Team:Tianjin/Notebook
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- | <td width="100%" bgcolor="#FFED97"><h1 class="STYLE33"><a name="1" id="1"></a><span class=" | + | <td width="100%" bgcolor="#FFED97"><h1 class="STYLE33"><a name="1" id="1"></a><span class="STYLE48">1.Genomic</span></h1> |
- | <h2 class=" | + | <h2 class="STYLE78">1.1 Extract genome</h2> |
<p class="STYLE33">Add absolute ethyl alcohol to Buffer GD and Buffer PW before using them.</p> | <p class="STYLE33">Add absolute ethyl alcohol to Buffer GD and Buffer PW before using them.</p> | ||
<p class="STYLE33">(1)Obtain 1~5ml bacterium sample in centrifuge tube, centrifuge at 10000rpm for 1 min and remove the supernatant. </p> | <p class="STYLE33">(1)Obtain 1~5ml bacterium sample in centrifuge tube, centrifuge at 10000rpm for 1 min and remove the supernatant. </p> | ||
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<p class="STYLE33">(11)Transfer the Spin Column to a clean centrifuge tube, add 50~200μl Buffer TE to the middle of column membrane, place it at room temperature for 2~5 min, centrifuge at 12000rpm for 2 min and collect the solution to the centrifuge tube.</p> | <p class="STYLE33">(11)Transfer the Spin Column to a clean centrifuge tube, add 50~200μl Buffer TE to the middle of column membrane, place it at room temperature for 2~5 min, centrifuge at 12000rpm for 2 min and collect the solution to the centrifuge tube.</p> | ||
<p class="STYLE33">(12)Detect the concentration of DNA.</p> | <p class="STYLE33">(12)Detect the concentration of DNA.</p> | ||
- | <h2 class=" | + | <h2 class="STYLE78">1.2 PCR</h2> |
<p class="STYLE33">1. Make up a master mix of everything into eachPCR tube. </p> | <p class="STYLE33">1. Make up a master mix of everything into eachPCR tube. </p> | ||
<table width="100%" border="0" cellspacing="0" cellpadding="0"> | <table width="100%" border="0" cellspacing="0" cellpadding="0"> | ||
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72°C for 30seconds<br /> | 72°C for 30seconds<br /> | ||
Final extension: 72°C for 10 min</p> | Final extension: 72°C for 10 min</p> | ||
- | <h1 class="STYLE33"><a name="2" id="2"></a><span class=" | + | <h1 class="STYLE33"><a name="2" id="2"></a><span class="STYLE48">2.Vector</span></h1> |
- | <h2 class=" | + | <h2 class="STYLE78">2.1 Restriction Enzyme Digestion</h2> |
<p align="left" class="STYLE33">To check if the two selected restriction enzymes can perform effective catalysis in the same solution<br /> | <p align="left" class="STYLE33">To check if the two selected restriction enzymes can perform effective catalysis in the same solution<br /> | ||
1. Mix DNA solution with the suitable amount of the master mix.</p> | 1. Mix DNA solution with the suitable amount of the master mix.</p> | ||
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<p align="left" class="STYLE33">2. Pipette up and down in the EP tube.<br /> | <p align="left" class="STYLE33">2. Pipette up and down in the EP tube.<br /> | ||
3. Incubate: 37°C for 30-40 min</p> | 3. Incubate: 37°C for 30-40 min</p> | ||
- | <h2 class=" | + | <h2 class="STYLE78">2.2 Purification or Gel Extraction of DNA</h2> |
- | <h3 class=" | + | <h3 class="STYLE78">2.2.1 Purification </h3> |
<p class="STYLE33">Add 60ml ethanol (96-100%) to Buffer PW before use (see bottle label for volume). All centrifuge steps are in a conventional tabletop microcentrifuge at room temperature (15-25°C).</p> | <p class="STYLE33">Add 60ml ethanol (96-100%) to Buffer PW before use (see bottle label for volume). All centrifuge steps are in a conventional tabletop microcentrifuge at room temperature (15-25°C).</p> | ||
<p class="STYLE33">1. Column equilibration: add 500ul Buffer BL to the Spin Column CB2. Centrifuge for 1 min at 12,000 rpm (~13,400 × g) in a table-top microcentrifuge. Discard the flow-throw, and then place Spin Column CB2 in the collection tube. </p> | <p class="STYLE33">1. Column equilibration: add 500ul Buffer BL to the Spin Column CB2. Centrifuge for 1 min at 12,000 rpm (~13,400 × g) in a table-top microcentrifuge. Discard the flow-throw, and then place Spin Column CB2 in the collection tube. </p> | ||
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<p class="STYLE33">(5)Spread 100µl onto the petric dish with LB agar(with antibiotics).</p> | <p class="STYLE33">(5)Spread 100µl onto the petric dish with LB agar(with antibiotics).</p> | ||
<p class="STYLE33">(6)Grow overnight at 37℃.</p> | <p class="STYLE33">(6)Grow overnight at 37℃.</p> | ||
- | <h2 class=" | + | <h2 class="STYLE78">2.5 Colony PCR</h2> |
<p class="STYLE33">1. Make up a master mix of everything into one microcentrifuge tube.</p> | <p class="STYLE33">1. Make up a master mix of everything into one microcentrifuge tube.</p> | ||
<table width="100%" border="0" cellpadding="0" cellspacing="0" bgcolor="#FFED97"> | <table width="100%" border="0" cellpadding="0" cellspacing="0" bgcolor="#FFED97"> | ||
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<p align="left" class="STYLE33">7. Take picture for gel.</p> | <p align="left" class="STYLE33">7. Take picture for gel.</p> | ||
<h1 class="STYLE33"><a name="3" id="3"></a><span class="STYLE82">3.Preparation of competent</span></h1> | <h1 class="STYLE33"><a name="3" id="3"></a><span class="STYLE82">3.Preparation of competent</span></h1> | ||
- | <h1 class=" | + | <h1 class="STYLE78">3.1 Competent cell </h1> |
<p class="STYLE33">1. Take bacterium fluid in 10 ml centrifuge tube, centrifuge it at low speed ( 4000rpm ),for 5min at 4℃.</p> | <p class="STYLE33">1. Take bacterium fluid in 10 ml centrifuge tube, centrifuge it at low speed ( 4000rpm ),for 5min at 4℃.</p> | ||
<p class="STYLE33">2. Pour out on the clear liquid, by adding 5ml10 % glycerine solution, bacteria will weight new suspension. Then centrifuge it at the same speed and for the same time.<br /> | <p class="STYLE33">2. Pour out on the clear liquid, by adding 5ml10 % glycerine solution, bacteria will weight new suspension. Then centrifuge it at the same speed and for the same time.<br /> | ||
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<p class="STYLE33">3. In the end, add 500μL 10 %glycerine solution to the bacteria sediment to make the residue resuspension.</p> | <p class="STYLE33">3. In the end, add 500μL 10 %glycerine solution to the bacteria sediment to make the residue resuspension.</p> | ||
<p class="STYLE33">4. Subpackage the bacteria solution to 5 EP tubes, so there is 100μLcompetent cell solution in each EP tube. Keep the competent cell solution in -80℃refrigerator.</p> | <p class="STYLE33">4. Subpackage the bacteria solution to 5 EP tubes, so there is 100μLcompetent cell solution in each EP tube. Keep the competent cell solution in -80℃refrigerator.</p> | ||
- | <h1 class=" | + | <h1 class="STYLE78">3.2 Electrotransformation</h1> |
<p class="STYLE33">1. Add 5μPCR product into 100μLcompetent cell solution, then put this mixture into 0.2cm electroporation cuvettes.</p> | <p class="STYLE33">1. Add 5μPCR product into 100μLcompetent cell solution, then put this mixture into 0.2cm electroporation cuvettes.</p> | ||
<p class="STYLE33">2. Then use BioRad Gene PulsenⅡ to electroporate our bacteria. Set the parameter as 25μF,2.5KV.</p> | <p class="STYLE33">2. Then use BioRad Gene PulsenⅡ to electroporate our bacteria. Set the parameter as 25μF,2.5KV.</p> | ||
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<p class="STYLE33">5. Culture the bacteria overnight at 37℃ </p> | <p class="STYLE33">5. Culture the bacteria overnight at 37℃ </p> | ||
<p> </p> | <p> </p> | ||
- | <h1 class="STYLE33"><a name="4" id="4"></a><span class=" | + | <h1 class="STYLE33"><a name="4" id="4"></a><span class="STYLE48">4.Detection</span></h1> |
- | <h1 class=" | + | <h1 class="STYLE78">4.1 Cell and protein OD</h1> |
<p class="STYLE33">Take several bottles of liquid culture medium and add 5μL of bacteria in every one. Meanwhile, add 1μL of inducing agent in them except the control group. Placed the bottles in a shaking culture box.</p> | <p class="STYLE33">Take several bottles of liquid culture medium and add 5μL of bacteria in every one. Meanwhile, add 1μL of inducing agent in them except the control group. Placed the bottles in a shaking culture box.</p> | ||
<p class="STYLE33">After one hour, take out the liquid culture medium and shake them. Remove 2500μL bacteria under sterile conditions and add it in a clean cuvette, dilute it if necessary.</p> | <p class="STYLE33">After one hour, take out the liquid culture medium and shake them. Remove 2500μL bacteria under sterile conditions and add it in a clean cuvette, dilute it if necessary.</p> | ||
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<p class="STYLE33">Adjust the absorbance of spectrophotometer of 595nm, then measure and record the ODs of the csgA protein.</p> | <p class="STYLE33">Adjust the absorbance of spectrophotometer of 595nm, then measure and record the ODs of the csgA protein.</p> | ||
<p class="STYLE33">Repeat the step 2~7 until adequate data.</p> | <p class="STYLE33">Repeat the step 2~7 until adequate data.</p> | ||
- | <p class=" | + | <p class="STYLE78">4.2 Polymerized curli fiber</p> |
<p class="STYLE33">1.add 5μL target glycerin bacteria to 100mL nutrient solution.Put bacterium solution in 37℃,150rpmincubator , cultivate it for 7 hours.</p> | <p class="STYLE33">1.add 5μL target glycerin bacteria to 100mL nutrient solution.Put bacterium solution in 37℃,150rpmincubator , cultivate it for 7 hours.</p> | ||
<p class="STYLE33">2.Then add 1μL 1mol/LL arabinose to 100mL bacterium solution. Subpackage100mL bacterium solution into 10 test tubes averagely. Put subpackaged bacterium solution into 37℃Constant temperature and humidity incubator. </p> | <p class="STYLE33">2.Then add 1μL 1mol/LL arabinose to 100mL bacterium solution. Subpackage100mL bacterium solution into 10 test tubes averagely. Put subpackaged bacterium solution into 37℃Constant temperature and humidity incubator. </p> |
Revision as of 15:08, 17 October 2014
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