Difference between revisions of "Team:Uppsala/Improve"

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                           <!-- Here goes the big image to the right -->  
 
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                           <img src="https://static.igem.org/mediawiki/2018/6/6e/T--Uppsala--Austin_Texas-AmilCP.png" id="figure1">
 
                           <img src="https://static.igem.org/mediawiki/2018/6/6e/T--Uppsala--Austin_Texas-AmilCP.png" id="figure1">
                             <p><strong>Figure 1:</strong> The image to the right shows various streak colonies from the original blue chromoprotein, <a href="http://parts.igem.org/Part:BBa_K592009"><strong>BBa_K592009</strong></a>. Both phenotypically blue and clear colonies grew, supporting the hypothesis that the chromoprotein gene is unstable during cell growth, i.e. there is strong selection for cells carrying the resistance plasmid with a mutation that prevents expression of the chromoprotein due to its fitness cost. Plates were streaked by Microbe Hackers 2016 Chromoprotein Team [2]. </p>
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                             <p><strong>Figure 1.</strong> The image to the right shows various streak colonies from the original blue chromoprotein, <a href="http://parts.igem.org/Part:BBa_K592009"><strong>BBa_K592009</strong></a>. Both phenotypically blue and clear colonies grew, supporting the hypothesis that the chromoprotein gene is unstable during cell growth, i.e. there is strong selection for cells carrying the resistance plasmid with a mutation that prevents expression of the chromoprotein due to its fitness cost. Plates were streaked by Microbe Hackers 2016 Chromoprotein Team [2]. </p>
 
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                           <!-- Here goes the big image to the right -->  
 
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                           <img id="figure2" src="https://static.igem.org/mediawiki/2018/1/10/T--Uppsala--Austin_Texas-AmilCP-2.png">
 
                           <img id="figure2" src="https://static.igem.org/mediawiki/2018/1/10/T--Uppsala--Austin_Texas-AmilCP-2.png">
<p><strong>Figure 2:</strong> The image above taken by UT Austin shows the transformation plate of the electroporation of the codon-optimized blue chromoprotein. The blue colony shown was used to make overnight cultures to miniprep and sequence [1]. </p>
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<p><strong>Figure 2.</strong> The image above taken by UT Austin shows the transformation plate of the electroporation of the codon-optimized blue chromoprotein. The blue colony shown was used to make overnight cultures to miniprep and sequence [1]. </p>
 
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                                 <p><strong>Figure 3:</strong> Transformation plate of colonies with the incorporated plasmid containing the codon optimized AmilCP sequence in the pUCIDT backbone.</p>
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                                 <p><strong>Figure 3.</strong> Transformation plate of colonies with the incorporated plasmid containing the codon optimized AmilCP sequence in the pUCIDT backbone.</p>
 
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                                 <p><strong>Figure 4:</strong> Transformation plate of colonies with the incorporated plasmid containing the codon optimized AmilCP sequence in the pUCIDT backbone. Colonies retrieved for the assay are circled.</p>  
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                                 <p><strong>Figure 4.</strong> Transformation plate of colonies with the incorporated plasmid containing the codon optimized AmilCP sequence in the pUCIDT backbone. Colonies retrieved for the assay are circled.</p>  
 
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                             <img class="content-card-img" src="https://static.igem.org/mediawiki/2018/0/09/T--Uppsala--Transformation_Original_IDTbb.jpeg">
 
                             <img class="content-card-img" src="https://static.igem.org/mediawiki/2018/0/09/T--Uppsala--Transformation_Original_IDTbb.jpeg">
 
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                                 <p><strong>Figure 5:</strong> Transformation plate of colonies with the incorporated plasmid containing the Origina lnative AmilCP sequence in the pUCIDT backbone. Colonies retrieved for the assay are circled.</p>
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                                 <p><strong>Figure 5.</strong> Transformation plate of colonies with the incorporated plasmid containing the Origina lnative AmilCP sequence in the pUCIDT backbone. Colonies retrieved for the assay are circled.</p>
 
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                                 <p><strong>Figure 6:</strong> Transformation plate of colonies with the incorporated plasmid containing the Original native AmilCP sequence in the pUCIDT backbone. Colonies retrieved for the assay are circled.</p>  
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                                 <p><strong>Figure 6.</strong> Transformation plate of colonies with the incorporated plasmid containing the Original native AmilCP sequence in the pUCIDT backbone. Colonies retrieved for the assay are circled.</p>  
 
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<img class="content-card-img" src="https://static.igem.org/mediawiki/parts/e/e7/T--Uppsala--10_Gen_IDTbb_ORI_IDT.jpeg">
 
<img class="content-card-img" src="https://static.igem.org/mediawiki/parts/e/e7/T--Uppsala--10_Gen_IDTbb_ORI_IDT.jpeg">
 
</div>
 
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<p><strong>Figure 7:</strong> Results after 10 Generations of growth. Culture pellets marked as IDT have the plasmid with the codon optmized AmilCP sequence and culture pellets market as ORI have the plasmid containing the original native AmilCP sequence.</p>     
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<p><strong>Figure 7.</strong> Results after 10 Generations of growth. Culture pellets marked as IDT have the plasmid with the codon optmized AmilCP sequence and culture pellets market as ORI have the plasmid containing the original native AmilCP sequence.</p>     
 
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Revision as of 18:01, 17 October 2018