Team:Peking/DataPage/JudgingCriteria
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- | <a href="https://igem.org/ | + | <a href="https://2013.igem.org/Main_Page"><img id="iGEM_logo" src="https://static.igem.org/mediawiki/igem.org/4/48/Peking_igemlogo.jpg"/></a> |
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- | 3. We submitted | + | 3. We submitted 56 high-quality and well-characterized Standard Biobricks! (For more details, <a href="/Team:Peking/DataPage/Parts">Click Here</a>) |
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4. We improved a previous Biobrick Part, which is the combination of salicylic acid inducible promoter pSal and its transcriptional regulator NahR (<a href="http://parts.igem.org/Part:BBa_J61051">BBa_J61051</a>). The improved version of the Biobrick is <a href="http://parts.igem.org/Part:BBa_K1031610">BBa_K1031610</a>. | 4. We improved a previous Biobrick Part, which is the combination of salicylic acid inducible promoter pSal and its transcriptional regulator NahR (<a href="http://parts.igem.org/Part:BBa_J61051">BBa_J61051</a>). The improved version of the Biobrick is <a href="http://parts.igem.org/Part:BBa_K1031610">BBa_K1031610</a>. |
Latest revision as of 19:02, 28 October 2013
Judging Criteria
Achievements
We are very proud of the many achievements we have made in this summer. Here is a compilation of our feats! 1. We collaborated with and helped 5 other iGEM teams by sharing DNA materials, characterizing their parts and modeling! (For more details, Click Here) 2. We outlined in details a new approach of human pratice called "Model iGEM". It's a small-scale competition-free jamboree for several teams that frequently communicate with each other. (For more details, Click Here) 3. We submitted 56 high-quality and well-characterized Standard Biobricks! (For more details, Click Here) 4. We improved a previous Biobrick Part, which is the combination of salicylic acid inducible promoter pSal and its transcriptional regulator NahR (BBa_J61051). The improved version of the Biobrick is BBa_K1031610. 5. We invented a conceptually novel method to mine high-quality Biobricks using the genomic and proteomic database. (For more details, Click Here) 6. We successfully constructed a collection of biosensors to detect aromatic compounds; the detailed characterization showed that they could be combined to profile aromatics in the environment. (For more details, Click Here) 7. We constructed a set of conceptually novel genetic devices, Adaptors, for our biosensors to improve their performance. (For more details, Click Here) 8. A Band-pass Filter was constructed to achieve quick analysis of the environmental samples. (For more details, Click Here) Therefore, we believe that we deserve a Gold Medal Prize.