Team:Toulouse/Notebook/Protocols

From 2014.igem.org

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<p class="texte"><B> First Step </B>
<p class="texte"><B> First Step </B>
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<B> BOTH PARTS HAVE THE SAME ANTIBIOTIC RESISTANCE </B>
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<br> <B> BOTH PARTS HAVE THE SAME ANTIBIOTIC RESISTANCE </B>
<br> 1) Digestion mix
<br> 1) Digestion mix
<br> For the vector :
<br> For the vector :
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</p>
</p>
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<div class="Article">
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<p class="title1">Checking of the genetic constructions </p>
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    <p>
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<p class="texte">
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  <br/>
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<div class="Sub_title"> Checking of the genetic constructions </div>
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<table width="50%"><tr><td bgColor="#097F09" height="1"></td> </tr></table>
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<br/>
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1) Colony PCR
1) Colony PCR
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<br/>
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<br/>- Then 4°C
<br/>- Then 4°C
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<p class="texte">
2) Analytic digestion
2) Analytic digestion
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- Wait 15 minutes at 37°C and put the mix on a 1% or 2% gel for 30 minutes at 100V.
- Wait 15 minutes at 37°C and put the mix on a 1% or 2% gel for 30 minutes at 100V.
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<p class="texte">
<br/>3) Sequencing
<br/>3) Sequencing
<br/>The sequencing of the genetic constructions was performed by Eurofins Genomics Company by mixing 15µL of pure plasmid solution with 2µL of one primer.
<br/>The sequencing of the genetic constructions was performed by Eurofins Genomics Company by mixing 15µL of pure plasmid solution with 2µL of one primer.
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<p class="title1"> <I>B. subtilis</I> transformation</p>
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<p class="texte">
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<div class="Sub_title"> B. subtilis transformation </div>
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<table width="50%"><tr><td bgColor="#097F09" height="1"></td> </tr></table>
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<br/>Strain: <I>Bacillus subtilis</I> 168.  
<br/>Strain: <I>Bacillus subtilis</I> 168.  
<br/>Plasmid : pSBBS4S given by the Munich University iGEM Team. l’équipe iGEM de l’université de Munich. This plasmid is replicative in <I>E. coli</I> and integrative in <I>Bacillus subtilis</I>.
<br/>Plasmid : pSBBS4S given by the Munich University iGEM Team. l’équipe iGEM de l’université de Munich. This plasmid is replicative in <I>E. coli</I> and integrative in <I>Bacillus subtilis</I>.
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<p class="texte">
<B> Day 0 </B>
<B> Day 0 </B>
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</p>
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<br/>- Streak out the Bacillus strain and plate this on an LB agar plate overnight at 37°C
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- Streak out the Bacillus strain and plate this on an LB agar plate overnight at 37°C
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<p class="texte"><B> Day 1 </B>
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<B> Day 1 </B>
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<br/>- Pick up a nice big colony of <I>B. Subtilis </I> strain and drop it in 2 ml of completed 1x MC
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- Pick up a nice big colony of <I>B. Subtilis </I> strain and drop it in 2 ml of completed 1x MC
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<br/>
<br/>
- Grow at 37°C for 5 hours
- Grow at 37°C for 5 hours
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<p class="texte">
<b> Preparation of solutions </b>
<b> Preparation of solutions </b>
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<p> <I> <br> 300 mM Tri-Na Citrate:</I>
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<I> <br> 300 mM Tri-Na Citrate:</I>
<br>- 0.88 g Tri-Na Citrate
<br>- 0.88 g Tri-Na Citrate
<br>- 10mL MQ water
<br>- 10mL MQ water
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<p class="texte">
<I> <br> Ferric NH4 citrate:</I>
<I> <br> Ferric NH4 citrate:</I>
<br>- 0.22g Ferric NH4
<br>- 0.22g Ferric NH4
<br>- 10mL MQ water
<br>- 10mL MQ water
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<I> <br> 10x Competence Medium </I>
<I> <br> 10x Competence Medium </I>
<br> For 10mL:
<br> For 10mL:
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<br>The complete mixture should be dissolved in 10 ml. First add 5 ml milliQ water and mix. When everything is dissolved add MQ water till 10 ml. Filter sterilize the complete mixture and store at -20°C.
<br>The complete mixture should be dissolved in 10 ml. First add 5 ml milliQ water and mix. When everything is dissolved add MQ water till 10 ml. Filter sterilize the complete mixture and store at -20°C.
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<p class="texte">
<I> <br> 1x Competence Medium </I>
<I> <br> 1x Competence Medium </I>
<br>- 1.8 mL MQ water
<br>- 1.8 mL MQ water
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<br>The complete mixture should be dissolved in 100 ml. First add 50 ml milliQ water and mix. When everything is dissolved add MQ water till 100 ml. Filter sterilize the complete mixture and store at -20°C.
<br>The complete mixture should be dissolved in 100 ml. First add 50 ml milliQ water and mix. When everything is dissolved add MQ water till 100 ml. Filter sterilize the complete mixture and store at -20°C.
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<p class="title1"> Checking of the genetic constructions after plasmid integration in <I>Bacillus subtilis</I> </p>
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<p class="texte">
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<div class="Article">
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    <p>
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  <br/>
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<div class="Sub_title"> Checking of the genetic constructions after plasmid integration in <I>Bacillus subtilis</I> </div>
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<table width="50%"><tr><td bgColor="#097F09" height="1"></td> </tr></table>
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<br>Test of the pSBBS4S plasmid integration in Bacillus subtilis genome on the threonine site:
<br>Test of the pSBBS4S plasmid integration in Bacillus subtilis genome on the threonine site:
<br>- Plate the transformed Bacillus strain on a selective medium (LB + spectinomycin) overnight  
<br>- Plate the transformed Bacillus strain on a selective medium (LB + spectinomycin) overnight  
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Moreover, a colony PCR can be performed with the same protocol as previously presented. The used primers are VFBS and VRBS.
Moreover, a colony PCR can be performed with the same protocol as previously presented. The used primers are VFBS and VRBS.
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<p class="title1">Final Tests</p>
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<div class="Article">
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<p class="texte">
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<div class="Sub_title"> Final Tests </div>
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<table width="50%"><tr><td bgColor="#097F09" height="1"></td> </tr></table>
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<B> Chemotaxis test </B>
<B> Chemotaxis test </B>
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<p><TABLE BORDER="1">
 
<br>Many chemotaxis tests exist such as plate tests or capillary tests. We tried all of them and we decided to optimize the « Capillary essay » from Imperial College 2011 iGEM team.
<br>Many chemotaxis tests exist such as plate tests or capillary tests. We tried all of them and we decided to optimize the « Capillary essay » from Imperial College 2011 iGEM team.
<br>- Prepare the bacteria in LB medium so they reach an OD between 0.5 and 0.6 (exponential growth phase). This step takes about 5 hours.
<br>- Prepare the bacteria in LB medium so they reach an OD between 0.5 and 0.6 (exponential growth phase). This step takes about 5 hours.
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<br>- The plates are then incubated overnight at 37°C.
<br>- The plates are then incubated overnight at 37°C.
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<B> Binding test </B>
<B> Binding test </B>
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<P><I><br>CBB (Chitin Binding Buffer):</I>
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<p class="texte"><I><br>CBB (Chitin Binding Buffer):</I>
<br>- 500 mM NaCl
<br>- 500 mM NaCl
<br>- 20 mM Tris-HCl
<br>- 20 mM Tris-HCl
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<br>- 0,05% Triton X-100, 25°C, pH=8
<br>- 0,05% Triton X-100, 25°C, pH=8
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<P><I><br>Column activation:</I>
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<p class="texte">
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<I><br>Column activation:</I>
<br>- Vortex the beads  
<br>- Vortex the beads  
<br>- Put 50 µL of beads in a 1.5mL centrifuge tube
<br>- Put 50 µL of beads in a 1.5mL centrifuge tube
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<br>- Repeat the wash
<br>- Repeat the wash
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<P><I><br>Bacterial fixation on the chitin beads:</I>
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<p class="texte"><I><br>Bacterial fixation on the chitin beads:</I>
<br>- Add 200 µL of bacteria solution (105 bactéria/mL)to the washed beads  
<br>- Add 200 µL of bacteria solution (105 bactéria/mL)to the washed beads  
<br>- Shake during 1h at 4°C
<br>- Shake during 1h at 4°C
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<br>- Add 500 µL of CBB to recover the beads directly
<br>- Add 500 µL of CBB to recover the beads directly
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<P><I><br> Bacteria count:</I>
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<p class="texte"><I><br> Bacteria count:</I>
<br>- Make different dilutions : 10-1, 10-3, 10-5 of the first bacterial culture and spread on LA plates
<br>- Make different dilutions : 10-1, 10-3, 10-5 of the first bacterial culture and spread on LA plates
<br>- Make different dilutions : 1, 10-2, 10-4 of washings (A and B) and of the beads in CBB medium and spread on LA plates
<br>- Make different dilutions : 1, 10-2, 10-4 of washings (A and B) and of the beads in CBB medium and spread on LA plates
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<br>- Count colonies on different plates
<br>- Count colonies on different plates
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<p class="texte">
<B> Fungicide test: anti-fungal activities </B>
<B> Fungicide test: anti-fungal activities </B>
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<p>
 
<br>CAUTION : all the lab equipment must be desinfected before the manipulations with the fungi.  
<br>CAUTION : all the lab equipment must be desinfected before the manipulations with the fungi.  
<br>Three different funguss strains were used : <I>Aspergillus brasiliensis, Aspergillus nidulans, Trichoderma reesei</I>
<br>Three different funguss strains were used : <I>Aspergillus brasiliensis, Aspergillus nidulans, Trichoderma reesei</I>

Revision as of 12:18, 9 October 2014