Team:Exeter

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<p> Synthetic biology has lead to microorganisms being pushed into an unprecedented range of novel functions.  Many bacterial systems currently rely on external stimuli to induce transcription. One dimensional protocols often require constant monitoring of applied chemical concentrations, leading to them becoming inept for more complex systems.  A triplet of NOT gated photoreceptors in Escherichia coli, will be used to create a system which is finely controlled using only light. This will be showcased using magenta, cyan and yellow pigments as outputs. Varying the intensity and wavelength of light projected onto E. coli will control the shade and colour produced, respectively. Hence, this will show the versatility of the optical control by creating a full colour bio-camera. Additionally, using bacteria to produce an image vastly increases the resolution when compared to conventional cameras, due to the micrometre scale of bacteria.
 
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Our wiki is currently in development, if you have any questions for our team, please email igem@ex.ac.uk
 
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== Creating the World's First Full Colour Biocamera == __NOTOC__ 
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[[File:Paint_by_coli.png|right|250px|]] Exeter iGEM 2013 are a team comprising of 11 second year undergraduates from the College of Engineering, Mathematics and Physical Sciences and the College of Life and Environmental Sciences. Together we plan to engineer <i>E. coli</i> to detect red, green and blue light and produce the correct mix of cyan, magenta and yellow pigments to accurately recreate an exposed image. Our project aims to build a foundation for the precise optical control of biological systems using multiple wavelength light. This has potential in material manufacturing, imaging and will advance our understanding of synthetic biology as a whole. </div>
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Latest revision as of 14:40, 16 October 2013

Exeter iGEM 2013 · Paint by Coli

Creating the World's First Full Colour Biocamera

Paint by coli.png
Exeter iGEM 2013 are a team comprising of 11 second year undergraduates from the College of Engineering, Mathematics and Physical Sciences and the College of Life and Environmental Sciences. Together we plan to engineer E. coli to detect red, green and blue light and produce the correct mix of cyan, magenta and yellow pigments to accurately recreate an exposed image. Our project aims to build a foundation for the precise optical control of biological systems using multiple wavelength light. This has potential in material manufacturing, imaging and will advance our understanding of synthetic biology as a whole.
Bannerexeter.png


Exeter iGEM 2013 · Paint by Coli