Difference between revisions of "Team:NCKU Tainan/Model"

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                                         even more effective to achieve the optimization parameters in the model.  
 
                                         even more effective to achieve the optimization parameters in the model.  
 
                                         Therefore, we can save time to try and error on doing experiment.
 
                                         Therefore, we can save time to try and error on doing experiment.
                                         After that, we can analyze the rate of production and consumption.  
+
                                         After that, we analyze the rate of production and consumption.  
                                         In this way, we can calculate the amount of carbon dioxide uptake into the Escherichia coli (<i>E.coli</i>) and  
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                                         In this way, we can calculate the amount of carbon dioxide uptake into the  
                                         calculate how many CO<sub>2</sub> can be used in our system.  
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                                        <i>Escherichia coli </i> (<i>E. coli</i>) and  
                                         In addition, we also want to realize how much carbon we can fix.  
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                                         calculate how much CO<sub>2</sub> will be used in our system.  
                                         We have to understand what’s going on in <i>E. coli</i> after uptaking CO<sub>2</sub>.  
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                                         In addition, we also want to realize how much carbon fix in our system.  
                                         Since we integrated non-native carbon fixation pathway into <i>E. coli</i> to let <i>E. coli</i> utilize CO<sub>2</sub>,  
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                                         We have to understand the process in <i>E. coli</i> after uptaking  
                                         we can simplify the CO<sub>2</sub> utilization pathway in engineered <i>E. coli</i> into two parts,  
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                                        CO<sub>2</sub>.  
 +
                                         Since we integrated non-native carbon fixation pathway into <i>E. coli</i> to let  
 +
                                        <i>E. coli</i> utilize CO<sub>2</sub>,  
 +
                                         we can simplify the CO<sub>2</sub> utilization pathway in engineered <i>E. coli</i>  
 +
                                        into two parts,  
 
                                         <a class="link" href="#CO2_uptake">CO<sub>2</sub> uptake</a> and <a class="link" href="#CO2_metabolism">CO<sub>2</sub> metabolism</a>.
 
                                         <a class="link" href="#CO2_uptake">CO<sub>2</sub> uptake</a> and <a class="link" href="#CO2_metabolism">CO<sub>2</sub> metabolism</a>.
 
                                     </p>
 
                                     </p>

Revision as of 05:20, 27 September 2018

Model

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