Difference between revisions of "Team:Pasteur Paris/Microbiology week10"

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         <a href="#exp9"><h4>  158. Miniprep of C2 v2 (TOP 10) and B1 v2 (TOP 10 ) </h4></a><br/>  
 
         <a href="#exp9"><h4>  158. Miniprep of C2 v2 (TOP 10) and B1 v2 (TOP 10 ) </h4></a><br/>  
 
         <a href="#exp10"><h4>  159. Miniprep preculture of C1 v2 in pET 43.1a(+) </h4></a><br/>  
 
         <a href="#exp10"><h4>  159. Miniprep preculture of C1 v2 in pET 43.1a(+) </h4></a><br/>  
         <a href="#exp11"><h4>  160. Preparation of 10 aliquots of carbenicillin at 50 ng&#8260;m </h4></a><br/>
+
         <a href="#exp11"><h4>  160. Preparation of 10 aliquots of carbenicillin at 50 mg&#8260;m </h4></a><br/>
 
             <a href="#exp12"><h4>  161. Electrophoresis of the PCR done on the 8<sup>th</sup> of August with A1&#8260;A2&#8260;D1&#8260;D2 </h4></a><br/>
 
             <a href="#exp12"><h4>  161. Electrophoresis of the PCR done on the 8<sup>th</sup> of August with A1&#8260;A2&#8260;D1&#8260;D2 </h4></a><br/>
 
         <a href="#exp13"><h4>  162. Transformation of A1&#8260;A2&#8260;D1&#8260;D2 in TOP 10 </h4></a><br/>
 
         <a href="#exp13"><h4>  162. Transformation of A1&#8260;A2&#8260;D1&#8260;D2 in TOP 10 </h4></a><br/>
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         <a href="#exp15"><h4>  164. Miniprep of C1 v2 (culture from the 9<sup></sup> of August) </h4></a><br/>  
 
         <a href="#exp15"><h4>  164. Miniprep of C1 v2 (culture from the 9<sup></sup> of August) </h4></a><br/>  
 
             <a href="#exp16"><h4>  165. Digestion of C1 v2 before electrophoresis </h4></a><br/>  
 
             <a href="#exp16"><h4>  165. Digestion of C1 v2 before electrophoresis </h4></a><br/>  
             <a href="#exp17"><h4>  166. Digestion of pET 43.1 (a+) with XbaI and HindIII </h4></a><br/>  
+
             <a href="#exp17"><h4>  166. Digestion of pET 43.1 (a+) with Xba I and Hind III </h4></a><br/>  
 
             <a href="#exp18"><h4>  167. Electrophoresis and gel extraction </h4></a><br/>  
 
             <a href="#exp18"><h4>  167. Electrophoresis and gel extraction </h4></a><br/>  
 
             <a href="#exp19"><h4>  168. Electrophoresis of C1 digested </h4></a><br/>
 
             <a href="#exp19"><h4>  168. Electrophoresis of C1 digested </h4></a><br/>
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             <a href="#exp23"><h4>  172. Ligation of A1&#8260;A2&#8260;D1&#8260;D2 in TOPO </h4></a><br/>
 
             <a href="#exp23"><h4>  172. Ligation of A1&#8260;A2&#8260;D1&#8260;D2 in TOPO </h4></a><br/>
 
             <a href="#exp24"><h4>  173. Transformation of A1&#8260;A2&#8260;D1&#8260;D2 with TOPO in TOP 10 competent cells </h4></a><br/>
 
             <a href="#exp24"><h4>  173. Transformation of A1&#8260;A2&#8260;D1&#8260;D2 with TOPO in TOP 10 competent cells </h4></a><br/>
             <a href="#exp25"><h4>  174. Transformation of B1 and C2 in BL21DE3 </h4></a><br/>
+
             <a href="#exp25"><h4>  174. Transformation of B1 v2 and C2 v2 in BL21DE3 </h4></a><br/>
 
             <a href="#exp26"><h4>  175. Dosage of digested pET 43.1 (a+) </h4></a><br/>
 
             <a href="#exp26"><h4>  175. Dosage of digested pET 43.1 (a+) </h4></a><br/>
             <a href="#exp27"><h4>  176. Transformation of C2 and B1 in pET 43.1a(+) and DH3&#945; </h4></a><br/>
+
             <a href="#exp27"><h4>  176. Transformation of C2 v2 and B1 v2 in pET 43.1a(+) and DH3&#945; </h4></a><br/>
 
</p>
 
</p>
 
     <p><h3><B>August 11, 2016:</B></h3></p>
 
     <p><h3><B>August 11, 2016:</B></h3></p>
 
     <p>
 
     <p>
         <a href="#exp28"><h4>  177. Absorbance of precultures C2 (1, 2, 3) and B1 (1, 2, 16) </h4></a><br/>  
+
         <a href="#exp28"><h4>  177. Absorbance of precultures C2 v2(1, 2, 3) and B1 v2 (1, 2, 16) </h4></a><br/>  
 
         <a href="#exp29"><h4>  178. Dephosphorylation of pET 43.1a(+) digested on the 10<sup>th</sup> of August </h4></a><br/>  
 
         <a href="#exp29"><h4>  178. Dephosphorylation of pET 43.1a(+) digested on the 10<sup>th</sup> of August </h4></a><br/>  
         <a href="#exp30"><h4>  179. Miniprep of B1&#8260;E1&#8260;E2 in TOPO </h4></a><br/>  
+
         <a href="#exp30"><h4>  179. Miniprep of B1 v2 &#8260;E1&#8260;E2 in TOPO </h4></a><br/>  
         <a href="#exp31"><h4>  180. Transformation of B1 colony 8 and C2 colony 16 in pET 43.1 (a+) and in DH 3&#945;  </h4></a><br/>  
+
         <a href="#exp31"><h4>  180. Transformation of B1 v2 colony 8 and C2 v2 colony 16 in pET 43.1 (a+) and in DH 3&#945;  </h4></a><br/>  
 
             <a href="#exp32"><h4>  181. Precultures of B1 v2 and C2 v2 </h4></a><br/>  
 
             <a href="#exp32"><h4>  181. Precultures of B1 v2 and C2 v2 </h4></a><br/>  
             <a href="#exp33"><h4>  182. Digestion of pET 43.1 (a+) with XbaI and HindIII </h4></a><br/>  
+
             <a href="#exp33"><h4>  182. Digestion of pET 43.1 (a+) with Xba I and Hind III </h4></a><br/>  
 
</p>
 
</p>
 
     <p><B><h3> August 12, 2016:</B></h3></p>
 
     <p><B><h3> August 12, 2016:</B></h3></p>
 
     <p>
 
     <p>
         <a href="#exp34"><h4>  183. Miniprep from precultures of B2&#8260;E1&#8260;E2 in TOPO </h4></a><br/>  
+
         <a href="#exp34"><h4>  183. Miniprep from precultures of B2 v2&#8260;E1&#8260;E2 in TOPO </h4></a><br/>  
             <a href="#exp35"><h4>  184. Digestion of inserts B2&#8260;E1&#8260;E2 with XbaI and HindIII </h4></a><br/>  
+
             <a href="#exp35"><h4>  184. Digestion of inserts B2 v2&#8260;E1&#8260;E2 with XbaI and HindIII </h4></a><br/>  
             <a href="#exp36"><h4>  185. Culture of C2 and B1 in 1 l of LB  </h4></a><br/>  
+
             <a href="#exp36"><h4>  185. Culture of C2 v2 and B1 v2 in 1 l of LB  </h4></a><br/>  
             <a href="#exp37"><h4>  186. Agarose gel to analyse digestion of pET 43.1 (a+) done on the 11<sup>th</sup> of August </h4></a><br/>  
+
             <a href="#exp37"><h4>  186. Agarose gel to analyze digestion of pET 43.1 (a+) done on the 11<sup>th</sup> of August </h4></a><br/>  
 
</p>
 
</p>
 
      
 
      
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                   &bull; Swing bucket centrifuge (JOUAN GR41)<br />
 
                   &bull; Swing bucket centrifuge (JOUAN GR41)<br />
 
                   &bull; Colonies of C2 v2 and B1 v2 <br />
 
                   &bull; Colonies of C2 v2 and B1 v2 <br />
                   &bull; Carbenicillin at 50 mg&#8260;ml <br />
+
                   &bull; carbenicillin at 50 mg&#8260;ml <br />
 
                   &bull; LB medium <br />
 
                   &bull; LB medium <br />
 
                   &bull; Microbiology equipment (type of incubator, Bunsen burner, water bath, etc… Follow this <a href="https://2016.igem.org/Team:Pasteur_Paris/Science">link</a>)
 
                   &bull; Microbiology equipment (type of incubator, Bunsen burner, water bath, etc… Follow this <a href="https://2016.igem.org/Team:Pasteur_Paris/Science">link</a>)
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         1. In a 50 ml falcon, put 48 ml of LB and 48 &#956;l of carbenicillin. <br />
 
         1. In a 50 ml falcon, put 48 ml of LB and 48 &#956;l of carbenicillin. <br />
 
               2. For B1 v2 : <br />
 
               2. For B1 v2 : <br />
&emsp; 2.a Prepare 13 eppendorfs of 1.5 ml in which add 1 ml of the previous mix. <br />
+
&emsp; 2.a Prepare 13 Eppendorfs of 1.5 ml in which add 1 ml of the previous mix. <br />
 
&emsp; 2.b Take with a toothpick colonies on the petri dish. <br />
 
&emsp; 2.b Take with a toothpick colonies on the petri dish. <br />
 
&emsp; 2.c Place the toothpick in a tube. <br />
 
&emsp; 2.c Place the toothpick in a tube. <br />
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                     <tbody>
 
                     <tbody>
 
                           <tr>
 
                           <tr>
                             <td align="center"; valign="center"><strong><p>XbaI</p></strong></td>
+
                             <td align="center"; valign="center"><strong><p>Xba I</p></strong></td>
 
                             <td align="center"; valign="center"> 30 </td>
 
                             <td align="center"; valign="center"> 30 </td>
 
                           </tr>
 
                           </tr>
 
                           <tr>
 
                           <tr>
                             <td align="center"; valign="center"><strong><p>HindIII</p></strong></td>
+
                             <td align="center"; valign="center"><strong><p>Hind III</p></strong></td>
 
                             <td align="center"; valign="center"> 30 </td>
 
                             <td align="center"; valign="center"> 30 </td>
 
                           </tr>
 
                           </tr>
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                           </tr>
 
                           </tr>
 
                           <tr>
 
                           <tr>
                             <td align="center"; valign="center"><strong><p>Distilled water</p></strong></td>
+
                             <td align="center"; valign="center"><strong><p>Distilled H<sub>2</sub>O</p></strong></td>
 
                             <td align="center"; valign="center"> 90 </td>
 
                             <td align="center"; valign="center"> 90 </td>
 
                           </tr>
 
                           </tr>
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                           &bull; Microbiology equipment (type of incubator, Bunsen burner, water bath, etc… Follow this <ahref="https://2016.igem.org/Team:Pasteur_Paris/Science">link</a>) <br />
 
                           &bull; Microbiology equipment (type of incubator, Bunsen burner, water bath, etc… Follow this <ahref="https://2016.igem.org/Team:Pasteur_Paris/Science">link</a>) <br />
 
                           &bull; Colonies B2, E1 and E2 <br />
 
                           &bull; Colonies B2, E1 and E2 <br />
                           &bull; Electrophoresis cuve <br />
+
                           &bull; Electrophoresis chamber <br />
                           &bull; TAE 1 X <br />
+
                           &bull; TAE 1X <br />
                           &bull; BET <br/><br />
+
                           &bull; Ethidium bromide drops (EB) <br/><br />
 
                                     <h6><U>Method :</U></h6>
 
                                     <h6><U>Method :</U></h6>
         1. Make a gel with 1.4 g of agarose, 200 ml of TAE 1 X and 4 droplets of BET. <br />
+
         1. Make a gel with 1.4 g of agarose, 200 ml of TAE 1X and 4 droplets of EB. <br />
         2. Prepare the samples with 30 &#181;l of digested mix and 6 &#181;l of ladder. <br />
+
         2. Prepare the samples with 30 &#181;l of digested mix and 6 &#181;l of Gene ruler (Thermofisher)ladder. <br />
 
                 3. Follow the deposit table : <br /><br />
 
                 3. Follow the deposit table : <br /><br />
 
Ladder &#124; &#216; &#124; B2 (1) &#124; B2 (2) &#124; B2 (3) &#124; B2 (4) &#124; B2 (5) &#124; B2 (6) &#124; B2 (7) &#124; B2 (8) &#124; B2 (9) &#124; B2 (10) &#124; &#216; &#124; E1 (1) &#124; E1 (2) &#124; E1 (3) &#124; E1 (4) &#124; E1 (5) &#124; &#216; &#124; &#216; &#124; ladder  &#124; E1 (6) &#124; E1 (7) &#124; E1 (8) &#124; E1 (9) &#124; E1 (10) &#124; &#216; &#124; E2 (1)  &#124; E2 (2) &#124; E2 (3) &#124; E2 (4) &#124; E2 (5) &#124; E2 (6) &#124; E2 (7) &#124; E2 (8) &#124; E2 (9) &#124; E2 (10) &#124; &#216; &#124; &#216; <br/>
 
Ladder &#124; &#216; &#124; B2 (1) &#124; B2 (2) &#124; B2 (3) &#124; B2 (4) &#124; B2 (5) &#124; B2 (6) &#124; B2 (7) &#124; B2 (8) &#124; B2 (9) &#124; B2 (10) &#124; &#216; &#124; E1 (1) &#124; E1 (2) &#124; E1 (3) &#124; E1 (4) &#124; E1 (5) &#124; &#216; &#124; &#216; &#124; ladder  &#124; E1 (6) &#124; E1 (7) &#124; E1 (8) &#124; E1 (9) &#124; E1 (10) &#124; &#216; &#124; E2 (1)  &#124; E2 (2) &#124; E2 (3) &#124; E2 (4) &#124; E2 (5) &#124; E2 (6) &#124; E2 (7) &#124; E2 (8) &#124; E2 (9) &#124; E2 (10) &#124; &#216; &#124; &#216; <br/>
        4. Launch the electrophoresis 20 minutes at 50 V, then 45 minutes at 130 V. <br /><br />
+
        4. Launch the electrophoresis for 20 minutes at 50 V, then 45 minutes at 130 V. <br /><br />
 
                     <h6><U>Results :</U></h6>
 
                     <h6><U>Results :</U></h6>
 
<center><img src = "https://static.igem.org/mediawiki/2016/c/cf/Week_10_152Electrophoresis_with_the_results_of_digestion.jpg"; alt "Gel of the results of digestion"/>  
 
<center><img src = "https://static.igem.org/mediawiki/2016/c/cf/Week_10_152Electrophoresis_with_the_results_of_digestion.jpg"; alt "Gel of the results of digestion"/>  
Line 419: Line 419:
 
                 &bull; Takara enzyme <br />
 
                 &bull; Takara enzyme <br />
 
                 &bull; Primers S and AS <br />
 
                 &bull; Primers S and AS <br />
                 &bull; dNTP <br />
+
                 &bull; dNTP mix 10 mM <br />
                 &bull; Buffer 6 X <br />
+
                 &bull; Tak Ex Buffer 6X <br />
                 &bull; Distilled water <br />
+
                 &bull; Distilled H<sub>2</sub>O <br />
 
                 &bull; MgCl<sub>2</sub> <br /><br />
 
                 &bull; MgCl<sub>2</sub> <br /><br />
 
           <h6><U>Method :</U></h6>
 
           <h6><U>Method :</U></h6>
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                           </tr>
 
                           </tr>
 
                           <tr>
 
                           <tr>
                             <td align="center"; valign="center"><strong><p> dNTP (&#181;l) </p></strong></td>
+
                             <td align="center"; valign="center"><strong><p> dNTPs (&#181;l) </p></strong></td>
 
                             <td align="center"; valign="center"> 15 </td>
 
                             <td align="center"; valign="center"> 15 </td>
 
                             <td align="center"; valign="center"> 15 </td>
 
                             <td align="center"; valign="center"> 15 </td>
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<h6><U>Method :</U></h6>
 
<h6><U>Method :</U></h6>
 
Follow the Qiagen gel extraction kit steps with the gel :<br />
 
Follow the Qiagen gel extraction kit steps with the gel :<br />
&emsp; A1 : m &#61; 122 mg<br />
+
&emsp; A1 : m &#61; 122 mg<br />
 
&emsp; A2 : m  &#61; 153 mg<br />
 
&emsp; A2 : m  &#61; 153 mg<br />
 
&emsp; D1 : m  &#61; 120 mg<br />
 
&emsp; D1 : m  &#61; 120 mg<br />

Revision as of 14:53, 19 October 2016