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<p>The FBA model allows us to run quick simulations on the growth of the E. coli on various environmental conditions [source]. Below is a specific simulation with just FBA, assuming the E. coli was growing in aerobic conditions on various carbon sources, all at the maximum flux of -10 mM/(gram of DW * hr). </p> | <p>The FBA model allows us to run quick simulations on the growth of the E. coli on various environmental conditions [source]. Below is a specific simulation with just FBA, assuming the E. coli was growing in aerobic conditions on various carbon sources, all at the maximum flux of -10 mM/(gram of DW * hr). </p> | ||
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<p>The yield was predicted through maximizing the fluxes of reactions ATP synthase (with 4 protons per ATP) and both polyphosphate kinases. </p> | <p>The yield was predicted through maximizing the fluxes of reactions ATP synthase (with 4 protons per ATP) and both polyphosphate kinases. </p> | ||
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<img src = "https://static.igem.org/mediawiki/2018/b/b9/T--RHIT--MetModParam.JPG" style="width:75%"><br /> | <img src = "https://static.igem.org/mediawiki/2018/b/b9/T--RHIT--MetModParam.JPG" style="width:75%"><br /> | ||
Table 2. Theoretical ATP Production of E.coli (1366 model) growing on different media. | Table 2. Theoretical ATP Production of E.coli (1366 model) growing on different media. | ||
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Table 3. Conversion of growth flux to doubling time | Table 3. Conversion of growth flux to doubling time | ||
<img src = "" style="width:50%"> | <img src = "" style="width:50%"> |
Revision as of 21:09, 31 July 2018