Team:USTC-China

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<font size="4">'''We have built a complex system composed of basic biobricks in which remarkable control of bacteria movement can be realized.'''</font>
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<font size="4"><p style="font-family:Palatino, serif" align="center">Built a complex system composed of basic biobricks in which remarkable control of bacteria movement can be realized.</p></font>
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[[File:Sunshine.png|30px]]<font size="3">We have successfully built biobricks of vital gene in chemotaxis and compatible riboswitch for theophylline.</font>
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*We have successfully built biobricks of vital gene in chemotaxis and compatible riboswitch for theophylline.
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[[File:Sunshine.png|30px]]<font size="3">We have contributed to modulating existing biobrick and take advantage of its flexible ratio in our project.</font>
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*We have contributed to modulating existing biobrick and take advantage of its flexible ratio in our project.
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[[File:Sunshine.png|30px]]<font size="3">We have developed innovative application of our basic design.</font>
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*We have developed innovative application of our basic design.
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                       </html> [[File:Results12.jpg|170px|center]]<html>We have successfully constructed a novel system in which bacterial colonies will automatically divide into two parts after certain time. We have successfully assembled riboswitches finely tuned by small molecules and toggle switches pushed on and off while memorizing current state.</div>
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                       </html> [[File:Results12.jpg|170px|center|link=Team:USTC-China/Project]]<html>Construct a novel system in which bacterial colonies will automatically divide into two parts after certain time & Assemble Riboswitches finely tuned by small molecules and Toggle Switches pushed on and off.</div>
                          
                          
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                       </html>[[File:Mo0del.png|170px|center]] <html>Here we present modeling of our system in order to verify our design and help constructing new systems. Besides we have detailed analysis of riboswitches invovled in our system.You can also find it under Dry Lab                        </div>
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                       </html>[[File:Mo0del.png|170px|center|link=Team:USTC-China/Drylab/modeling]] <html>Bulid a model of our system to verify our design and help constructing new systems. & Analyse  Riboswitches invovled in our systems.</div>
                          
                          
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                         <div class="box_text"></html>[[File:Team-ustc.png|170px|center|link=Team:USTC-China/Team]] <html>
                   We are USTC-IGEMers from variant departments and grades and build our project together. We have a happy summer together and would like to share it~                        </div>
                   We are USTC-IGEMers from variant departments and grades and build our project together. We have a happy summer together and would like to share it~                        </div>
                          
                          
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                         <div class="box_text"></html>[[File:Humanpra.png|170px|center]] <html>
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                         <div class="box_text"></html>[[File:Humanpra.png|170px|center|link=Team:USTC-China/Human_practice]] <html>
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                         In our project, we have always been focusing biosafety and issued our own Biosafety Three Laws. Furthermor, we found speacail groups and conduct surveys and open days to get people informed of synthetic biology.                          </div>
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                         In our project, we have always been focusing biosafety and issued our own Biosafety protocol. Furthermor, we found speacail groups and conduct surveys and open days to get people informed of synthetic biology.                          </div>
                          
                          
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<p align="center"><a href="http://www.ustcif.org"><img src="https://static.igem.org/mediawiki/2011/b/ba/USTC_Software_IF_LOGO.jpg" width="250" height="59"></a>
<p align="center"><a href="http://www.ustcif.org"><img src="https://static.igem.org/mediawiki/2011/b/ba/USTC_Software_IF_LOGO.jpg" width="250" height="59"></a>
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<a href="http://www.teach.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/1/11/USTC_Software_TAO_LOGO.png" width="250" height="56"></a><a href="http://biox.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/d/d3/USTC_Software_sols.png" width="250" height="56"></a> <a href="http://en.gradschool.ustc.edu.cn/"></p>
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<a href="http://www.teach.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/1/11/USTC_Software_TAO_LOGO.png" width="250" height="56"></a>
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<a href="http://biox.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/d/d3/USTC_Software_sols.png" width="250" height="56"></a> </p>
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<img src="https://static.igem.org/mediawiki/2011/e/ef/USTC_Software_ADGE_LOGO.png" width="192" height="56"><a href="http://sist.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/1/18/USTC_Software_information.png" width="192" height="56"><a href="http://math.ustc.edu.cn/Ch/"><img src="https://static.igem.org/mediawiki/2011/c/cf/USTC_Software_math.jpg" width="192" height="56"><img src="https://static.igem.org/mediawiki/2011/2/25/USTC_Software_chemistry.jpg" width="192" height="56"><img src="https://static.igem.org/mediawiki/2011/2/29/Scgy.jpg
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<a href="http://en.gradschool.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/e/ef/USTC_Software_ADGE_LOGO.png" width="180" height="56"></a>
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<a href="http://sist.ustc.edu.cn/"><img src="https://static.igem.org/mediawiki/2011/1/18/USTC_Software_information.png" width="180" height="56"></a>
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<a href="http://math.ustc.edu.cn/Ch/"><img src="https://static.igem.org/mediawiki/2011/c/cf/USTC_Software_math.jpg" width="180" height="56"></a>
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<img src="https://static.igem.org/mediawiki/2011/2/25/USTC_Software_chemistry.jpg" width="180" height="56">
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<img src="https://static.igem.org/mediawiki/2011/2/29/Scgy.jpg" width="180" height="56"></p>
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Latest revision as of 03:26, 29 October 2011

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MODULE.png

RESULTS.png

GALLARY.png

MODELING.png



Built a complex system composed of basic biobricks in which remarkable control of bacteria movement can be realized.

Sunshine.pngWe have successfully built biobricks of vital gene in chemotaxis and compatible riboswitch for theophylline.

Sunshine.pngWe have contributed to modulating existing biobrick and take advantage of its flexible ratio in our project.

Sunshine.pngWe have developed innovative application of our basic design.



Visitors

Project
+ Details

Results12.jpg
Construct a novel system in which bacterial colonies will automatically divide into two parts after certain time & Assemble Riboswitches finely tuned by small molecules and Toggle Switches pushed on and off.




Modeling
+ Details

Mo0del.png
Bulid a model of our system to verify our design and help constructing new systems. & Analyse Riboswitches invovled in our systems.

Team
+ Details

Team-ustc.png
We are USTC-IGEMers from variant departments and grades and build our project together. We have a happy summer together and would like to share it~

Human Practice+ Details

Humanpra.png
In our project, we have always been focusing biosafety and issued our own Biosafety protocol. Furthermor, we found speacail groups and conduct surveys and open days to get people informed of synthetic biology.