Team:Dundee/Digi-Poster

From 2013.igem.org

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      <!-- Title -->
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          <h2><b>Gallery </b> - Look at all the pretty pictures.</h2>
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            <!-- a very basic slider, note the structure of each item. you can add too but not take away (classes and id's that is) -->
 
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            <div id="slider" class="carousel slide">
 
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              <div class="carousel-inner">
 
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                <div class="item active"><!-- add the active class to any slider you want shown first -->
 
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                  <img src="https://static.igem.org/mediawiki/2013/3/31/TOXIMOPBanner-Dundee.jpg">
 
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                  <img src="https://static.igem.org/mediawiki/2013/1/11/TheProblem-Dundee.jpg">
 
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                  <img src="https://static.igem.org/mediawiki/2013/4/4e/TheSolution-Dundee.jpg">
 
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              <a class="left carousel-control " href="#slider" data-slide="prev">&lsaquo;</a>
 
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              <a class="right carousel-control " href="#slider" data-slide="next">&rsaquo;</a>
 
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            </div>
 
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Revision as of 10:18, 14 August 2013

iGEM Dundee 2013 · ToxiMop

The Microcystin Monster

Algal blooms are an ever-growing problem in freshwater systems. At the Beijing Olympics 2008, 10,000 people were hired to clean up the extensive algal bloom in time for the sailing regatta. The main concern is the level of a toxin called microcystin, which is released by cyanobacteria when they die and lyse.

Microcystin, a toxin released by Microcystis aeruginosa, is harmful to mammals due to its ability to latch on to the human protein PP1, thus ceasing its operation. We are exploiting the ability of the human protein phosphatase (PP1) to covalently bind to microcystin, in order to develop a biological mop ‘janitor’ to rid algal bloom water of the toxin.