Difference between revisions of "Team:Newcastle/Results"

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<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/6/62/--T--Newcastle--MP--Fim_Red_Plates.jpeg"/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/6/62/--T--Newcastle--MP--Fim_Red_Plates.jpeg"/>
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<center><b>Figure 4:</b> <!--- Insert image name between tags. ---->
 
<center><b>Figure 4:</b> <!--- Insert image name between tags. ---->
  Patches of the Fim Switch transformants.  Patch number 6 shows the correct red colour which indicates expression of the eforRed chromoprotein.</center>
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  Patches of the Fim Switch transformants.  Patch number 6 shows the correct red colour which indicates expression of the eforRed chromoprotein.</center></p>
 
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The red patch was cultured in LB chloramphenicol overnight and the plasmid DNA extracted by miniprep.  The plasmid was digested with restriction enzymes XbaI and PstI.  The image in Figure 5 shows the DNA bands from the digested Fim switch plasmid.<br/><br/>
 
The red patch was cultured in LB chloramphenicol overnight and the plasmid DNA extracted by miniprep.  The plasmid was digested with restriction enzymes XbaI and PstI.  The image in Figure 5 shows the DNA bands from the digested Fim switch plasmid.<br/><br/>
<img class="FIM" style="width:40%" src="https://static.igem.org/mediawiki/2017/f/fd/--T--Newcastle--MP--Restriction_Digest.png"/><br/>
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<img class="FIM" style="width:40%" src="https://static.igem.org/mediawiki/2017/f/fd/--T--Newcastle--MP--Restriction_Digest.png"/><br/></p>
<b>Figure 5: </b> <!--- Insert image name between tags. ---->
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Restriction digestion of the Fim switch plasmid to confirm successful integration into the iGEM pSB1C3 backbone.  The Fim switch plasmid (Lane 1) was digested with XbaI and PstI with expected band sizes of (2840 bp and 2044 bp).  The pSB1C3 plasmid (Lane 2) containing sfGFP as a control was also digested with XbaI and PstI with expected band sizes of (811 bp and 2044 bp).<br/><br/>
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<center><b>Figure 5: </b> <!--- Insert image name between tags. ---->
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Restriction digestion of the Fim switch plasmid to confirm successful integration into the iGEM pSB1C3 backbone.  The Fim switch plasmid (Lane 1) was digested with XbaI and PstI with expected band sizes of (2840 bp and 2044 bp).  The pSB1C3 plasmid (Lane 2) containing sfGFP as a control was also digested with XbaI and PstI with expected band sizes of (811 bp and 2044 bp).</center></p>
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The Fim switch insert is 2882 bp in length which makes performing standard short sequencing reads challenging as multiple reactions are required to completely sequence the entire part.  To overcome this we used our in-house Illumina MiSEQ to completely sequence the entire plasmid.  Following quality control analysis the sequence was assembled and shown to be a match to the expected Fim switch part.<br/><br/>
 
The Fim switch insert is 2882 bp in length which makes performing standard short sequencing reads challenging as multiple reactions are required to completely sequence the entire part.  To overcome this we used our in-house Illumina MiSEQ to completely sequence the entire plasmid.  Following quality control analysis the sequence was assembled and shown to be a match to the expected Fim switch part.<br/><br/>
 
A problem we found with the Fim switch was that a subset of the colonies were prematurely switching from red to white.  This is likely due to a low level of leaky expression of the <i>fimE</i> gene which then inverts the promoter region upstream of the eforRed gene.  A single white colony was picked and cultured for use in downstream testing as a control as the switching of the promoter should express the <i>rhlI</i> gene and therefor produce the C4 quorum sensing molecule.<br/><br/>
 
A problem we found with the Fim switch was that a subset of the colonies were prematurely switching from red to white.  This is likely due to a low level of leaky expression of the <i>fimE</i> gene which then inverts the promoter region upstream of the eforRed gene.  A single white colony was picked and cultured for use in downstream testing as a control as the switching of the promoter should express the <i>rhlI</i> gene and therefor produce the C4 quorum sensing molecule.<br/><br/>

Revision as of 20:37, 31 October 2017

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Our Experimental Results



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Framework

Framework Chassis

Biochemical Adaptor

Target

Detector Modules

Multicellular Framework Testing

C12 HSL: Connector 1

Processor Modules

Framework in Cell Free Protein Synthesis Systems

C4 HSL: Connector 2

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