Team:Yale/Our Project/Notebook/Week 3

From 2010.igem.org

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So that can readily determine whether bacteria are producing hydrogen sulfide, created a batch of TSI agar slants according to the following <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/TSI_agar"> recipe </a>, with ampicillin as the added antibiotic and tubes of the medium allowed to solidify on an angle to produce a characteristic slant.  If a culture containing thiosulfate reductase is grown in such a slant, it will turn the medium black by precipitating out black iron sulfide, an obvious visual cue of hydrogen sulfide production. <br/>
So that can readily determine whether bacteria are producing hydrogen sulfide, created a batch of TSI agar slants according to the following <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/TSI_agar"> recipe </a>, with ampicillin as the added antibiotic and tubes of the medium allowed to solidify on an angle to produce a characteristic slant.  If a culture containing thiosulfate reductase is grown in such a slant, it will turn the medium black by precipitating out black iron sulfide, an obvious visual cue of hydrogen sulfide production. <br/>
<b> Transformation of BBa_P0312</b> <br/>
<b> Transformation of BBa_P0312</b> <br/>
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After realizing that Biobrick P0312 can be used in place of C0012 and R0011, transformed BL21 with P0312 according to the <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/transformation"> standard transformation protocol </a> <br/> and plated on ampicillin LB plates to grow overnight in the incubator at 37˚C. (Because no Amp LB plates were prepared, simply spread the antibiotic topically on a plain LB plate prior to adding transformants.)
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After realizing that Biobrick P0312 can be used in place of C0012 and R0011, transformed LE392 with P0312 according to the <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/transformation"> standard transformation protocol </a> and plated on ampicillin LB plates to grow overnight in the incubator at 37˚C. (Because no Amp LB plates were prepared, simply spread the antibiotic topically on a plain LB plate prior to adding transformants.)
<i> This day's labwork is also recorded on pages 18, 20, and 21 of the hard copy lab notebook. </i>
<i> This day's labwork is also recorded on pages 18, 20, and 21 of the hard copy lab notebook. </i>
<!------------- Wednesday ------------->
<!------------- Wednesday ------------->
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<ul>
<ul>
<li>Finally ordered the primers designed on <a href="https://2010.igem.org/Team:Yale/Our_Project/Notebook/Week_2"> 6/15 </a>. </li>
<li>Finally ordered the primers designed on <a href="https://2010.igem.org/Team:Yale/Our_Project/Notebook/Week_2"> 6/15 </a>. </li>
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<li> Saw that P0312 transformants had grown, though apparently ampicillin was not thoroughly distributed on the plate, as there was lawn growth at the very edges and scattered colonies in the middle. Used one of these middle resistant colonies to inoculate a liquid ampicillin LB culture to grow overnight on the shaker at 37˚C for miniprep the next day. </li>
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<li> Saw that P0312 transformants had grown, though apparently ampicillin was not thoroughly distributed on the plate, as there was lawn growth at the very edges and scattered colonies in the middle. Used one of these middle resistant colonies to inoculate a 5 mLliquid ampicillin LB culture to grow overnight on the shaker at 37˚C for miniprep the next day. </li>
</ul>
</ul>
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<i> This day's labwork is also recorded on page 22 of the hard copy lab notebook. </i>
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<!------------- Thursday ------------->
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<li>
<li>
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Friday
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Friday 6/25--P0312 miniprep, pSB74 transform, & pouring plates
</li>
</li>
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<div style="display:none;" id="friday">
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extra content
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<ul>
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<li> Miniprepped the overnight culture of P0312 in LE392 according to the <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/miniprep"> standard microcentrifuge protocol. </a> </li>
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<li>Transformed BL21, LE392, and DH5alpha with pSB74 according to this <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/transformation"> standard transformation protocol </a> <br/> and plated on ampicillin LB plates to incubate overnight at 37˚C. </li>
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<li> Prepared 1 liter's worth of ampicillin LB plates and 500 mL of plain LB plates according to this <a href="https://2010.igem.org/Team:Yale/Our_Project/Protocols/LB_agar"> recipe. </a>  The ampicillin 1000x stock solution was made by dissolving 2.0 g of ampicillin in 20.0 mL of water, filter-sterilizing the resultant solution, and storing it in 1 mL aliquots in the freezer. </li?
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<li> Incubated five of the plain LB plates overnight as a sterility check. </li>
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</ul>
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<i>This day's activities are also recorded on page 22 of the hard copy lab notebook. </i>
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<!------------- Friday ------------->
</div>
</div>

Revision as of 08:44, 27 October 2010

iGEM Yale

lab notebook: week 3 (6/21-6/27)

  • Monday 6/21--Miniprep Biobrick plasmids from overnight culture, but a mix up samples, necessitating a diagnostic digest.
  • See more/less
  • Tuesday 6/22--Miniprep redos
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  • Wednesday 6/23--Making TSI agar slants & transformation of P0312
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  • Thursday 6/24--primer ordering & IPTG-inducible promoter(P0312) transformants
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  • Friday 6/25--P0312 miniprep, pSB74 transform, & pouring plates
  • See more/less