Difference between revisions of "Team:Newcastle/Results"

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          <p>To test for the presence of formaldehyde, and to demonstrate this part works, larger cultures were grown following the aforementioned protocols, and the cells harvested, washed and lysed by sonication. 0 µl, 20 µl, 200 µl and 2 ml of Glyphosate at 10 mg/L concentration was added to the cell lysate and incubated at 37°C. Every 2.5 hours the lysate was tested for the presence of formaldehyde with commercial <a href="http://www.sigmaaldrich.com/catalog/product/sial/37072?lang=en&region=GB">formaldehyde testing strips</a>.</p>
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        <p> To test for the presence of formaldehyde, and to demonstrate this part works, we added 0 µl, 50 µl and 200 µl of Sarcosine at 0.9 g/50 ml (Figure 8) to cultures that had been induced and the cells harvested, washed and lysed by sonication. The cultures were incubated at 37C and every 2.5 hours the lysate was tested for the presence of formaldehyde with commercial <a href="http://www.sigmaaldrich.com/catalog/product/sial/37072?lang=en&region=GB">formaldehyde testing strips</a>.
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          <p>After 8 hours of testing and left overnight, none of the samples had produced formaldehyde according to the testing strips. The testing strips detect a minimum formaldehyde concentration of 10 mg/L, so it was possible that formaldehyde had been produced but that there was too little of it to detect with the strips.</p>
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        <p> We decided to add Sarcosine instead of Glyphosate to determine whether the part was working. Everything was repeated the same but instead we added 0 µl, 50 µl and 200 µl of Sarcosine at 0.9 g/50 ml (Figure 8).
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<div class="SOX"><img src="https://static.igem.org/mediawiki/2017/4/4b/T--Newcastle--SOX_testing.JPG" width="30%" style="background-color:white; margin-right: 2%; margin-bottom: 2%;" alt="" class="img-fluid border border-dark rounded mx-auto d-block"/>
 
<div class="SOX"><img src="https://static.igem.org/mediawiki/2017/4/4b/T--Newcastle--SOX_testing.JPG" width="30%" style="background-color:white; margin-right: 2%; margin-bottom: 2%;" alt="" class="img-fluid border border-dark rounded mx-auto d-block"/>
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<p>This shows SOX works as expected, however there is leaky expression as formaldehyde is produced when no IPTG is added.</p>
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<p>This shows SOX works as expected, however there is slight leaky expression as formaldehyde is produced when no IPTG is added.</p>
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          <p>We decided to test our part with glyphosate to determine the efficiency of the native C-P Lyase pathway that degrades glyphosate to sarcoine. Everything was repeated as above, but we added 0 µl, 20 µl, 200 µl and 2 ml of Glyphosate at 10 mg/L concentration to the cell lysate and incubated at 37°C. Every 2.5 hours the lysate was tested with the same formaldehyde strips as before.</p>
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          <p>After 8 hours of testing and left overnight, none of the samples had produced formaldehyde according to the testing strips. The testing strips detect a minimum formaldehyde concentration of 10 mg/L, so it was possible that formaldehyde had been produced but that there was too little of it to detect with the strips.</p>
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Revision as of 19:51, 1 November 2017

spacefill

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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