Team:Peking R

From 2011.igem.org

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   <p class="mainbody">In our project, we are aiming  at establishing an extensible and versatile platform for the softcoding of  genetic program in bacteria, composed of a toolbox and a methodology. The  toolbox consists of interoperable and truly modular ligand-responsive  riboswitches/<br/>ribozymes, while the methodology is automated design of synthetic  ribosome binding sites (RBS) with customized translation rate. When combining  them together, a quantitative correlation between the concentration of specific  ligand and synthetic RBS strength can be established. To learn more, please <a href="https://2011.igem.org/Team:Peking_R/Project" class="project">click</a> here.</p>
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   <p class="mainbody">In our project, we are aiming  at establishing an extensible and versatile platform for the softcoding of  genetic program in bacteria, composed of a toolbox and a methodology. The  toolbox consists of interoperable and truly modular ligand-responsive  riboswitches/ ribozymes, while the methodology is automated design of synthetic  ribosome binding sites (RBS) with customized translation rate. When combining  them together, a quantitative correlation between the concentration of specific  ligand and synthetic RBS strength can be established. To learn more, please <a href="https://2011.igem.org/Team:Peking_R/Project" class="project">click</a> here.</p>
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   <p class="mainbody">We've submitted a set of riboswitches/ribozymes whi-ch can response to different ligands. Besides, we have handed in parts containing violacein operon which are optimized to produce  more violacein in bacteria. Click <a href="https://2011.igem.org/Team:Peking_R/Parts"><span class="parts">here</span></a> to learn more.</p>
   <p class="mainbody">We've submitted a set of riboswitches/ribozymes whi-ch can response to different ligands. Besides, we have handed in parts containing violacein operon which are optimized to produce  more violacein in bacteria. Click <a href="https://2011.igem.org/Team:Peking_R/Parts"><span class="parts">here</span></a> to learn more.</p>
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   <p>Our human practice project concerns on how the  deve-lopment synthetic biology affects the process of hori-zontal gene transfer bet-ween bacteria and influen-ces public health. To learn more, please click<a href="https://2011.igem.org/Team:Peking_R/HumanPractice"> <span class="humanpractice">here</span></a>.</p>
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   <p class="mainbody">Our human practice project concerns on how the  deve-lopment synthetic biology affects the process of hori-zontal gene transfer bet-ween bacteria and influen-ces public health. To learn more, please click<a href="https://2011.igem.org/Team:Peking_R/HumanPractice"> <span class="humanpractice">here</span></a>.</p>
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<div id="apDiv16"><span class="mainbody">Here we describe measu-res taken to ensure bio-safety in our project, ans-wering frequently asked questions  concerning abo-ut environment and public health. To get more infor-mation, please click <a href="https://2011.igem.org/Team:Peking_R/Biosafety"><span class="biosafety">here</span></a>.</span></div>
<div id="apDiv16"><span class="mainbody">Here we describe measu-res taken to ensure bio-safety in our project, ans-wering frequently asked questions  concerning abo-ut environment and public health. To get more infor-mation, please click <a href="https://2011.igem.org/Team:Peking_R/Biosafety"><span class="biosafety">here</span></a>.</span></div>
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       <th bgcolor="#FBFBFB" scope="col"><a href="http://english.pku.edu.cn/"><img src="http://www.chem.pku.edu.cn/chenpeng/igem/images/pku.png" alt="" width="120" height="120" /></a></th>
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       <th bgcolor="#FBFBFB" scope="col"><a href="https://2011.igem.org/Main_Page"><img src="https://static.igem.org/mediawiki/2011/0/00/PekingR_Igem2.png" alt="" width="138" height="90" /></a></th>
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       <th bgcolor="#FBFBFB" scope="col"><a href="https://2011.igem.org/Main_Page"><img src="http://www.chem.pku.edu.cn/chenpeng/igem/images/igem.png" alt="" width="150" height="115" /></a></th>
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       <th bgcolor="#FBFBFB" scope="col"><a href="http://www.biolog.de/home/"><img src="https://static.igem.org/mediawiki/2011/e/ec/Pekingr2-3.gif" alt="" width="215" height="90" /></a></th>
       <th bgcolor="#FBFBFB" scope="col"><a href="http://www.biolog.de/home/"><img src="https://static.igem.org/mediawiki/2011/e/ec/Pekingr2-3.gif" alt="" width="215" height="90" /></a></th>

Revision as of 03:28, 5 October 2011

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In our project, we are aiming at establishing an extensible and versatile platform for the softcoding of genetic program in bacteria, composed of a toolbox and a methodology. The toolbox consists of interoperable and truly modular ligand-responsive riboswitches/ ribozymes, while the methodology is automated design of synthetic ribosome binding sites (RBS) with customized translation rate. When combining them together, a quantitative correlation between the concentration of specific ligand and synthetic RBS strength can be established. To learn more, please click here.

Peking_R team of iGEM 2011 consists of 11 undergraduate students who are enthusiastic towards synthetic biology.

To know more about us and our work,please visit
our Team page
and our
Notebook.

We've submitted a set of riboswitches/ribozymes whi-ch can response to different ligands. Besides, we have handed in parts containing violacein operon which are optimized to produce more violacein in bacteria. Click here to learn more.

Our human practice project concerns on how the deve-lopment synthetic biology affects the process of hori-zontal gene transfer bet-ween bacteria and influen-ces public health. To learn more, please click here.

Here we describe measu-res taken to ensure bio-safety in our project, ans-wering frequently asked questions concerning abo-ut environment and public health. To get more infor-mation, please click here.

It is an unforgettable sum-mer we fight for our dreams and the honour of Peking iGEM team.

Photos recorded every foot-print of everyone. Please click here to join us together!