IGEM:UC-Merced/2009/Notebook/E. hydro Express

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6. 20ul of P1 phage was added to  JW1228-1/P1 solution after incubation. It will be incubated until 11/15/12 at 3 pm
6. 20ul of P1 phage was added to  JW1228-1/P1 solution after incubation. It will be incubated until 11/15/12 at 3 pm
 +
 +
7. JW1228-1/P1 culture was checked at 3 pm and there was a large amount of turbidity, which is opposite to what we should have seen. This means that potentially the P1 phage did not infect the JW1228-1 cells and instead, the JW1228-1 cells continued to grow through incubation. Due to this observation the JW1228-1/P1 culture was left to incubate until 4:30 pm on 11/15/12.
 +
 +
8. JW1228-1/P1 culture was removed from the incubator at 4:36 pm on 11/15/12. The JW1228-1/P1 culture appeared less turbid then when checked at 3 pm however, still more turbid then expected due to P1 phage activity.
 +
 +
9. Drops of chloroform were added to the JW1228-1/P1 culture and 3 ml of solution was centrifuged in each culture tube. Only 2 ml of supernatant was available from each 35 ml centrifuge tube. The supernatant was kept in 1 ml tubes and four tubes were collected.
 +
 +
10. The 1 ml tubes are labeled as CH AB 11/15 and kept in the 4°C refrigerator.
 +
 +
 +
11/28/12
 +
 +
[Parts Submission/Transformation]
 +
1. Plated FMJ39 (5ul) with Streptomycin (20ul), for mini prep 11/29/12
 +
 +
11/29/12
 +
 +
1. FMJ39 plate showed transformation through appearance of red spotting along edge of one quadrant of plate.
 +
2. Mini prep performed on DNA. Tube labeled "FMJ DNA" placed in -20 degrees C freezer.
 +
3. Insufficient TAE buffer to run gel - will reattempt tomorrow 11/30/12.
 +
 +
2/13/2013
 +
 +
*Note: The LB top agar/broth and the TM buffer were made based on personal calculations after reviewing Appendex 2: A.2.5 Supplement 40 from Current Protocols in Molecular Biology
 +
 +
1. 0.5L of LB/CaCl2 was made.
 +
    A. 19.99g of LB agar was added to 500mL of water, to bring the total content of the Erlenmeyer flask up to approximately 500mL.
 +
    B. 147g/mole CaCl2 * (0.0025 mole/ L) * 0.5L = 0.18375g CaCl2
 +
    C. 0.19g of CaCl2 was added to the 0.5 solution
 +
    D. The 0.5L of LB/CaCl2 was separated into two Erlenmeyer flasks, each with about 0.25L in each.
 +
 
 +
2. 0.1L of Top agar LB/CaCl2 was made.
 +
  A. 2g of LB broth was added to 100mL of water, to bring the content of the Erlenmeyer flask up to approximately 100mL
 +
  B.147g/mole CaCl2 * (0.0025 mole/ L) * 0.1L = 0.3675g CaCl2 
 +
 +
3. Both were then autoclaved on the 15 minute cycle (setting 9).
 +
  A. Once out, the two 250mL flasks containing the LB/CaCl2 were put onto ice to cool.
 +
  B. The top agar solution, once cooled, was labeled and left on the bench for future use.
 +
  C. The solution is labeled as "CaCl2 Top agar 2/13/12"
 +
 +
4. The two 250mL flasks containing LB/Cacl2 were taken to a fume hood that was previously sterilized with 37% alcohol solution, for plates to be made.
 +
  A. The LB/CaCl2 solution was poured onto each plate and then the plates were swirled to allow for the solution to be evenly distributed over each plate.
 +
  B. In total about 30 of these plates were left to sit with their tops off in the hood for 15-25 minutes to harden.
 +
  C. Once the plates had hardened they were put back into the bag in which they came, labeled with a black and blue line, and then put into the walk in refrigerator. 
 +
  D. After about an hour of being left to harden, approximately 16 plates did not solidify and were then disposed of. This could be due to inadequate mixing of the original agar solution.
 +
 +
5. 100 mM Tris-Cl was prepared for a TM buffer.
 +
  A. 12.1g of Tris base was added to 100mL of water and stirred until the solution became clear.
 +
  B.  5.3mL of HCl was added to the solution to bring the solution to a final pH of 7.38
 +
  C. The solution was labeled and left on the bench for future use.
 +
 +
2/15/2013
 +
 +
1. Completion of 100mL of TM buffer.
 +
  A. 1.98g of MgCl2 was added to the 100mL of Tris-Cl that was prepared on 2/13/13
 +
  B. The concentrations of the Tris-Cl and the MgCl2 is 100mM each.
 +
 +
2/19/2013 (12:05 pm)
 +
 +
1. Bacteria for future use were cultured
 +
  A. 5mL of LB (prepared on 8/27 from lab bench) was placed into 14 ml round bottom tube.
 +
  B. Stock JW-1228 was attempted to be retrieved from -80C freezer, but could not locate.
 +
  C. Instead, JW-1228 + ku (Baij 11/14) from the 4C fridge was used
 +
  D. JW-1228+ku was lightly vortexed because the cells had visibly aggregated to the bottom of the tube.
 +
  E. 1uL of the JW-1228 was put into the 5mL of LB and then put into a 37C incubator overnight.
 +
 +
2. The TM buffer created on 2/15/2013 was autoclaved

Revision as of 16:46, 19 February 2013

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Lab Notebook

Beginning Tuesday November 13, 2012

11/13/2012

 Generation P1 Phage Stock
  1. Prepared P1 Stock from Yale University
   a. LB
   b. Kanamycin stock 25mg/ml to add to strain JW1228-1
       C1V1=C2V2
      25000 ug/ml (V1) = 50ug/ml (5ml)
      C1 = 25000 ug/ml  --> kanamycin concentration
      C2 = 50 ug/ml   
      V2 = 5 ml broth
      25000 ug/ml (V1) = 250 ug
      V1 = 0.01 ml = 10 uL   --> kanamycin to add to strain JW1228-1 
     Incubate kanomycin in LB broth until 11am 11/14/12


11/14/12

P1 Phage

1. Overnight culture did not grow. Possible reason is: The JW1228-1 culture taken from the 4°C refrigerator was old and was probably no longer living. To address this possibility we will redo the procedure using frozen JW1228-1 stock. 2. Prepared new overnight culture with frozen JW1228-1 glycerol stock (following the procedure carried out on 10/13/12)

   a. LB
   b. Kanamycin stock 25mg/ml to add to strain JW1228-1
       C1V1=C2V2
      25000 ug/ml (V1) = 50ug/ml (5ml)
      C1 = 25000 ug/ml  --> kanamycin concentration
      C2 = 50 ug/ml   
      V2 = 5 ml broth
      25000 ug/ml (V1) = 250 ug
      V1 = 0.01 ml = 10 uL   --> kanamycin to add to strain JW1228-1 
     Incubate kanomycin in LB broth until 10:30 am 11/15/12

11/15/12

1. JW1228-1 overnight culture grew. The next step in the procedure was carried out according to Yale University.

2. Preparation of 10ml containing 20% Glucose solution

    a. Calculations
        20g/100 ml = x/10ml
        x=2 g of glucose

3. The 20% glucose solution was made using filtered water and 2 g of glucose. The resulting 10 ml of glucose solution was filtered.

4. Preparation of Overnight JW1228-1 culture to be used in P1 phage infection

    a. Calculation to make a 1:100 dilution of JW1228-1 overnight culture
         1/100=x/5ml
         100x=5ml
         x=0.05 ml or 50 ul
    b. Two culture tubes were created for P1 phage infection
              i. Each tube include: 50 ul of overnight culture, 50 ul of 20% glucose, and 25 ml of 1M CaCl2

5. JW1228-1 overnight culture prepared for P1 phage solution to be incubated until 11:55 on 11/15/12

6. 20ul of P1 phage was added to JW1228-1/P1 solution after incubation. It will be incubated until 11/15/12 at 3 pm

7. JW1228-1/P1 culture was checked at 3 pm and there was a large amount of turbidity, which is opposite to what we should have seen. This means that potentially the P1 phage did not infect the JW1228-1 cells and instead, the JW1228-1 cells continued to grow through incubation. Due to this observation the JW1228-1/P1 culture was left to incubate until 4:30 pm on 11/15/12.

8. JW1228-1/P1 culture was removed from the incubator at 4:36 pm on 11/15/12. The JW1228-1/P1 culture appeared less turbid then when checked at 3 pm however, still more turbid then expected due to P1 phage activity.

9. Drops of chloroform were added to the JW1228-1/P1 culture and 3 ml of solution was centrifuged in each culture tube. Only 2 ml of supernatant was available from each 35 ml centrifuge tube. The supernatant was kept in 1 ml tubes and four tubes were collected.

10. The 1 ml tubes are labeled as CH AB 11/15 and kept in the 4°C refrigerator.


11/28/12

[Parts Submission/Transformation] 1. Plated FMJ39 (5ul) with Streptomycin (20ul), for mini prep 11/29/12

11/29/12

1. FMJ39 plate showed transformation through appearance of red spotting along edge of one quadrant of plate. 2. Mini prep performed on DNA. Tube labeled "FMJ DNA" placed in -20 degrees C freezer. 3. Insufficient TAE buffer to run gel - will reattempt tomorrow 11/30/12.

2/13/2013

  • Note: The LB top agar/broth and the TM buffer were made based on personal calculations after reviewing Appendex 2: A.2.5 Supplement 40 from Current Protocols in Molecular Biology

1. 0.5L of LB/CaCl2 was made.

   A. 19.99g of LB agar was added to 500mL of water, to bring the total content of the Erlenmeyer flask up to approximately 500mL. 
   B. 147g/mole CaCl2 * (0.0025 mole/ L) * 0.5L = 0.18375g CaCl2 
   C. 0.19g of CaCl2 was added to the 0.5 solution 
   D. The 0.5L of LB/CaCl2 was separated into two Erlenmeyer flasks, each with about 0.25L in each. 
  

2. 0.1L of Top agar LB/CaCl2 was made.

  A. 2g of LB broth was added to 100mL of water, to bring the content of the Erlenmeyer flask up to approximately 100mL
  B.147g/mole CaCl2 * (0.0025 mole/ L) * 0.1L = 0.3675g CaCl2  

3. Both were then autoclaved on the 15 minute cycle (setting 9).

  A. Once out, the two 250mL flasks containing the LB/CaCl2 were put onto ice to cool.
  B. The top agar solution, once cooled, was labeled and left on the bench for future use.
  C. The solution is labeled as "CaCl2 Top agar 2/13/12"

4. The two 250mL flasks containing LB/Cacl2 were taken to a fume hood that was previously sterilized with 37% alcohol solution, for plates to be made.

 A. The LB/CaCl2 solution was poured onto each plate and then the plates were swirled to allow for the solution to be evenly distributed over each plate.
 B. In total about 30 of these plates were left to sit with their tops off in the hood for 15-25 minutes to harden. 
 C. Once the plates had hardened they were put back into the bag in which they came, labeled with a black and blue line, and then put into the walk in refrigerator.  
 D. After about an hour of being left to harden, approximately 16 plates did not solidify and were then disposed of. This could be due to inadequate mixing of the original agar solution.

5. 100 mM Tris-Cl was prepared for a TM buffer.

 A. 12.1g of Tris base was added to 100mL of water and stirred until the solution became clear.
 B.  5.3mL of HCl was added to the solution to bring the solution to a final pH of 7.38
 C. The solution was labeled and left on the bench for future use.

2/15/2013

1. Completion of 100mL of TM buffer.

 A. 1.98g of MgCl2 was added to the 100mL of Tris-Cl that was prepared on 2/13/13
 B. The concentrations of the Tris-Cl and the MgCl2 is 100mM each.

2/19/2013 (12:05 pm)

1. Bacteria for future use were cultured

  A. 5mL of LB (prepared on 8/27 from lab bench) was placed into 14 ml round bottom tube.
  B. Stock JW-1228 was attempted to be retrieved from -80C freezer, but could not locate.
  C. Instead, JW-1228 + ku (Baij 11/14) from the 4C fridge was used
  D. JW-1228+ku was lightly vortexed because the cells had visibly aggregated to the bottom of the tube.
  E. 1uL of the JW-1228 was put into the 5mL of LB and then put into a 37C incubator overnight.

2. The TM buffer created on 2/15/2013 was autoclaved

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