Team:Braunschweig
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- | <h2><a href="# | + | <h2><a href="#IHKnews">iGEM Braunschweig featured in IHK newsletter (August 5th, 2013)</a></h2> |
<p><p style=" margin-left:5px; margin-right:5px;">The IHK innovation & environment newsletter was published und our team was featured! <a href="http://www.braunschweig.ihk.de/geschaeftsfelder/innovation-umwelt/i-u-nachrichten-2013/august-2013/01-aktuelles/team-der-tu-braunschweig-nimmt-an-internationalem-bio-wettbewerb-teil.html">Here</a> you can find the article.</p> | <p><p style=" margin-left:5px; margin-right:5px;">The IHK innovation & environment newsletter was published und our team was featured! <a href="http://www.braunschweig.ihk.de/geschaeftsfelder/innovation-umwelt/i-u-nachrichten-2013/august-2013/01-aktuelles/team-der-tu-braunschweig-nimmt-an-internationalem-bio-wettbewerb-teil.html">Here</a> you can find the article.</p> | ||
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Revision as of 08:43, 9 August 2013
Achievements
Our project
In nature microorganisms commonly live in symbiosis, be it in form of a protective biofilm or as composite organism[s] such as lichen (a symbiosis of algae/cyanobacteria and fungi). Members of this symbiotic community secrete chemicals that offer protection and nutrition or neutralize toxins.
The goal of the iGEM Team Braunschweig is to create a synergetic system similar to a natural symbiosis. During the course of our project we want to clone three individual mutant strains of the bacterium Escherichia coli which can only survive as a community – if one dies, they all die.
To achieve this, each strain bears a plasmid that confers antibiotic resistance upon activation of a two-component transcription activator.
The key feature of our system: only one component can be synthesized by each strain alone. The other half of a transcription activator is produced by another strain and secreted into the medium.
You can find amore detailed project description here!