Difference between revisions of "Team:Amoy/Notebook/Notebook"

Line 174: Line 174:
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Add 20μl ddH<sub>2</sub>O to solve the dry powder</br>
+
1. Add 20μL ddH<sub>2</sub>O to solve the dry powder.</br>
2. Suck 10μl of plasmid into 50μl of competent cell for transformation</br></p>
+
2. Suck 10μL of plasmid into 50μL of competent cell for transformation.</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/c/cf/Amoy-Notebook_node33-1.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/c/cf/Amoy-Notebook_node33-1.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm</br>
+
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm.</br>
 
5. Plasmid Extraction</br></p>
 
5. Plasmid Extraction</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p"> Plasmid of LacI_RBS_B0034</br></p>
+
<p class="detail_p"> Plasmid of Plac_RBS_B0034</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 194: Line 194:
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Add 20μl ddH<sub>2</sub>O to solve the dry powde</br>
+
1. Add 20μL ddH<sub>2</sub>O to solve the dry powder.</br>
2. Suck 10μl of plasmid into 50μl of competent cell for transformation</br></p>
+
2. Suck 10μL of plasmid into 50μL of competent cell for transformation.</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/1a/Amoy-Notebook_node34-1.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/1a/Amoy-Notebook_node34-1.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm</br>
+
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm.</br>
 
5. Plasmid Extraction</br></p>
 
5. Plasmid Extraction</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p"> Plasmid of Promoter_J23100_RBS_B0030</br></p>
+
<p class="detail_p"> Plasmid of P<sub>J23100</sub>_RBS_B0030</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 417: Line 417:
 
<div style="width: 80%; margin-left: 10%;">
 
<div style="width: 80%; margin-left: 10%;">
 
<p class="detail_h1">Purpose:</br></p>
 
<p class="detail_h1">Purpose:</br></p>
<p class="detail_p">Make connection of gene and terminator</br></p>
+
<p class="detail_p">Ligation of gene_<i>leudh</i> and terminator</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Double enzyme digestion of gene and terminator_B0015</br>
+
1. Double enzyme digestion of gene_<i>leudh</i> and terminator_B0015</br>
2. Electrophoresis analysis of double digested result of plasmid</br>
+
2. Electrophoresis analysis of double digested result of plasmid.</br>
3. Extract double digested gene</br>
+
3. Extract double digested gene_<i>leudh</i>.</br>
4. Cycle purity of digested terminator</br>
+
4. Cycle purity of digested terminator.</br>
5. Link gene with terminator under 16℃ for 8 hours</br>
+
5. Ligate under 16℃ for 8 hours.</br>
 
6. Transformation</br></p>
 
6. Transformation</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/3/34/Amoy-Notebook_node35-1.jpeg" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/3/34/Amoy-Notebook_node35-1.jpeg" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol</br>
+
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
8. Extract the plasmids</br>
+
8. Extract the plasmids.</br>
9. Electrophoresis analysis of plasmids</br></p>
+
9. Electrophoresis analysis of plasmids.</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p">plasmid of gene ldh and terminator</br></p>
+
<p class="detail_p">Plasmid of gene_<i>leudh</i> and terminator_B0015</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 441: Line 441:
 
<div style="width: 80%; margin-left: 10%;">
 
<div style="width: 80%; margin-left: 10%;">
 
<p class="detail_h1">Purpose:</br></p>
 
<p class="detail_h1">Purpose:</br></p>
<p class="detail_p">make connection of gene and terminator</br></p>
+
<p class="detail_p">Ligation of gene_<i>fdh</i> and terminator</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Double enzyme digestion of gene and terminator_B0015</br>
+
1. Double enzyme digestion of gene_<i>fdh</i> and terminator_B0015</br>
2. Electrophoresis analysis of double digested result of plasmid</br>
+
2. Electrophoresis analysis of double digested result of plasmid.</br>
3. Extract double digested gene</br>
+
3. Extract double digested gene_<i>fdh</i>.</br>
4. Cycle purity of digested terminator</br>
+
4. Cycle purity of digested terminator.</br>
5. Link gene with terminator under 16℃ for 8 hours</br>
+
5. Ligate under 16℃ for 8 hours.</br>
 
6. Transformation</br></p>
 
6. Transformation</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/0/01/Amoy-Notebook_Node36_figure1.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/0/01/Amoy-Notebook_Node36_figure1.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol</br>
+
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
8. Extract the plasmids</br>
+
8. Extract the plasmids.</br>
9. Electrophoresis analysis of plasmids</br></p>
+
9. Electrophoresis analysis of plasmids.</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p">plasmid of gene fdh and terminator</br></p>
+
<p class="detail_p">Plasmid of gene_<i>fdh</i> and terminator_B0015</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 465: Line 465:
 
<div style="width: 80%; margin-left: 10%;">
 
<div style="width: 80%; margin-left: 10%;">
 
<p class="detail_h1">Purpose:</br></p>
 
<p class="detail_h1">Purpose:</br></p>
<p class="detail_p">make connection of gene and terminator</br></p>
+
<p class="detail_p">Ligation of gene_<i>leudh</i> and terminator</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Double enzyme digestion of gene and terminator_B1006</br>
+
1. Double enzyme digestion of gene_<i>leudh</i> and terminator_B1006</br>
2. Electrophoresis analysis of double digested result of plasmid</br>
+
2. Electrophoresis analysis of double digested result of plasmid.</br>
3. Extract double digested gene</br>
+
3. Extract double digested gene_<i>leudh</i> and terminator.</br>
4. Cycle purity of digested terminator</br>
+
4. Ligate under 16℃ for 8 hours.</br>
5. Link gene with terminator under 16℃ for 8 hours</br>
+
5. Transformation</br></p>
6. Transformation</br></p>
+
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/c/c1/Amoy-Notebook_node37-1.jpeg" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/c/c1/Amoy-Notebook_node37-1.jpeg" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol</br>
+
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
8. Extract the plasmids</br>
+
7. Extract the plasmids.</br>
9. Electrophoresis analysis of plasmids</br></p>
+
8. Electrophoresis analysis of plasmids.</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p">plasmid of gene ldh and terminator</br></p>
+
<p class="detail_p">Plasmid of gene_<i>leudh</i> and terminator_B1006</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 489: Line 488:
 
<div style="width: 80%; margin-left: 10%;">
 
<div style="width: 80%; margin-left: 10%;">
 
<p class="detail_h1">Purpose:</br></p>
 
<p class="detail_h1">Purpose:</br></p>
<p class="detail_p">make connection of gene and terminator</br></p>
+
<p class="detail_p">Ligation of gene_<i>fdh</i> and terminator</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Double enzyme digestion of gene and terminator_B1006</br>
+
1. Double enzyme digestion of gene_<i>fdh</i> and terminator_B1006</br>
2. Electrophoresis analysis of double digested result of plasmid</br>
+
2. Electrophoresis analysis of double digested result of plasmid.</br>
3. Extract double digested gene</br>
+
3. Extract double digested gene_<i>fdh</i> and terminator.</br>
4. Cycle purity of digested terminator</br>
+
4. Ligate under 16℃ for 8 hours.</br>
5. Link gene with terminator under 16℃ for 8 hours</br>
+
5. Transformation</br></p>
6. Transformation</br></p>
+
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/18/Amoy-Notebook_node38-1.jpeg" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/18/Amoy-Notebook_node38-1.jpeg" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol</br>
+
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
8. Extract the plasmids</br>
+
7. Extract the plasmids.</br>
9. Electrophoresis analysis of plasmids</br></p>
+
8. Electrophoresis analysis of plasmids.</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p">plasmid of gene and terminator</br></p>
+
<p class="detail_p">Plasmid of gene_<i>fdh</i> and terminator_B1006</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 525: Line 523:
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/5/57/Amoy-Notebook_node21-2.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/5/57/Amoy-Notebook_node21-2.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol.</br>
+
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
 
7. Extract the plasmids.</br>
 
7. Extract the plasmids.</br>
 
8. Electrophoresis analysis of plasmids.</br></p>
 
8. Electrophoresis analysis of plasmids.</br></p>
Line 550: Line 548:
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/4/43/Amoy-Notebook_node24-2.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/4/43/Amoy-Notebook_node24-2.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol.</br>
+
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
 
7. Extract the plasmids</br>
 
7. Extract the plasmids</br>
 
8. Electrophoresis analysis of plasmids</br></p>
 
8. Electrophoresis analysis of plasmids</br></p>
Line 576: Line 574:
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/3/3e/Amoy-Notebook_node23-2.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/3/3e/Amoy-Notebook_node23-2.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol.</br>
+
6. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
 
7. Extract the plasmids.</br>
 
7. Extract the plasmids.</br>
 
8. Electrophoresis analysis of plasmids.</br></p>
 
8. Electrophoresis analysis of plasmids.</br></p>
Line 602: Line 600:
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/4/43/Amoy-Notebook_node24-2.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/4/43/Amoy-Notebook_node24-2.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol.</br>
+
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
 
8. Extract the plasmids.</br>
 
8. Extract the plasmids.</br>
 
9. Electrophoresis analysis of plasmids.</br></p>
 
9. Electrophoresis analysis of plasmids.</br></p>
Line 623: Line 621:
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/1f/Amoy-Notebook_Node32_figure1.jpg" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/1f/Amoy-Notebook_Node32_figure1.jpg" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
3. Extract double digested promoter LacI</br>
+
3. Extract double digested Plac</br>
4. Cycle purity of digested rbs_B0032</br>
+
4. Cycle purity of digested RBS_B0032</br>
5. Link promoter with rbs under 16℃ for 8 hours</br>
+
5. Ligate under 16℃ for 8 hours.</br>
6. transformation</br></p>
+
6. Transformation</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/7/7a/Amoy-Notebook_node32-2.jpeg" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/7/7a/Amoy-Notebook_node32-2.jpeg" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
7. Pick 10 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of amp</br>
+
7. Pick 8 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
8. Extract the plasmids</br>
+
8. Extract the plasmids.</br>
9. Electrophoresis analysis of plasmids</br></p>
+
9. Electrophoresis analysis of plasmids.</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/f/fa/Amoy-Notebook_Node42_figure3.png" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/f/fa/Amoy-Notebook_Node42_figure3.png" />
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p"> Plasmid of LacI linked with RBS_B0032</br></p>
+
<p class="detail_p"> Plasmid of Plac linked with RBS_B0032</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 651: Line 649:
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
 
3. Extract double digested products.</br>
 
3. Extract double digested products.</br>
4. Ligate under 16℃ for 8 hours</br>
+
4. Ligate under 16℃ for 8 hours.</br>
 
5. Transformation</br></p>
 
5. Transformation</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/b/b9/Amoy-Notebook_node11-2.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/b/b9/Amoy-Notebook_node11-2.JPG" />
Line 731: Line 729:
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Add 20μl ddH<sub>2</sub>O to solve the dry powder</br>
+
1. Add 20μL ddH<sub>2</sub>O to solve the dry powder.</br>
2. Suck 10μl of plasmid into 50μl of competent cell for transformation</br></p>
+
2. Suck 10μL of plasmid into 50μL of competent cell for transformation.</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/c/cf/Amoy-Notebook_node33-1.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/c/cf/Amoy-Notebook_node33-1.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm</br>
+
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm.</br>
 
5. Plasmid Extraction</br></p>
 
5. Plasmid Extraction</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p"> Plasmid of LacI_RBS_B0034</br></p>
+
<p class="detail_p"> Plasmid of Plac_RBS_B0034</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 751: Line 749:
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Add 20μl ddH<sub>2</sub>O to solve the dry powde</br>
+
1. Add 20μL ddH<sub>2</sub>O to solve the dry powder.</br>
2. Suck 10μl of plasmid into 50μl of competent cell for transformation</br></p>
+
2. Suck 10μL of plasmid into 50μL of competent cell for transformation.</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/1a/Amoy-Notebook_node34-1.JPG" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/1a/Amoy-Notebook_node34-1.JPG" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
 
3. Pick a single colony from the agar plate using a sterile pipette tip. </br>
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm</br>
+
4. Culture at 10ml LB of chloramphenicol for 12h, 37℃, 200rpm.</br>
 
5. Plasmid Extraction</br></p>
 
5. Plasmid Extraction</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p"> Plasmid of Promoter_J23100_RBS_B0030</br></p>
+
<p class="detail_p"> Plasmid of P<sub>J23100</sub>_RBS_B0030</br></p>
 
</div>
 
</div>
 
</div>
 
</div>
Line 768: Line 766:
 
<div style="width: 80%; margin-left: 10%;">
 
<div style="width: 80%; margin-left: 10%;">
 
<p class="detail_h1">Purpose:</br></p>
 
<p class="detail_h1">Purpose:</br></p>
<p class="detail_p">Make connection of promoter and rbs</br></p>
+
<p class="detail_p">Ligation of promoter and RBS</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_h1">Steps:</br></p>
 
<p class="detail_p">
 
<p class="detail_p">
1. Double enzyme digestion of promoter_J23100 and RBS_B0034</br>
+
1. Double enzyme digestion of P<sub>J23100</sub> and RBS_B0034.</br>
2. Cycle purity of digested products</br>
+
2. Cycle purity of digested products.</br>
3. Link promoter with rbs under 16℃ for 8 hours</br>
+
3. Ligate under 16℃ for 8 hours.</br>
 
4. Transformation</br></p>
 
4. Transformation</br></p>
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/18/Amoy-Notebook_node31-1.jpeg" />
 
<img style="width: 60%; margin-right: 40%; margin-top: 10px; margin-bottom: 0px;" src="https://static.igem.org/mediawiki/2015/1/18/Amoy-Notebook_node31-1.jpeg" />
 
<p class="detail_p"></br>
 
<p class="detail_p"></br>
5. Pick 10 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of amp</br>
+
5. Pick 10 single colonies from the agar plate using sterile pipette tips. Put it into 10ml LB of chloramphenicol. Culture at 37℃,200rpm for 12~14 hours.</br>
6. Extract the plasmids</br>
+
6. Extract the plasmids.</br>
7. Electrophoresis analysis of plasmids</br></p>
+
7. Electrophoresis analysis of plasmids.</br></p>
 
<p class="detail_h1">Product:</br></p>
 
<p class="detail_h1">Product:</br></p>
<p class="detail_p">Plasmid of promoter J23100 linked with RBS_B0034</br></p>
+
<p class="detail_p">Plasmid of P<sub>J23100</sub> linked with RBS_B0034</br></p>
 
</div>
 
</div>
 
</div>
 
</div>

Revision as of 17:09, 18 September 2015

Aomy/Project

NOTEBOOK

Initially, they used isolated enzymes, which can be disadvantageous for the reason that enzymes are always destabilized in the isolation and purification process. What's more, the cofactor NADH is rather an expensive raw material, which will enhance the cost of L-tert-leucine production. So scientists introduced whole-cell biocatalysts to L-tert-leucine production. Whole-cell biocatalysts could stabilize enzymes and reduce the addition level of cofactor NADH.

In the path of building our biobricks, we divided the circuits into two modules. One is promoter linked with RBS and the other is gene linked with terminator. The dendrogram below is our experiments detail. Click each bottom for more information.

CONTACT US

Email: igemxmu@gmail.com

Website: 2015.igem.org/Team:Amoy

Address: Xiamen University, No. 422, Siming South Road, Xiamen, Fujian, P.R.China 361005