Difference between revisions of "Team:KU Leuven/Research/Methods"
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<dt> 1. Preparation of lysate starting from stock plate of phage</dt> | <dt> 1. Preparation of lysate starting from stock plate of phage</dt> | ||
− | <dd>1. Make an overnight culture of E. coli MG1655. </dd> | + | <dd>1. Make an overnight culture of <i>E. coli</i> MG1655. </dd> |
<dd>2. Take 500 µl overnight culture and add the phage P1. Incubate overnight at 37 degrees. </dd> | <dd>2. Take 500 µl overnight culture and add the phage P1. Incubate overnight at 37 degrees. </dd> | ||
<dd>3. Take single plaques of the P1 stock plate and bring this in a sterile eppendorf tube together with 200 µl of mQ.</dd> | <dd>3. Take single plaques of the P1 stock plate and bring this in a sterile eppendorf tube together with 200 µl of mQ.</dd> | ||
<dd>4. Overnight extraction while shaking at 37 degrees.</dd> | <dd>4. Overnight extraction while shaking at 37 degrees.</dd> | ||
− | <dd>5. Add 0.01, 0.1, 10 and 100 µl of extraction to 500 µl of a stationary phase culture of E. coli MG1655. Vortex and plate out.</dd> | + | <dd>5. Add 0.01, 0.1, 10 and 100 µl of extraction to 500 µl of a stationary phase culture of <i>E. coli</i> MG1655. Vortex and plate out.</dd> |
− | <dd>6. Add LB soft agar containing 10 mM | + | <dd>6. Add LB soft agar containing 10 mM MgSO<sup>4</sup> and 5 mM CaCl<sup>2</sup> and incubate at 37 degrees.</dd> |
<dd>7. Chose the plate with the best lysis.</dd> | <dd>7. Chose the plate with the best lysis.</dd> | ||
<dd>8. Sterilize your spoon in a bunsen flame, cool it down with water and wash it with 100 % ethanol.</dd> | <dd>8. Sterilize your spoon in a bunsen flame, cool it down with water and wash it with 100 % ethanol.</dd> | ||
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<dd>10. Press the content of the syringe in an eppendorf tube and centrifuge this for 10 minutes at 14 000 rpm.</dd> | <dd>10. Press the content of the syringe in an eppendorf tube and centrifuge this for 10 minutes at 14 000 rpm.</dd> | ||
<dd>11. Take 650 µl and bring this in a new eppendorf tube.</dd> | <dd>11. Take 650 µl and bring this in a new eppendorf tube.</dd> | ||
− | <dd>12. Extraction with 30 µl of | + | <dd>12. Extraction with 30 µl of CHCl<sup>3</sup> </dd> |
<dd>13.Vortex heavily!</dd> | <dd>13.Vortex heavily!</dd> | ||
<dd>14. Store lysate at 4 degrees.</dd> | <dd>14. Store lysate at 4 degrees.</dd> | ||
<dt> 2. Preparation of lysate of donor strain.</dt> | <dt> 2. Preparation of lysate of donor strain.</dt> | ||
<dd>1. First, centrifuge the lysate to be sure the chloroform is at the bottom of the eppendorf tube. Then add 0.1, 1, 10 and 100 µl of lysate to 500 µl stationary phase overnight culture of donor strain.</dd> | <dd>1. First, centrifuge the lysate to be sure the chloroform is at the bottom of the eppendorf tube. Then add 0.1, 1, 10 and 100 µl of lysate to 500 µl stationary phase overnight culture of donor strain.</dd> | ||
− | <dd>2. Add LB soft agar containing 10 mM | + | <dd>2. Add LB soft agar containing 10 mM MgSO<sup>4</sup> and 5 mM CaCl<sup>2</sup>. Incubate this at 37 degrees. </dd> |
<dd>3. Sterilize your spoon in a bunsen flame, cool it down with water and wash with 100 % ethanol.</dd> | <dd>3. Sterilize your spoon in a bunsen flame, cool it down with water and wash with 100 % ethanol.</dd> | ||
<dd>4. Centrifuge the eppendorf tubes 10 minutes at 14 000 rpm.</dd> | <dd>4. Centrifuge the eppendorf tubes 10 minutes at 14 000 rpm.</dd> | ||
<dd>5. Bring 650 µl in a new eppendorf tube </dd> | <dd>5. Bring 650 µl in a new eppendorf tube </dd> | ||
− | <dd>6. Extraction with 30 µl of | + | <dd>6. Extraction with 30 µl of CHCl<sup>3</sup> </dd> |
<dd>7. Vortex heavily! </dd> | <dd>7. Vortex heavily! </dd> | ||
<dd>8. Store the lysate at 4 degrees.</dd> | <dd>8. Store the lysate at 4 degrees.</dd> | ||
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</dt> | </dt> | ||
<dt> 3. Transduction to acceptor strain.</dt> | <dt> 3. Transduction to acceptor strain.</dt> | ||
− | <dd>1. Concentrate 500 µl of stationary phase overnight acceptor strain culture five times in LB with 10 mM | + | <dd>1. Concentrate 500 µl of stationary phase overnight acceptor strain culture five times in LB with 10 mM MgSO<sup>4</sup> and 5 mM CaCl<sup>2</sup> </dd> |
<dd>2. Add 0.1, 1, 10 and 100 µl of donor strain lysate to 100 µl acceptor strain. </dd> | <dd>2. Add 0.1, 1, 10 and 100 µl of donor strain lysate to 100 µl acceptor strain. </dd> | ||
<dd>3. Incubate thirty minutes at 37 degrees.</dd> | <dd>3. Incubate thirty minutes at 37 degrees.</dd> | ||
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<h4> | <h4> | ||
<div id=figure1>Figure 1</div> | <div id=figure1>Figure 1</div> | ||
− | Gibson assembly reaction and its essential components <i> E.coli </i> </h4> | + | Gibson assembly reaction and its essential components <i>E.coli</i> </h4> |
</div> | </div> | ||
</div> | </div> | ||
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<p><b>Protocol</b></p> | <p><b>Protocol</b></p> | ||
<dl> | <dl> | ||
− | <dd>1. Prepare selective media (LB with 0.25% agar (2, | + | <dd>1. Prepare selective media (LB with 0.25% agar (2,5 g/l) in Petri dishes (85 mm dia.).</dd> |
− | <dd>2. Apply 1 | + | <dd>2. Apply 1.5 µL of the diluted cell suspensions from mid-log-phase cultures (~2×105 cells/µL (OD=0.5)) to the center of the plates, and let them dry in air for 15 min </dd> |
<dd>3. Incubate at 37 °C for 10 h. </dd> | <dd>3. Incubate at 37 °C for 10 h. </dd> | ||
</dl> | </dl> | ||
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<p><b>Note.</b> | <p><b>Note.</b> | ||
For low DNA amounts the elution volumes can be reduced to increase DNA concentration. An elution volume between 20-50 µL does not significantly reduce the DNA yield. However, elution volumes less than 10 µL are not recommended. If DNA fragment is >10 kb, prewarm Elution Buffer to 65 °C before applying to column. If the elution volume is 10 µL and DNA amount is ≥5 µg, incubate column for 1 min at room temperature before centrifugation.<p></dd> | For low DNA amounts the elution volumes can be reduced to increase DNA concentration. An elution volume between 20-50 µL does not significantly reduce the DNA yield. However, elution volumes less than 10 µL are not recommended. If DNA fragment is >10 kb, prewarm Elution Buffer to 65 °C before applying to column. If the elution volume is 10 µL and DNA amount is ≥5 µg, incubate column for 1 min at room temperature before centrifugation.<p></dd> | ||
− | <dd>5. Discard the GeneJET purification column and store the purified DNA at -20 | + | <dd>5. Discard the GeneJET purification column and store the purified DNA at -20 °C. </dd> |
<dl> | <dl> | ||
</div> | </div> | ||
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<p><b>Protocol:</b><p> | <p><b>Protocol:</b><p> | ||
<dl> | <dl> | ||
− | <dd>1. Blank the nanometer with | + | <dd>1. Blank the nanometer with 2 µL the buffer you used to elute your sample</dd> |
<dd>2. Put 2 µL of the sample on the nanometer, and average the result.</dd> | <dd>2. Put 2 µL of the sample on the nanometer, and average the result.</dd> | ||
</dl> | </dl> |
Revision as of 19:17, 15 September 2015
Methods
On this page you can find all of the methods and protocols used in the lab to obtain our results. For some techniques, we included some basic theory, since it is a prerequisite to get acquainted with the theory behind these techniques before using them. To learn more about them, click the titles below!
Contact
Address: Celestijnenlaan 200G room 00.08 - 3001 Heverlee
Telephone: +32(0)16 32 73 19
Email: igem@chem.kuleuven.be