Team:Imperial College/Summary
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{{Imperial/Box1|Modeling - Overview| | {{Imperial/Box1|Modeling - Overview| | ||
====== Growth Curve ====== | ====== Growth Curve ====== | ||
- | The growth of B. | + | The growth of B. subtilis was characterised by simulating it on MATLAB. The aim was to increase the predictability of its behaviour during the growth. Also, the characterisation acts as a way to verify the accuracy of the experimental results. Several parameters, such as the growth constant and the Hill coefficient, were determined. These were incorporated into the model to further enhance its accuracy. |
====== Genetic Circuit ====== | ====== Genetic Circuit ====== | ||
We have considered two mathematical models describing the time evolution of aspects of the genetic circuitry that comprise our device. We verify which model best describes the behaviour of the circuit using laboratory data. | We have considered two mathematical models describing the time evolution of aspects of the genetic circuitry that comprise our device. We verify which model best describes the behaviour of the circuit using laboratory data. | ||
====== Motility Analysis ====== | ====== Motility Analysis ====== | ||
- | We have developed a simple mechanical model for the swimming motility of ''B.subtilis''. Using manual tracking, we were able to extract x,y coordinate data from the cell trajectory. This allowed us to fit experimental data with our model. It was concluded that flagellum force of ''B.subtilis'' was exponentially distributed. | + | We have developed a simple mechanical model for the swimming motility of ''B. subtilis''. Using manual tracking, we were able to extract x,y coordinate data from the cell trajectory. This allowed us to fit experimental data with our model. It was concluded that flagellum force of ''B. subtilis'' was exponentially distributed. |
[[Image:Motility_Summary.jpg|center|600px]]<br> | [[Image:Motility_Summary.jpg|center|600px]]<br> | ||
|}} | |}} | ||
{{Imperial/Box1|Implementation| | {{Imperial/Box1|Implementation| | ||
- | Following the design stage of our project we moved on to the implementation stage. This involved construction of a cloning strategy, construction of our biobricks and transformation and characterisation of these biobricks in ''B.subtilis''. For more information on this aspect of the project please see the [https://2008.igem.org/Team:Imperial_College/Wet_Lab Wet Lab Hub] | + | Following the design stage of our project we moved on to the implementation stage. This involved construction of a cloning strategy, construction of our biobricks and transformation and characterisation of these biobricks in ''B. subtilis''. For more information on this aspect of the project please see the [https://2008.igem.org/Team:Imperial_College/Wet_Lab Wet Lab Hub] |
[[Image:Implementation.PNG|center|600px]] | [[Image:Implementation.PNG|center|600px]] | ||
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{{Imperial/Box1|Testing| | {{Imperial/Box1|Testing| | ||
The testing and validation of our project can be split into three main areas; | The testing and validation of our project can be split into three main areas; | ||
- | *'''Work with ''B.subtilis''''' - Including characterisation of growth curves and transformation, | + | *'''Work with ''B. subtilis''''' - Including characterisation of growth curves and transformation, |
*'''Characterisation and control of motility''' | *'''Characterisation and control of motility''' | ||
- | *'''Production of Biomaterials in B.subtilis''' | + | *'''Production of Biomaterials in ''B. subtilis''''' |
Please see the [https://2008.igem.org/Team:Imperial_College/Major_Results Results Page] for more information on the key results from the testing and validation. | Please see the [https://2008.igem.org/Team:Imperial_College/Major_Results Results Page] for more information on the key results from the testing and validation. |
Revision as of 16:38, 27 October 2008
Summer Summary
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