Team:UESTC-China/Protocol
From 2014.igem.org
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<td class="mid">Insert DNA</td> | <td class="mid">Insert DNA</td> | ||
- | <td class="mid"> the moles | + | <td class="mid"> the moles of insert DNA to vector DNA is 5:1</td> |
</tr> | </tr> | ||
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<td class="mid">Insert DNA </td> | <td class="mid">Insert DNA </td> | ||
- | <td class="mid"> the moles | + | <td class="mid"> the moles of insert DNA to vector DNA is 5:1</td> |
</tr> | </tr> | ||
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8) Pour off media and resuspend cells in 30 ml of cold 0.1 M CaCl2. Transfer the suspended cells into 50 ml polypropylene tubes, and incubate on ice for 30 min;<br> | 8) Pour off media and resuspend cells in 30 ml of cold 0.1 M CaCl2. Transfer the suspended cells into 50 ml polypropylene tubes, and incubate on ice for 30 min;<br> | ||
9) Centrifuge cells at 40℃ for 10 min at 3,000 g;<br> | 9) Centrifuge cells at 40℃ for 10 min at 3,000 g;<br> | ||
- | 10) Pour supernatant and resuspend cells (by pipetting) in 8 ml cold 0.1M CaCl2 containing 15% glycerol Transfer 140 ml into (1.5 ml). Eppendorf tubes placed on ice. Freeze the cells in liquid nitrogen. Cells stored at -80℃ can be used for transformation for up to ~6 months;<br> | + | 10) Pour supernatant and resuspend cells (by pipetting) in 8 ml cold 0.1M CaCl2 containing 15% glycerol Transfer 140 ml into (1.5 ml).Eppendorf tubes placed on ice. Freeze the cells in liquid nitrogen. Cells stored at -80℃ can be used for transformation for up to ~6 months;<br> |
11) Add 10 to 40 ng (10 to 25 ml volume) of DNA to 250 ml of competent cells in step;<br> | 11) Add 10 to 40 ng (10 to 25 ml volume) of DNA to 250 ml of competent cells in step;<br> | ||
12) Incubate the mixture on ice for 30 minutes;<br> | 12) Incubate the mixture on ice for 30 minutes;<br> | ||
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2)Frozen in liquid nitrogen for 5 min, grow at 37 C for 5 min, on ice for 2 min;<br> | 2)Frozen in liquid nitrogen for 5 min, grow at 37 C for 5 min, on ice for 2 min;<br> | ||
3)Pour in 1000 LYEB, 200 rpm, grow at 28℃ for 2~3 h;<br> | 3)Pour in 1000 LYEB, 200 rpm, grow at 28℃ for 2~3 h;<br> | ||
- | + | 4)6000rpm,2min. Suspend collected bacteria with 100µl YEB and evenly coat that at a YEB medium. (125 mg/L Sm or 50 mg/L rif, and 50 mg/L Kan included);<br> | |
5)Grow upside down at 28℃, for 48h;<br> | 5)Grow upside down at 28℃, for 48h;<br> | ||
6)Pick positive clones and grow them in LB medium with antibiotic at 28℃ for 48h;<br> | 6)Pick positive clones and grow them in LB medium with antibiotic at 28℃ for 48h;<br> | ||
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<td class="lastmid"><br>Quantitative detection</td> | <td class="lastmid"><br>Quantitative detection</td> | ||
<td class="lastmid"><br> Have 4 positive seedlings from every transgenic line (about 8 leaves age) in a 650ml culture bottle. Treat with 10µl 37% formaldehyde for 2 weeks. Using a formaldehyde detector (Gastec Passive Dositube, 91D, Ayase, Kanagawa, Japan) was set in the hole to detect gaseous formaldehyde. Three and a half hours later, the measurement was stopped and the results were photographed <i>(Chen et al., 2010)</i>.</td> | <td class="lastmid"><br> Have 4 positive seedlings from every transgenic line (about 8 leaves age) in a 650ml culture bottle. Treat with 10µl 37% formaldehyde for 2 weeks. Using a formaldehyde detector (Gastec Passive Dositube, 91D, Ayase, Kanagawa, Japan) was set in the hole to detect gaseous formaldehyde. Three and a half hours later, the measurement was stopped and the results were photographed <i>(Chen et al., 2010)</i>.</td> | ||
- | <td class="lastmid"><br>Put 4 wild -type seedlings with the same growth of seedlings in experimental group into 650ml culture bottle | + | <td class="lastmid"><br>Put 4 wild -type seedlings with the same growth of seedlings in experimental group into 650ml culture bottle , with same processing as the case of the experimental group .</td> |
</tr> | </tr> |
Revision as of 14:59, 17 October 2014