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

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                                     </p>
 
                                     </p>
 
                                     <h5 class="question">Prk gene into pSB3K3</h5>
 
                                     <h5 class="question">Prk gene into pSB3K3</h5>
                                     <p class="pcontent">PRK catalyze the reaction of turning Ru5P into RuBP.  
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                                     <p class="pcontent">PRK catalyzes the reaction of turning Ru5P into RuBP.  
 
                                         Not native to the host, RuBP is, nonetheless, toxic to <i>E. coli</i>.  
 
                                         Not native to the host, RuBP is, nonetheless, toxic to <i>E. coli</i>.  
 
                                         We hope that expression of PRK to be lower in the host so we change the backbone of it into pSB3K3.  
 
                                         We hope that expression of PRK to be lower in the host so we change the backbone of it into pSB3K3.  
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                                     <h5 class="question">Transformation</h5>
 
                                     <h5 class="question">Transformation</h5>
 
                                     <p class="pcontent">After the construction of various composite parts,  
 
                                     <p class="pcontent">After the construction of various composite parts,  
                                         we co-trasnform them into three <i>E. coli</i> strains: BL21(DE3), W3110, and W3110(L5T7).  
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                                         we co-transform them into three <i>E. coli</i> strains: BL21(DE3), W3110, and W3110(L5T7).  
 
                                         Since BL21(DE3) and W3110(L5T7) contains T7 polymerase,  
 
                                         Since BL21(DE3) and W3110(L5T7) contains T7 polymerase,  
 
                                         we co-transformed composite parts that contains T7 promoter into these strains.  
 
                                         we co-transformed composite parts that contains T7 promoter into these strains.  
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                                         We then measure the optical intensity (O.D. 600) to characterize the cell growth. At a fixed time interval,  
 
                                         We then measure the optical intensity (O.D. 600) to characterize the cell growth. At a fixed time interval,  
 
                                         we use DNS assay to measure the sugar consumption of the bacteria.  
 
                                         we use DNS assay to measure the sugar consumption of the bacteria.  
                                         By comparing the experiment group to the control group,  
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                                         By comparing the experimental group to the control group,  
                                         we can prove that our strain utilize carbon dioxide as its carbon source.
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                                         we can prove that our engineered strain utilize carbon dioxide as its carbon source.
 
                                     </p>
 
                                     </p>
 
                                 </div>
 
                                 </div>

Revision as of 21:01, 13 October 2018

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