Team:USTC CHINA/Modeling/KillSwitch
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<li><a href="https://2013.igem.org/Team:USTC_CHINA/Project/Overview">Overview</a></li> | <li><a href="https://2013.igem.org/Team:USTC_CHINA/Project/Overview">Overview</a></li> | ||
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<li><a href="https://2013.igem.org/Team:USTC_CHINA/Project/Results">Results</a></li> | <li><a href="https://2013.igem.org/Team:USTC_CHINA/Project/Results">Results</a></li> | ||
<li><a href="https://2013.igem.org/Team:USTC_CHINA/Parts">Parts</a></li> | <li><a href="https://2013.igem.org/Team:USTC_CHINA/Parts">Parts</a></li> | ||
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<img class="linegraph" src="https://static.igem.org/mediawiki/2013/2/26/Suicide1.png"></br></br> | <img class="linegraph" src="https://static.igem.org/mediawiki/2013/2/26/Suicide1.png"></br></br> | ||
At the first glance this graph seemed fine. Initially the concentration of SdpC decreased slightly due to the capturing of SdpI and the repression of float SdpR, but gradually the positive feedback loop works, and C<sub>f</sub> increases rapidly. But when we turned our attention to the curves of other parameters, things seemed not so perfect:</br> | At the first glance this graph seemed fine. Initially the concentration of SdpC decreased slightly due to the capturing of SdpI and the repression of float SdpR, but gradually the positive feedback loop works, and C<sub>f</sub> increases rapidly. But when we turned our attention to the curves of other parameters, things seemed not so perfect:</br> | ||
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<div><img class="linegraph" src="https://static.igem.org/mediawiki/2013/c/cf/Suicide2.png"></br></br> | <div><img class="linegraph" src="https://static.igem.org/mediawiki/2013/c/cf/Suicide2.png"></br></br> | ||
The curve of I<sub>m</sub>, C<sub>i</sub> and R<sub>i</sub> contradicted our common sense severely. First, I<sub>m</sub>>C<sub>i</sub>>R<sub>i</sub> is expected to be tenable all the time, which precludes the intersects among the three curves; Second, there is no mechanism in this system that could decrease their concentration, and all of them are increasing function; Third and most serious, never will them be negative, as they represent the concentration of real substances. | The curve of I<sub>m</sub>, C<sub>i</sub> and R<sub>i</sub> contradicted our common sense severely. First, I<sub>m</sub>>C<sub>i</sub>>R<sub>i</sub> is expected to be tenable all the time, which precludes the intersects among the three curves; Second, there is no mechanism in this system that could decrease their concentration, and all of them are increasing function; Third and most serious, never will them be negative, as they represent the concentration of real substances. | ||
Then we adjusted the parameters slightly for several times. To eliminate those absurd curves, we reconsidered some assumptions. | Then we adjusted the parameters slightly for several times. To eliminate those absurd curves, we reconsidered some assumptions. | ||
- | Here we listed another representative group of parament values and relative graph: | + | Here we listed another representative group of parament values and relative graph:</div></br></br> |
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<h1>Discussion on colonies</h1> | <h1>Discussion on colonies</h1> | ||
In reality, the engineered bacteria aims at killing its siblings instead of itself, and at first almost all toxin SdpC will be secreted outside the bacteria. Assume the diffusion of toxin among cells comply with diffusion law, that is, the diffusion rate is proportionate with the gradient of concentration. Further assume the death concentration of SdpC is same to all bacteria expect those who contain this locus, the average life expectancy is bacteria will hinge on the rate and distribution of engineered bacteria, and the distribution of life expectancy of bacteria is similar to that of average free path of gas molecules. | In reality, the engineered bacteria aims at killing its siblings instead of itself, and at first almost all toxin SdpC will be secreted outside the bacteria. Assume the diffusion of toxin among cells comply with diffusion law, that is, the diffusion rate is proportionate with the gradient of concentration. Further assume the death concentration of SdpC is same to all bacteria expect those who contain this locus, the average life expectancy is bacteria will hinge on the rate and distribution of engineered bacteria, and the distribution of life expectancy of bacteria is similar to that of average free path of gas molecules. | ||
As long the coefficient of diffusion is large enough, any engineered bacterias, no matter how few, is adequate to devastate the whole colony. Alike to the average free path of thin gas, the average suicide time of the whole reporter system is inversely proportional with the square root of the rate of engineer bacteria containing this locus. | As long the coefficient of diffusion is large enough, any engineered bacterias, no matter how few, is adequate to devastate the whole colony. Alike to the average free path of thin gas, the average suicide time of the whole reporter system is inversely proportional with the square root of the rate of engineer bacteria containing this locus. | ||
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<h1>References</h1> | <h1>References</h1> | ||
- | + | Parallel pathways of repression and antirepression governing the transition to stationary phase in Bacillus subtilis | |
+ | AV Banse, A Chastanet, L Rahn-Lee…,PNAS ,2008 </br> | ||
</div> | </div> | ||
Revision as of 18:21, 27 September 2013