Team:SYSU-China/project

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           <td width="76" align="center" valign="middle"><p>&nbsp;</p>
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           <td width="76" align="center" valign="middle"><p align="center" class="style1">Background</p></td>
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            <p class="style1">Background</p></td>
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           <td width="20">&nbsp;</td>
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           <td width="72" align="center" valign="middle"><p>&nbsp;</p>
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           <td width="72" align="center" valign="middle"><p><a href="https://2012.igem.org/Team:SYSU-China/project/cyclecontrol" class="style1">M1:Cycle Control</a></p></td>
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            <p><a href="https://2012.igem.org/Team:SYSU-China/project/cyclecontrol" class="style1">Cycle Control</a><a href="https://2012.igem.org/Team:SYSU-China/project/firstsight" class="style1"></a></p></td>
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           <td width="15">&nbsp;</td>
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           <td width="73" align="center" valign="middle"><p>&nbsp;</p>
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           <td width="73" align="center" valign="middle"><p><a href="https://2012.igem.org/Team:SYSU-China/project/quorumtransform" class="style1">M2:Quorum Transform</a></p></td>
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            <p><a href="https://2012.igem.org/Team:SYSU-China/project/quorumtransform" class="style1">Quorum Transform</a><a href="https://2012.igem.org/Team:SYSU-China/project/industrialapplication" class="style1"></a></p></td>
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           <td width="76" align="center" valign="middle"><p class="style1"><a href="https://2012.igem.org/Team:SYSU-China/project/supergeneguard">M3: Super Geneguard</a></p></td>
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            <p><a href="https://2012.igem.org/Team:SYSU-China/project/theoreticalvalue" class="style1">Theoretical Valuel</a></p></td>
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           <td width="84" align="center" valign="middle"><p><a href="https://2012.igem.org/Team:SYSU-China/project/manufactureapplications" class="style1"></a><a href="https://2012.igem.org/Team:SYSU-China/project/theoreticalvalue" class="style1">Theoretical Significance</a></p></td>
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           <td width="72" align="center" valign="middle"><p><a href="https://2012.igem.org/Team:SYSU-China/project/manufactureapplications" class="style1">Industrial Applications</a></p></td>
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            <p><a href="https://2012.igem.org/Team:SYSU-China/project/supergeneguard" class="style1">Super Geneguard</a></p></td>
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       <td width="179" height="70" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/notebookl">Notebook</a></span></td>
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       <td width="179" height="77" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/notebook">Notebook</a></span></td>
       <td width="46" rowspan="8">&nbsp;</td>
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       <td width="612" rowspan="8" align="center" valign="middle"><div style="height:590px;width:612px;overflow:scroll">
       <td width="612" rowspan="8" align="center" valign="middle"><div style="height:590px;width:612px;overflow:scroll">
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      <p><img src="https://static.igem.org/mediawiki/2012/c/cf/SYSU-overview.jpg" width="516" height="516"></p>
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         <p align="left" class="style1">We have turn engineering a gene into engineering a pathway, and we have lots of approaches to maintain the stability of the whole system. In terms of cells, it is difficult to satisfy what we need only by engineering a cell, because we require a mixture of different kind of cells to do more complex things. However, it is still very difficult for us to build such a mixed system, and the priority is how to balance suitable rate of different cell quorum. A suitable proportion is about correct result and max efficiency.  </p>
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        src="http://www.youtube.com/embed/bJ3SEOJUDXs" frameborger="0"
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         <p align="left" class="style1">To accomplish this function, we found several proteins that inhibit E.coli replication initiation, and also built a quorum density inducible bistable switch to gain new balance. </p>        <p align="left" class="style1">This system is not only useful for acquiring suitable proportion of a mixed culture quorum, but also of great theoretical meaning and Application value as we proved.</p></td>
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        allowfullscreen></iframe>&nbsp;</p>
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        <p>&nbsp;</p>
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         <p align="left" class="style1">We have turned engineering a gene into engineering a pathway, and we have made lots of approaches to maintain stability of the whole system. In terms of cells, it is difficult to satisfy what we need if only by engineering a cell, because we require a mixture of different kinds of cells to do more complex tasks. However, it is still very difficult for us to build such a mixed system, and the priority is how to balance a suitable rate of different cell quorum. An appropriate proportion is important to the correct results and max efficiency. </p>
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        <p align="center" class="style1"><img src="https://static.igem.org/mediawiki/2012/c/cf/SYSU-overview.jpg" width="516" height="516"></p>
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         <p align="left" class="style1">To accomplish this function, we found several proteins which can inhibit E.coli replication initiation, and we also built a “quorum density inducible— bistable switch” to gain a new balance.</p>         
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        <p align="left" class="style1">This system is not only useful for acquiring suitable proportion of a mixed culture quorum, but also has a great <a href="https://2012.igem.org/Team:SYSU-China/project/theoreticalvalue" class="style3">theoretical significance</a> and <a href="https://2012.igem.org/Team:SYSU-China/project/manufactureapplications">application value</a> as we proved below.</p></td>
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       <td height="80" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China.humanpractice">Human Practice</a></span></td>
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       <td height="77" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China.humanpractice">Human Practice</a></span></td>
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       <td height="76" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/achievement">Achievement</a></span></td>
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       <td height="77" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/achievement">Achievement</a></span></td>
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       <td height="76" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/modeling">Modeling</a></span></td>
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       <td height="77" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/modeling">Modeling</a></span></td>
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       <td height="79" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/team">Team</a></span></td>
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       <td height="77" align="center" valign="middle"><span class="style2"><a href="https://2012.igem.org/Team:SYSU-China/team">Team</a></span></td>
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Latest revision as of 03:11, 27 September 2012

 

Background

 

M1:Cycle Control

 

M2:Quorum Transform

 

M3: Super Geneguard

 

Theoretical Significance

 

Industrial Applications

  Notebook  

 

 

We have turned engineering a gene into engineering a pathway, and we have made lots of approaches to maintain stability of the whole system. In terms of cells, it is difficult to satisfy what we need if only by engineering a cell, because we require a mixture of different kinds of cells to do more complex tasks. However, it is still very difficult for us to build such a mixed system, and the priority is how to balance a suitable rate of different cell quorum. An appropriate proportion is important to the correct results and max efficiency.

To accomplish this function, we found several proteins which can inhibit E.coli replication initiation, and we also built a “quorum density inducible— bistable switch” to gain a new balance.

This system is not only useful for acquiring suitable proportion of a mixed culture quorum, but also has a great theoretical significance and application value as we proved below.

Human Practice
Achievement
Modeling
Team
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