Difference between revisions of "Team:Yale/notebook"

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       <h2 id="overview">Lab Notebook</h2>
 
       <h2 id="overview">Lab Notebook</h2>
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      <p class="text-center"><a href="dropbox.com/#week9" class="file__link">See Our Lab Notebook</a></p>
 
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     </section>
 
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           <h2>Week 10+</h2><a href="#" data-reveal-id="week12">Planning</a>
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           <h2>Week 10+</h2><a href="#" data-reveal-id="week12">Lionel has a Ball</a>
 
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       <p>He then transformed the vectors by electroporation into E. coli. In pKT230-LIC, fluorescence was observed for AS-cit, AM-cit, AW-cit, and tac-cit, with some leaky expression observed for melA-cit and bacA-cit. Fluorescence for the same inserts was markedly lower in pPZP200b-LIC, possibly because of the lack of a downstream terminator. The plasmids were miniprepped from E. coli and transformed by electroporation into rhizobium. None of the pKT230-LIC transformations worked, and RE digest followed by gel-electrophoresis showed that we had once again run into problems with the instability of pKT230: even when the plasmid had the right size going into the LIC cloning, the miniprepped plasmids were markedly smaller. The pPZP200b-LIC transformations all worked, but we had low levels of fluorescence in line with the E. coli readings, with fluorescence observed for tac, AS and AM. </p>
 
       <p>He then transformed the vectors by electroporation into E. coli. In pKT230-LIC, fluorescence was observed for AS-cit, AM-cit, AW-cit, and tac-cit, with some leaky expression observed for melA-cit and bacA-cit. Fluorescence for the same inserts was markedly lower in pPZP200b-LIC, possibly because of the lack of a downstream terminator. The plasmids were miniprepped from E. coli and transformed by electroporation into rhizobium. None of the pKT230-LIC transformations worked, and RE digest followed by gel-electrophoresis showed that we had once again run into problems with the instability of pKT230: even when the plasmid had the right size going into the LIC cloning, the miniprepped plasmids were markedly smaller. The pPZP200b-LIC transformations all worked, but we had low levels of fluorescence in line with the E. coli readings, with fluorescence observed for tac, AS and AM. </p>
 
       <p>The lab had a meeting with our faculty advisors on August 31st to strategize for the upcoming few weeks. We have made significant progress towards our goal, even as we had hoped to be further along. Now, since school was starting, we need to prioritize experiments to get the most out of the project before the Jamboree in late September. With the help of our advisors, we identified goals which we feel are safe to achieve others which were reach targets. We did this for PCC 7002 and S. meliloti (we decided not to work with pKT230-LIC given the instability issues)</p>
 
       <p>The lab had a meeting with our faculty advisors on August 31st to strategize for the upcoming few weeks. We have made significant progress towards our goal, even as we had hoped to be further along. Now, since school was starting, we need to prioritize experiments to get the most out of the project before the Jamboree in late September. With the help of our advisors, we identified goals which we feel are safe to achieve others which were reach targets. We did this for PCC 7002 and S. meliloti (we decided not to work with pKT230-LIC given the instability issues)</p>
       <p></p>
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       <p>...</p>
 
       <p>Safe (PCC 7002):</p>
 
       <p>Safe (PCC 7002):</p>
 
       <p>Isolate and confirm a homozygous ∆mutS mutant; characterize mutagenecy of ∆mutS mutants versus wild-type</p>
 
       <p>Isolate and confirm a homozygous ∆mutS mutant; characterize mutagenecy of ∆mutS mutants versus wild-type</p>
 
       <p>Build promoter-citrine constructs</p>
 
       <p>Build promoter-citrine constructs</p>
 
       <p>Build MAGE test constructs</p>
 
       <p>Build MAGE test constructs</p>
       <p></p>
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       <p>...</p>
 
       <p>Safe (S. meliloti):</p>
 
       <p>Safe (S. meliloti):</p>
 
       <p>Insert promoter-citrine-terminator constructs into pPZP200b and characterize in S. meliloti</p>
 
       <p>Insert promoter-citrine-terminator constructs into pPZP200b and characterize in S. meliloti</p>
 
       <p>Construct promoter-recombinase inserts and transform into S. meliloti (we need an assay designed for this, which might make this goal risky if it takes a long time to design the assay)</p>
 
       <p>Construct promoter-recombinase inserts and transform into S. meliloti (we need an assay designed for this, which might make this goal risky if it takes a long time to design the assay)</p>
       <p></p>
+
       <p>...</p>
       <p>Reach (PCC 7002):</p>
+
       <p>Risky (PCC 7002):</p>
 
       <p>Successful plasmid transformation (since it takes 2-3 weeks for transformed PCC 7002 colonies to grow on plates, any experiment that involves transformation is risky at this point)</p>
 
       <p>Successful plasmid transformation (since it takes 2-3 weeks for transformed PCC 7002 colonies to grow on plates, any experiment that involves transformation is risky at this point)</p>
 
       <p>Successful promoter-citrine characterization</p>
 
       <p>Successful promoter-citrine characterization</p>
 
       <p>FLP out kanR cassette using pCP20 plasmid</p>
 
       <p>FLP out kanR cassette using pCP20 plasmid</p>
       <p></p>
+
       <p>...</p>
 
       <p>Risky (S. meliloti):</p>
 
       <p>Risky (S. meliloti):</p>
 
       <p>CRISPR in S. meliloti</p>
 
       <p>CRISPR in S. meliloti</p>

Revision as of 03:24, 17 September 2015


<!DOCTYPE html> Yale iGem 2015: Notebook

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