Team:Tsinghua-A

From 2011.igem.org

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<h2 class="title">Welcome to ECHO,Tsinghua-A </a></h2>
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<h2 class="title">Project ECHO Overview, brought to you by Tsinghua-A </a></h2>
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<p>This wiki index page is just temporary, a index page based on Flash is under construction.</p>
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<p>During the season, we will dedicate in pursuing the goal of the construction of a biological oscillator, which we call ‘ECHO’, the abbreviation of ‘the E.Coli Homochronous Oscillator’.
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With two Escherichia coli populations expressing gene one after another, they give red and green fluorescent light alternately. E.coli populations communicate bi-directionally by a class of signaling molecules involves in bacteria quorum sensing, that is, N-Acyl homoserine lactones (AHL), to regulate the gene expression of each other. By engineering their gene circuits, two groups (name as CELL-A and CELL-B) will form a network, with B inducing A and A restricting B, thus able to realize oscillation. A mechanism is set up to change the rate of an AHL expression, allowing us to control the period and the phase of the oscillatory cycle.
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What’s more, we establish a mathematical model to analyze the dynamics of the system, and computer simulation software is introduced into the process. The comparison between the wet lab experiment and the simulating outcome contributes to a contemplated and well-planned designation of our project.</p>
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<p>This wiki index page is just temporary, a index page based on Flash is under construction.</p>
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<p>You can find our project abstract in PROJECT , safety Q&A in SAFETY. <p></p>
<p>You can find our project abstract in PROJECT , safety Q&A in SAFETY. <p></p>

Revision as of 13:52, 25 September 2011


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Project ECHO Overview, brought to you by Tsinghua-A

 

During the season, we will dedicate in pursuing the goal of the construction of a biological oscillator, which we call ‘ECHO’, the abbreviation of ‘the E.Coli Homochronous Oscillator’. With two Escherichia coli populations expressing gene one after another, they give red and green fluorescent light alternately. E.coli populations communicate bi-directionally by a class of signaling molecules involves in bacteria quorum sensing, that is, N-Acyl homoserine lactones (AHL), to regulate the gene expression of each other. By engineering their gene circuits, two groups (name as CELL-A and CELL-B) will form a network, with B inducing A and A restricting B, thus able to realize oscillation. A mechanism is set up to change the rate of an AHL expression, allowing us to control the period and the phase of the oscillatory cycle. What’s more, we establish a mathematical model to analyze the dynamics of the system, and computer simulation software is introduced into the process. The comparison between the wet lab experiment and the simulating outcome contributes to a contemplated and well-planned designation of our project.

This wiki index page is just temporary, a index page based on Flash is under construction.

You can find our project abstract in PROJECT , safety Q&A in SAFETY.

Just click the banner below the menu in case you wanna go back to the home page.