Team:INSA-Lyon/Results

From 2014.igem.org

(Difference between revisions)
Line 155: Line 155:
<p>
<p>
To adress biosafety issues linked with GMOs, we worked on destroying our bacteria after letting them grow in a biofilm. As the captured metal is extracellular and Curli proteins are very resistant to environmental changes, live bacteria are not needed for our biofilter. Our goal was to obtain a biomaterial made out of modified Curli able to chelate nickel.  
To adress biosafety issues linked with GMOs, we worked on destroying our bacteria after letting them grow in a biofilm. As the captured metal is extracellular and Curli proteins are very resistant to environmental changes, live bacteria are not needed for our biofilter. Our goal was to obtain a biomaterial made out of modified Curli able to chelate nickel.  
-
</p> <br/>
+
</p> </br>
<p>
<p>
-
To find the best way to degrade bacteria and DNA, the following protocol was used to test the influence of UV light and temperature separately : <br/>
+
To find the best way to degrade bacteria and DNA, the following protocol was used to test the influence of UV light and temperature separately : </br>
<ul>
<ul>
<li> Wells containing M63 cultures of strain 227 were put under UV light or at 60 or 70°C for different lengths of time. Well contents were then gradually transferred into Eppendorf and diluted (100, 300, 900 and 2700 fold).</li>  
<li> Wells containing M63 cultures of strain 227 were put under UV light or at 60 or 70°C for different lengths of time. Well contents were then gradually transferred into Eppendorf and diluted (100, 300, 900 and 2700 fold).</li>  
Line 165: Line 165:
</ul>
</ul>
</p>
</p>
 +
</br>
<p><h6> UV light influence </h6></p><br/>
<p><h6> UV light influence </h6></p><br/>
-
<p><div align="center"><i>LB plates</i></div></p></br>
+
<p><div align="center"><i>LB plates</i></div></p>
<p><div align="center"><table>
<p><div align="center"><table>
<tr>
<tr>
-
   <td><img src="https://static.igem.org/mediawiki/2014/e/ed/PlatesUV1.png" alt="control plate" height="150 px"/></td>
+
   <td><img src="https://static.igem.org/mediawiki/2014/e/ed/PlatesUV1.png" alt="control plate" height="200 px"/></td>
-
   <td><img src="https://static.igem.org/mediawiki/2014/5/58/PlatesUV2.png" alt="5 min" height="150 px"/></td>
+
   <td><img src="https://static.igem.org/mediawiki/2014/5/58/PlatesUV2.png" alt="5 min" height="200 px"/></td>
-
   <td><img src="https://static.igem.org/mediawiki/2014/5/54/PlatesUV3.png" alt="10min" height="150 px"/></td>
+
   <td><img src="https://static.igem.org/mediawiki/2014/5/54/PlatesUV3.png" alt="10min" height="200 px"/></td>
</tr>
</tr>
<tr>
<tr>
Line 184: Line 185:
<table>
<table>
<tr>
<tr>
-
   <td><img src="https://static.igem.org/mediawiki/2014/6/6a/PlatesUV4.png" alt="15min" height="150 px"/></td>
+
   <td><img src="https://static.igem.org/mediawiki/2014/6/6a/PlatesUV4.png" alt="15min" height="200 px"/></td>
-
   <td><img src="https://static.igem.org/mediawiki/2014/b/bb/PlatesUV5.png" alt="20 min" height="150 px"/></td>
+
   <td><img src="https://static.igem.org/mediawiki/2014/b/bb/PlatesUV5.png" alt="20 min" height="200 px"/></td>
</tr>
</tr>
<tr>
<tr>
Line 191: Line 192:
   <td><div align="center"><figcaption>20 min UV</figcaption></td></div>
   <td><div align="center"><figcaption>20 min UV</figcaption></td></div>
</br>
</br>
-
</table></div>
+
</table></div></br>
No bacteria grew on LB plate after 15 minutes UV light exposure.</br>&rArr; <b>Bacterian growth can be stopped this way. </b></p></br>
No bacteria grew on LB plate after 15 minutes UV light exposure.</br>&rArr; <b>Bacterian growth can be stopped this way. </b></p></br>
Line 200: Line 201:
</tr>
</tr>
<tr>
<tr>
-
   <td><div align="justify"><figcaption> PCR gel after UV time exposure </figcaption></div></td>
+
   <td><div align="center"><figcaption> PCR gel after UV time exposure </figcaption></div></td>
</tr>
</tr>
</table> </div></br> Bacterian DNA seemed to be degraded after 10 min UV light exposure.</br>&rArr; <b>In consequence, UV light can be used to destroy DNA.</b> </p></br>
</table> </div></br> Bacterian DNA seemed to be degraded after 10 min UV light exposure.</br>&rArr; <b>In consequence, UV light can be used to destroy DNA.</b> </p></br>
Line 225: Line 226:
-
<p><div align="center"><i>LB plates</i></div></p></br>
+
<p><div align="center"><i>LB plates</i></div></p>
<p><div align="center"><table>
<p><div align="center"><table>
<tr>
<tr>
   <td><img src="https://static.igem.org/mediawiki/2014/5/52/PlatesTemp60_1.png" alt="Control plate" width="200 px"/></td>
   <td><img src="https://static.igem.org/mediawiki/2014/5/52/PlatesTemp60_1.png" alt="Control plate" width="200 px"/></td>
   <td><img src="https://static.igem.org/mediawiki/2014/3/35/PlatesTemp60_2.png" alt="15 min" width="200 px"/></td>
   <td><img src="https://static.igem.org/mediawiki/2014/3/35/PlatesTemp60_2.png" alt="15 min" width="200 px"/></td>
-
  <td><img src="https://static.igem.org/mediawiki/2014/c/ce/PlatesTemp60_3.png" alt=30min" width="200 px"/></td>
 
-
  <td><img src="https://static.igem.org/mediawiki/2014/a/a2/PlatesTemp60_4.png" alt="45min" width="200 px"/></td>
 
</tr>
</tr>
<tr>
<tr>
   <td><div align="center"><figcaption>Control plate</figcaption></div></td>
   <td><div align="center"><figcaption>Control plate</figcaption></div></td>
   <td><div align="center"><figcaption>15 min 60°C</figcaption></div></td>
   <td><div align="center"><figcaption>15 min 60°C</figcaption></div></td>
 +
</tr>
 +
<tr>
 +
  <td><img src="https://static.igem.org/mediawiki/2014/c/ce/PlatesTemp60_3.png" alt=30min" width="200 px"/></td>
 +
  <td><img src="https://static.igem.org/mediawiki/2014/a/a2/PlatesTemp60_4.png" alt="45min" width="200 px"/></td>
 +
</tr>
 +
<tr>
   <td><div align="center"><figcaption>30 min 60°C</figcaption></div></td>
   <td><div align="center"><figcaption>30 min 60°C</figcaption></div></td>
   <td><div align="center"><figcaption>45 min 60°C</figcaption></div></td>
   <td><div align="center"><figcaption>45 min 60°C</figcaption></div></td>
Line 245: Line 250:
-
<p><div align="center"><i>LB plates</i></div></p></br>
+
<p><div align="center"><i>LB plates</i></div></p>
<p><div align="center"><table>
<p><div align="center"><table>
<tr>
<tr>
   <td><img src="https://static.igem.org/mediawiki/2014/2/2e/70_control.jpg" alt="Control plate" width="200 px"/></td>
   <td><img src="https://static.igem.org/mediawiki/2014/2/2e/70_control.jpg" alt="Control plate" width="200 px"/></td>
   <td><img src="https://static.igem.org/mediawiki/2014/1/19/70_15_min.jpg" alt="15 min" width="200 px"/></td>
   <td><img src="https://static.igem.org/mediawiki/2014/1/19/70_15_min.jpg" alt="15 min" width="200 px"/></td>
-
  <td><img src="https://static.igem.org/mediawiki/2014/a/a0/70_30_min.jpg" alt=30min" width="200 px"/></td>
 
-
  <td><img src=https://static.igem.org/mediawiki/2014/d/d6/70_45_min.jpg alt=45min" width="200 px"/></td>
 
   </tr>
   </tr>
<tr>
<tr>
   <td><div align="center"><figcaption>Control plate</figcaption></div></td>
   <td><div align="center"><figcaption>Control plate</figcaption></div></td>
   <td><div align="center"><figcaption>15 min 70°C</figcaption></div></td>
   <td><div align="center"><figcaption>15 min 70°C</figcaption></div></td>
 +
</tr>
 +
<tr>
 +
  <td><img src="https://static.igem.org/mediawiki/2014/a/a0/70_30_min.jpg" alt=30min" width="200 px"/></td>
 +
  <td><img src=https://static.igem.org/mediawiki/2014/d/d6/70_45_min.jpg alt=45min" width="200 px"/></td>
 +
  </tr>
 +
<tr>
   <td><div align="center"><figcaption>30 min 70°C</figcaption></div></td>
   <td><div align="center"><figcaption>30 min 70°C</figcaption></div></td>
   <td><div align="center"><figcaption>45 min 70°C</figcaption></div></td>
   <td><div align="center"><figcaption>45 min 70°C</figcaption></div></td>

Revision as of 00:44, 18 October 2014

Curly'on - IGEM 2014 INSA-LYON

  • Curli characterization


  • Nickel chelation


  • Survival after UV and high temperature exposure


  • Promoter optimization and characterization