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Day 3: Plate to get single candidate recombinants
- Make a 106 dilution of the overnight culture via 3 wet DTs (100 µl into 9.9 ml each time).
- Plate 50 µl of this dilution on LB. This should yield a couple hundred colonies.
- Grow overnight at 30°C to prevent partial loss of plasmid from colonies founded by cells that did not lose plasmid.
Expected results: ~200 colonies on LB plates.
Day 4: Screen for genomic recombination and plasmid loss
- Patch six individual colonies from this plate onto LB + Kan, LB + Amp, and LB plates. Do the patching by picking a colony and then streaking a small spot on each plate in this order. Be sure you patch on LB last. Failure to grow can sometimes occur because no cells were transferred to the later plates. This order ensures that, if you get the desired growth on the last plate and no growth on the LB + Kan and LB + Amp plates, it was not due to "running out" of cells in the later patches.
- Grow overnight at 37°C for LB and LB + Kan and grow at 30°C for LB + Amp plates.
NOTE: To save a day, you can inoculate several colonies into 5mL LB at the same time that you patch them (do the procedure for Day 5 on Day 4). You will proceed with the liquid LB cultures that correspond to colonies that were Kan and Amp sensitive. If you do this, be sure to only use colonies that have growth on the LB-only plate, in addition to no growth on the LB-Kan and LB-Amp plates.
Expected results: Most if not all patches should be completely Kanamycin and Ampicillin sensitive.
Day 5: Grow up successful recombinants (can be combined with Day 4, see note above)
- Inoculate 5 ml LB from patches on LB plates that score as sensitive to both antibiotics.
- Grow overnight at 37°C, shaking at 120 rpm.
Day 6: Archive clones
- Freeze and archive copies of the newly created strain, there the Kan cassette has been eliminated from between the FRT sites. To guard against mutations that may occur during strain construction, it may be wise to archive and test the fitness of several separate colonies (patches).
Sources
- Datsenko, K.A., and Wanner, B.L. (2000) One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products. Proc. Natl. Acad. Sci. U.S.A. 97: 6640-6645.
- Baba, T., Ara, T., Hasegawa, M., Takai, Y., Okumura, Y., Baba, M., Datsenko, K.A., Tomita, M., Wanner, B.L., and Mori, H. (2006) Construction of Escherichia coli K-12 in-frame, single-gene knockout mutants: the Keio collection. Mol. Syst. Biol. 2: 0008.
- Cherepanov, P. P., Wackernagel, W. (1995) Gene disruption in Escherichia coli: TcR and KmR cassettes with the option of Flp-catalyzed excision of the antibiotic-resistance determinant. Gene 158: 9–14.
- Keio Strain construction details
META TOPICMOVED |
by="JeffreyBarrick" date="1332781236" from="Lab.ProcedureGeneKnockout" to="Lab.ProcedureFLPFRTRecombination" |
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