Difference between revisions of "Team:Paris Bettencourt/Sustainability/Continuity"
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<a href="https://2015.igem.org/Team:Paris_Bettencourt/Modeling">Click here to learn more about the model</a>. | <a href="https://2015.igem.org/Team:Paris_Bettencourt/Modeling">Click here to learn more about the model</a>. | ||
− | <h1 | + | <h1>Results</> |
− | <h2 | + | |
+ | <h2>Construction of the system</h2> | ||
+ | |||
<p>We succesfully assembled a prototype version of this system in the model bacteria <em>Escherichia coli</em>. The genes involved in vitamin production are replaced with fluorescent proteins, allowing for easy monitoring of their production. Our construct contains mCherry as a reporter gene, and two other fluorescent proteins to mimick pathways operons. It also has a phage PhiC31 integration site for subsequent addition of new genes.</p> | <p>We succesfully assembled a prototype version of this system in the model bacteria <em>Escherichia coli</em>. The genes involved in vitamin production are replaced with fluorescent proteins, allowing for easy monitoring of their production. Our construct contains mCherry as a reporter gene, and two other fluorescent proteins to mimick pathways operons. It also has a phage PhiC31 integration site for subsequent addition of new genes.</p> | ||
− | < | + | |
− | <img src="https://static.igem.org/mediawiki/2015/8/8f/PB_colibow_sequence.png" | + | <p></p><img src="https://static.igem.org/mediawiki/2015/8/8f/PB_colibow_sequence.png"/></p> |
− | <p | + | |
+ | <div class="column-left"> | ||
+ | <p>This cassette was constructed by gene synthesis and Gibson assembly and assembled in a self-integrating plasmid vector (Saint-Pierre, 2013). This vector uses the integrase of the phage HK022 to integrate itself in <em>E. coli</em>'s chromosome. This plasmid was electroporated in the bacteria and the HK022 integrase was induced.</p> | ||
+ | |||
+ | <p>To check that the cassette has correctly been integrated in the right locus, we performed an analytical PCR on the whole genome of the transformants, with a set of four primers which allows for amplification of the junction between the vector and the chromosome. | ||
+ | </p> | ||
</div> | </div> | ||
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− | < | + | <div class="column-right"> |
− | + | <img src="https://static.igem.org/mediawiki/2015/a/a7/PB_colibow_integrated.png"/> | |
− | < | + | </div> |
− | + | <div style="clear:both"></div> | |
− | < | + | |
+ | <div class="column-left"> | ||
+ | <img src="https://static.igem.org/mediawiki/2015/5/5b/PB_colibow_proteins.png"/> | ||
+ | </div> | ||
+ | <div class="column-right"> | ||
+ | <p>fluorescent proteins are present </p> | ||
+ | </div> | ||
+ | <div style="clear:both"></div> | ||
+ | |||
+ | <h3>Sequencing of the Lox Array</h3> | ||
+ | |||
<p>To investigate whether unexpected recombination occured within the LoxP sites due to homologous recombination, we performed sequencing on the first part of the integrated cassette, where the Lox Array is. This way we could make sure that it was still intact.</p> | <p>To investigate whether unexpected recombination occured within the LoxP sites due to homologous recombination, we performed sequencing on the first part of the integrated cassette, where the Lox Array is. This way we could make sure that it was still intact.</p> | ||
<h2 id="function-of-the-promoter">Function of the promoter</h2> | <h2 id="function-of-the-promoter">Function of the promoter</h2> | ||
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<li>Nagy et al., 2000. "Cre recombinase: the universal reagent for genome tailoring". Genesis 26 (2): 99–109. </li> | <li>Nagy et al., 2000. "Cre recombinase: the universal reagent for genome tailoring". Genesis 26 (2): 99–109. </li> | ||
<li>Missirlis et al., 2006. "A high-throughput screen identifying sequence and promiscuity characteristics of the loxP spacer region in Cre-mediated recombination". BMC Genomics 7: 73. </li> | <li>Missirlis et al., 2006. "A high-throughput screen identifying sequence and promiscuity characteristics of the loxP spacer region in Cre-mediated recombination". BMC Genomics 7: 73. </li> | ||
+ | <li>Saint-Pierre et al., 2013. "One-step cloning and chromosomal integration of DNA". ACS synthetic biology 20;2(9):537-41.</li> | ||
</ul> | </ul> | ||
Revision as of 17:48, 18 September 2015