Difference between revisions of "Team:Newcastle/Results"

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<h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Characterisation</h2>
 
<h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Characterisation</h2>
  <p><b>Qualitative assay.</b> Due to time constraints only a preliminary qualitative assay was carried out. Co-cultures of Psicose detector, processor unit and sfGFP reporter(BBa_K2205015) were inoculated and grown overnight in LB+chloramphenicol (12,5ng/ul). The day after the cultures were diluted at OD600: 0,1 and mixed together to obtain co-cultures with ratio 1:1:13 (detector:processor:reporter). The samples were supplemented with 33.22 mM Psicose to induce the expression of quorum sensing molecules and eventually achieve the reporter visualisation (Figures 8). </p>
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  <p> A preliminary qualitative assay was carried out as an initial test for this construct. Co-cultures of Psicose detector, processor unit and sfGFP reporter(BBa_K2205015) were inoculated and grown overnight in LB+chloramphenicol (12,5ng/ul).  
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          </br></br>
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The day after the cultures were diluted at OD600: 0,1 and mixed together to obtain co-cultures with ratio 1:1:13 (detector:processor:reporter). The samples were supplemented with 33.22 mM Psicose to induce the expression of quorum sensing molecules and eventually achieve the reporter visualisation (Figures 8). </p>
  
 
<img src="https://static.igem.org/mediawiki/2017/f/f2/T--Newcastle--BB_framework_framework_green.jpg" width="360px"/> </br>
 
<img src="https://static.igem.org/mediawiki/2017/f/f2/T--Newcastle--BB_framework_framework_green.jpg" width="360px"/> </br>
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           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Conclusions and Future Work </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Conclusions and Future Work </h2>
           <p>Due to time constraints resulted from synthesis delays, we lacked the time to co-culture this part with the Sensynova platform's multiple modules in order for the creation of variants. The part <a href="http://parts.igem.org/Part:BBa_K2205023"> BBa_K2205023</a>, the Evry Pasir-Sclay's psicose biosensor system as the detecting unit of the platform, has been submitted to the iGEM registry for future work and characterisation by future teams.</p>
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           <p>The results demonstrate that further characterisation needs to be conducted in order to optimise the psicose biosensor however, due to time constraints resulted from synthesis delays, we lacked the time to be able to do so.
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          </br></br>
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We also lacked the time to co-culture this part with the Sensynova platform's multiple modules in order for the creation of variants for the Evry Paris-Saclay. The part <a href="http://parts.igem.org/Part:BBa_K2205023"> BBa_K2205023</a>, the Evry Paris-Saclay's psicose biosensor system as the detecting unit of the platform, has been submitted to the iGEM registry for future work and characterisation by future teams.</p>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> References </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> References </h2>

Revision as of 17:42, 31 October 2017

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Our Experimental Results



Below is a diagram of our Sensynova Framework. Clicking on each part of the framework (e.g. detector modules) links to the relevant results.

Alternatively, at the bottom of this page are tabs which will show you results for every part of the project



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

Reporter Modules



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