Team:Imperial College London

From 2011.igem.org

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pausecontent[3]='<h2>"Plant synthetic biology has been under-appreciated."</h2><h3><a href="http://www.hms.harvard.edu/agingresearch/pages/pamelasilver.htm" target="_blank">Prof. Pamela Silver, Harvard Medical School</a></h3>'
pausecontent[3]='<h2>"Plant synthetic biology has been under-appreciated."</h2><h3><a href="http://www.hms.harvard.edu/agingresearch/pages/pamelasilver.htm" target="_blank">Prof. Pamela Silver, Harvard Medical School</a></h3>'
pausecontent[4]='<h2>"I must say I’m impressed with the idea of your group."</h2><h3><a href="http://www.syngenta.com/country/uk/en/Pages/home.aspx/" target="_blank">Mathijs Wuts, Syngenta</a></h3>'
pausecontent[4]='<h2>"I must say I’m impressed with the idea of your group."</h2><h3><a href="http://www.syngenta.com/country/uk/en/Pages/home.aspx/" target="_blank">Mathijs Wuts, Syngenta</a></h3>'
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pausecontent[5]='<h2>"I was really impressed with your project, its really cool how you have so many modules built into one system"</h2><h3><a href="http://igemwatch.net/?page_id=2" target="_blank">Christian Lund, iGEM Watch</a></h3>'
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pausecontent[5]='<h2>"I was really impressed with your project, its really cool how you have so many modules built into one system"</h2><h3><a href="http://igemwatch.net/?page_id=2" target="_blank">Lars Christian, iGEM Watch</a></h3>'
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Revision as of 13:13, 14 September 2011



Welcome to the Imperial College London iGEM 2011 website



Project Outline

Engineering bacteria to help fight soil erosion

In arid areas of the world soil erosion is a massive problem. It is caused by wind and rain sweeping away the fertile top soil and can eventually result in desertification.

Climate change and unsustainable farming practices are accelerating the rate of desertification to over 31,000 hectares/day. That’s 62, 000 football pitches in a day or half the size of the UK every year.

In ordinary circumstances the roots of well established plants help to hold down the top soil, protecting it from erosion. In areas that suffer desertification however plants do not get the chance to establish large enough root networks to anchor the soil and themselves before erosion occurs.

This year, Imperial College’s iGEM team have joined the international effort to fight desertification.

We hope to engineer bacteria to accelerate plant root development. The bacteria will be designed to secrete the hormone auxin. Seeds will be coated with the bacteria and then planted in the soil. Once the seeds germinate the bacteria will move towards the roots and be taken in by the plant. Inside the roots the bacteria will release auxin – promoting growth and protecting the soil from erosion.

Modules

Our project consists of 3 modules: Phyto-Route, Auxin Xpress and Gene Guard.

Computer graphics of summary of modules

The Engineering Cycle

Each module is carried out following the engineering cylcle shown below.

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