul;97(14):6189-99. Metabolic flux analysis of Gluconacetobacter xylinus for bacterial cellulose production. Zhong C, Zhang GC, Liu M, et al.
Click on the "GO TO" button to display the flux map.
| ATP production rate Maximum | N/A | -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209 +2.5*R00267+2.5*R08549-R00405+1.5*R00402+2.5*R00342 +2.5*R00214 |
| ATP production rate Minium | N/A | -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209 +2.5*R08549-R00405+1.5*R00402+2.5*R00342 |
| NADPH production rate Maximum | N/A | R02736+R01528+R00267+R00214 |
| NADPH production rate Minium | 72.99 | R02736+R01528 |
| ATP production rate Maximum | N/A | -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209 +2.5*R00267+2.5*R08549-R00405+1.5*R00402+2.5*R00342 +2.5*R00214 |
| ATP production rate Minium | N/A | -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209 +2.5*R08549-R00405+1.5*R00402+2.5*R00342 |
| NADPH production rate Maximum | N/A | R02736+R01528+R00267+R00214 |
| NADPH production rate Minium | 168.38 | R02736+R01528 |
| ATP production rate Maximum | N/A | -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209 +2.5*R00267+2.5*R08549-R00405+1.5*R00402+2.5*R00342 +2.5*R00214 |
| ATP production rate Minium | N/A | -R01786-R04779+2.5*R01061+R01512+R00200+2.5*R00209 +2.5*R08549-R00405+1.5*R00402+2.5*R00342 |
| NADPH production rate Maximum | N/A | R02736+R01528+R00267+R00214 |
| NADPH production rate Minium | 116.5 | R02736+R01528 |
| Growth Condition | |
| Strains | Gluconacetobacter xylinus (CGMCC no. 2955) |
| Genotype | |
| Culture medium | The components of the culture medium were as follows: carbon source (0.833 mol C/L), peptone (10 g/L), yeast extract (7.5 g/L), and disodium phosphate (10 g/L). Mixed carbon source medium contained the same components as the culture medium except the carbon source, which consisted of glucose, fructose, and glycerol with a ratio of 1:1:1 (w/w/w)to a final concentration of 25 g/L. G. xylinus (CGMCC no.2955) was inoculated into 100 mL of inoculum culture medium (using glucose as the carbon source) in a 500 mL flask. |
| Carbon source | D-Glucose |
| Growth rate | |
| Case-specific description | Metabolic network of G.xylinus (CGMCC no. 2955) cultured with glucose as carbon source. |
| Growth Condition | |
| Strains | Gluconacetobacter xylinus (CGMCC no. 2955) |
| Genotype | |
| Culture medium | The components of the culture medium were as follows: carbon source (0.833 mol C/L), peptone (10 g/L), yeast extract (7.5 g/L), and disodium phosphate (10 g/L). Mixed carbon source medium contained the same components as the culture medium except the carbon source, which consisted of glucose, fructose, and glycerol with a ratio of 1:1:1 (w/w/w)to a final concentration of 25 g/L. G. xylinus (CGMCC no.2955) was inoculated into 100 mL of inoculum culture medium (using glucose as the carbon source) in a 500 mL flask. |
| Carbon source | Fructose |
| Growth rate | |
| Case-specific description | Metabolic network of G.xylinus (CGMCC no. 2955) cultured with fructose as carbon source. |
| Growth Condition | |
| Strains | Gluconacetobacter xylinus (CGMCC no. 2955) |
| Genotype | |
| Culture medium | The components of the culture medium were as follows: carbon source (0.833 mol C/L), peptone (10 g/L), yeast extract (7.5 g/L), and disodium phosphate (10 g/L). Mixed carbon source medium contained the same components as the culture medium except the carbon source, which consisted of glucose, fructose, and glycerol with a ratio of 1:1:1 (w/w/w)to a final concentration of 25 g/L. G. xylinus (CGMCC no.2955) was inoculated into 100 mL of inoculum culture medium (using glucose as the carbon source) in a 500 mL flask. |
| Carbon source | Glycerol |
| Growth rate | |
| Case-specific description | Metabolic network of G.xylinus (CGMCC no. 2955) cultured with glycerol as carbon source. |
| Specific Rate | (mmol g-1 h-1) |
| Specific Rate | (mmol g-1 h-1) |
| Specific Rate | (mmol g-1 h-1) |

