Team:XMU-China/Content

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<h3>XMU-iGEM 2013</h3>
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<h3>Overview</h3>
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<div class="about-us">
<div class="about-us">
<h4>Project</h4>
<h4>Project</h4>
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<p>By constructing robust circuits in E.coli, we built a gene network capable of synchronizing genetic oscillations in multiple levels (mainly AHL in liquid phase& H2O2 in gas). DNA agarose electrophoresis & SDS-page was used to confirm our construction.<br/>
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<p>Oscillations permeate every corner of the world, from the alternative current (AC) in power lines to our tiny microorganism friends. To use oscillations in bacteria as a strong and steady signal transmission method like AC, we need to tackle with the noise of transcription and translation in the cellular environment by coupling millions of cells through the synchronizing genetic oscillations in E.coli. At the colony level cells could be synchronized via quorum sensing, which is limited to tens of micrometers by the AHL, and between colonies a gas-phase redox (mainly H<sub>2</sub>O<sub>2</sub>) will serve as a signal that can give positive feedback to the whole circuit over millimeter scales simultaneously. On a liquid crystal display (LCD), like microfluidic arraybacteria grow in separate colonies so that synchronization in both levels could be verified visually. Now a robust synthetic biology signal converter is accomplished and ready to show the growth environment of cells.<br>
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In order to detect the oscillate in real time, we designed a liquid crystal display (LCD)-like microfluidic array which separates the bacteria in colonies.
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</p>
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<div class="go-to readmore no-margin-bottom">
<div class="go-to readmore no-margin-bottom">
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<a href="#">Read more</a>
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<a href="https://2013.igem.org/Team:XMU-China/Project">Read more</a>
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<div class="our-services">
<div class="our-services">
<h4>Software</h4>
<h4>Software</h4>
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<p>We coded two software by Matlab related our experiment.<br/>
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<p>We coded two softwares with Matlab related to our experiment.<br/>
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First one is Gene OS, the model of oscillation which simulates our circuit and compares various results with different initial conditions. This gave us a deeper understanding about the mechanism.<br/>
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First one is Gene OS, the model of oscillation which simulates our circuit and compares various results with different initial conditions. This gave us a deeper understanding of the mechanism.<br/>
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The other one is ImageMe which offers batch processing function and reduces much of time in analyzing the microfluidic images.<br/>
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The other one is ImageMe which offers batch processing function and saves much of time in analyzing the microfluidic images.<br/>
</p>
</p>
<div class="go-to readmore no-margin-bottom">
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<a href="#">Read more</a>
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<a href="https://2013.igem.org/Team:XMU-China/Software">Read more</a>
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<h6><a href="#">Gene OS</a></h6>
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<h6><a href="https://2013.igem.org/Team:XMU-China/Software#Gene_OS">Gene OS</a></h6>
<img  src="https://static.igem.org/mediawiki/2013/e/e0/Xmu-Model31.jpg" width=80px height=120px alt="" />
<img  src="https://static.igem.org/mediawiki/2013/e/e0/Xmu-Model31.jpg" width=80px height=120px alt="" />
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<h6><a href="#">ImageMe</a></h6>
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<h6><a href="https://2013.igem.org/Team:XMU-China/Software#ImageMe">ImageMe</a></h6>
<img  src="https://static.igem.org/mediawiki/2013/d/de/Xmu-Model21.png"width=80px height=120px alt="" />
<img  src="https://static.igem.org/mediawiki/2013/d/de/Xmu-Model21.png"width=80px height=120px alt="" />
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<div class="about-us">
<div class="about-us">
<h4>Human Practice</h4>
<h4>Human Practice</h4>
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<p>Our team has held a series of events as human practice. Throughout the whole July, we has drawn a doodle about iGEM, held a garden party and exhibition, made a questionnaire survey and hosted a synthetic biology lecture.<br/>  
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<p>Our team has held a series of events as human practice. During the whole July, we has drawn a doodle about iGEM, held a garden party and exhibition, made a questionnaire survey and hosted a synthetic biology lecture.<br/>  
Our aim is to let participants have a better understanding of iGEM, synthetic biology as well as the wet lab safety.<br/>  
Our aim is to let participants have a better understanding of iGEM, synthetic biology as well as the wet lab safety.<br/>  
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<br/>
 
Every event has its unique charm of being favored and welcomed!<br/>  
Every event has its unique charm of being favored and welcomed!<br/>  
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<a href="#">Read more</a>
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<a href="https://2013.igem.org/Team:XMU-China/Human_Practice">Read more</a>
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<div class="our-services">
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<h4>Society & Safety</h4>
<h4>Society & Safety</h4>
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<p>Nowadays, more and more people tend to build an environmentally friendly society and take more seriously about the safety issues of wet lab.<br/>  
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<p>Nowadays, more and more people tend to build an environmentally friendly society and take issues of safety of wet lab more seriously.<br/>  
Our team used non-pathogenic E. coli strains to construct our circuit and gathered all culture fluid and culture medium with cells for unified treatment.<br/>  
Our team used non-pathogenic E. coli strains to construct our circuit and gathered all culture fluid and culture medium with cells for unified treatment.<br/>  
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A series of other measurements were taken to reach the safety requirements.<br/>  
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A series of other measurements were taken to meet the safety requirements.<br/>  
</p>
</p>
<div class="go-to readmore no-margin-bottom">
<div class="go-to readmore no-margin-bottom">
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<a href="#">Read more</a>
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<a href="https://2013.igem.org/Team:XMU-China/Safety">Read more</a>
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Latest revision as of 13:18, 26 October 2013

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Overview

Project

Oscillations permeate every corner of the world, from the alternative current (AC) in power lines to our tiny microorganism friends. To use oscillations in bacteria as a strong and steady signal transmission method like AC, we need to tackle with the noise of transcription and translation in the cellular environment by coupling millions of cells through the synchronizing genetic oscillations in E.coli. At the colony level cells could be synchronized via quorum sensing, which is limited to tens of micrometers by the AHL, and between colonies a gas-phase redox (mainly H2O2) will serve as a signal that can give positive feedback to the whole circuit over millimeter scales simultaneously. On a liquid crystal display (LCD), like microfluidic array, bacteria grow in separate colonies so that synchronization in both levels could be verified visually. Now a robust synthetic biology signal converter is accomplished and ready to show the growth environment of cells.

Software

We coded two softwares with Matlab related to our experiment.
First one is Gene OS, the model of oscillation which simulates our circuit and compares various results with different initial conditions. This gave us a deeper understanding of the mechanism.
The other one is ImageMe which offers batch processing function and saves much of time in analyzing the microfluidic images.

Human Practice

Our team has held a series of events as human practice. During the whole July, we has drawn a doodle about iGEM, held a garden party and exhibition, made a questionnaire survey and hosted a synthetic biology lecture.
Our aim is to let participants have a better understanding of iGEM, synthetic biology as well as the wet lab safety.
Every event has its unique charm of being favored and welcomed!

Society & Safety

Nowadays, more and more people tend to build an environmentally friendly society and take issues of safety of wet lab more seriously.
Our team used non-pathogenic E. coli strains to construct our circuit and gathered all culture fluid and culture medium with cells for unified treatment.
A series of other measurements were taken to meet the safety requirements.