Team:St Andrews

From 2012.igem.org

(Difference between revisions)
 
(193 intermediate revisions not shown)
Line 4: Line 4:
<head>
<head>
     <title>StA iGEM Wiki 2012 - Home</title>
     <title>StA iGEM Wiki 2012 - Home</title>
 +
   
 +
    <link href='http://fonts.googleapis.com/css?family=PT+Serif:400,700italic,700&subset=latin,cyrillic' rel='stylesheet' type='text/css'>
 +
<style type="text/css">
 +
 +
#logo {
 +
        font-family: "PT Serif", Arial, serif; font-weight: 700;
 +
      }
 +
#font-bigger {
 +
        font-size: 100px;
 +
      }
 +
#font-thin {
 +
        font-family: "PT Sans", Arial, serif; font-weight: 300;
 +
      }
 +
.btn-group {line-height:2}
 +
</style>
 +
</head>
</head>
-
<body>
+
<body id="body-pattern">
 +
<script type="text/javascript">//<![CDATA[
 +
$(function(){
 +
$(' #sameheight').css({
 +
    'height': $('#sameheight').height() + 30
 +
});
 +
});//]]> 
-
    <div class="hero-unit span12">
+
</script>
-
        <div class="row">
+
    <div class="container" id="content-container">
-
            <div class="span12">
+
-
                <h1>St Andrews iGEM 2012</h1>
+
-
                 <p>University of St Andrews team for the 2012 <em>International Genetically Engineered Machine competition</em></p>
+
 
 +
 
 +
    <div class="hero-unit span10" style="background-color:#ffffff">
 +
        <div class="row">
 +
            <div class="span8">
 +
                <h1 id="font-bigger"><b><i id="logo">re</i><font size="4">    </font></b><span id="font-thin">source</span></h1>
 +
                 <p>University of St Andrews' team for 2012 <em>International Genetically Engineered Machine competition</em></p>
 +
<p>Alternative omega-3 production and novel metal recovery methods</p>
             </div>
             </div>
-
             <div class="span2"><img src="https://static.igem.org/mediawiki/2012/a/ad/Crest.gif" alt="University of St Andrews coat of arms"></div>
+
             <div class="span2"><img src="https://static.igem.org/mediawiki/2012/a/ad/Crest.gif" alt="University of St Andrews coat of arms" /></div>
         </div><!--
         </div><!--
         <div class="jumbotron" id="jumbotron" align="center">
         <div class="jumbotron" id="jumbotron" align="center">
Line 23: Line 50:
         -->
         -->
     </div>
     </div>
-
 
     <div class="container-fluid">
     <div class="container-fluid">
         <div class="row-fluid">
         <div class="row-fluid">
-
             <div class="well span6">
+
             <div class="span6">
-
                <h1>Metal binding protein</h1>
+
<h1><a href="https://2012.igem.org/Team:St_Andrews/metal-binding">Metal binding protein</a></h1>
 +
<div class="btn-group">
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925002”><span class="badge">BBa_K925002</span></a>
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925004”><span class="badge">BBa_K925004</span></a>
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925005”><span class="badge">BBa_K925005</span></a>
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925006”><span class="badge">BBa_K925006</span></a></button>
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925007”><span class="badge">BBa_K925007</span></a></button>
 +
</div>
 +
<img src="https://static.igem.org/mediawiki/2012/9/9f/MetalBindingLogo_100.png" align="left" />               
 +
<p></p>
 +
<p>Precious and toxic metals from car catalysts frequently find their way into the
 +
environment. By developing metal-binding proteins, we can reverse metal aggregation on our roads. This not only reduces the environmental impact of personal transportation, but will proffer a new man-made mine of precious metals.</p>
-
                <p>Lorem ipsum dolor sit amet, consectetur adipiscing elit. Sed facilisis blandit felis, volutpat accumsan enim auctor sed. Donec hendrerit felis tortor, vel commodo tortor. Morbi eget aliquet neque. Cum sociis natoque penatibus et magnis dis parturient montes, nascetur ridiculus mus. Integer et mi vitae dolor tincidunt blandit in in orci. Quisque non orci urna. Pellentesque vel justo tempor nisi mattis blandit. Nullam arcu leo, tristique ac porttitor eu, vestibulum sed purus. Donec aliquet volutpat nunc. In non diam purus. In hac habitasse platea dictumst. Duis vitae massa lacinia sem dapibus facilisis. Integer eget dui sem, sed sodales nibh.</p>
+
</div>
-
                <p><a class="btn btn-large" href="https://2012.igem.org/Team:St_Andrews/metal-binding">Learn more</a></p>
+
   
-
            </div>
+
            <div class="span6" >
 +
                <h1></h1>
 +
<h1><a href="https://2012.igem.org/Team:St_Andrews/Omega-3-synthesis">ω−3 fatty acids synthesis</a></h1>
 +
<div class="btn-group">
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925000”><span class="badge">BBa_K925000</span></a>
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925001”><span class="badge">BBa_K925001</span></a>
 +
<a href=”http://partsregistry.org/wiki/index.php?title=Part:BBa_K925003”><span class="badge">BBa_K925003</span></a>
 +
</div>
 +
<img src="https://static.igem.org/mediawiki/2012/5/57/OmegaThreeLogo_100.png" align="left" />               
 +
<p></p>
 +
          <p>ω-3 fatty acid is a key component of the healthy human diet. The nutrient is only synthesized naturally in a handful of organisms (algae and oil-rich plants). Our team partially recreated the pathway for ω-3 production in <i>E. coli</i> using genes from the cyanobacteria <i>Synechocystis</i>, despite the difficulty of working with membrane-bound proteins. Until now, synthetic ω-3 production has only been achieved in plants. 
 +
</p>
-
            <div class="well span6">
 
-
                <h1>ω−3 fatty acids synthesis</h1>
 
-
                <p>Ut nec nisi vitae dolor molestie mollis. Duis ultricies purus eget velit mollis hendrerit. Nam sit amet mi eros. Integer sagittis, tellus ut posuere ornare, urna nibh placerat ante, sit amet mollis velit est et nisl. Mauris vitae sagittis tortor. Donec semper, enim ut facilisis pretium, tortor erat eleifend nulla, nec dapibus diam erat at leo. Cras vestibulum enim sed justo bibendum mattis. Nam odio felis, vulputate eget ultrices vel, congue eu justo. Morbi semper est a tortor lobortis ut pulvinar dui semper. Fusce accumsan lectus feugiat purus lacinia sed pellentesque orci adipiscing.</p>
 
-
                <p><a class="btn btn-large">Learn more</a></p>
 
             </div>
             </div>
</div>
</div>
Line 45: Line 89:
-
             <div class="well span6">
+
             <div class="span6" >
-
                <h1>Scientific impact of iGEM</h1>
+
<br>
 +
<h1><a href="https://2012.igem.org/Team:St_Andrews/Human-practices">Scientific impact of iGEM</a></h1>
-
                 <p>Ut nec nisi vitae dolor molestie mollis. Duis ultricies purus eget velit mollis hendrerit. Nam sit amet mi eros. Integer sagittis, tellus ut posuere ornare, urna nibh placerat ante, sit amet mollis velit est et nisl. Mauris vitae sagittis tortor. Donec semper, enim ut facilisis pretium, tortor erat eleifend nulla, nec dapibus diam erat at leo. Cras vestibulum enim sed justo bibendum mattis. Nam odio felis, vulputate eget ultrices vel, congue eu justo. Morbi semper est a tortor lobortis ut pulvinar dui semper. Fusce accumsan lectus feugiat purus lacinia sed pellentesque orci adipiscing.</p>
+
<img src="https://static.igem.org/mediawiki/2012/a/ac/ImpactLogo_100.png" align="left" />
 +
<p></p>
 +
                 <p>We investigate the relationship between the iGEM competition and the rest of the scientific community. Is iGEM <em>really</em> having scientific impact? How often, how fairly and by whom are iGEM teams cited? Does the iGEM competition result in scholarly articles being published? What can guarantee continued recognition within the SynBio community?</p>
-
                <p><a class="btn btn-large">Learn more</a></p>
 
             </div>
             </div>
 +
<br>
 +
            <div class="span6" >
 +
<h1><a href="https://2012.igem.org/Team:St_Andrews/Modelling">The mathematics of ω-3</a></h1>
-
            <div class="well span6">
+
<img src="https://static.igem.org/mediawiki/2012/f/f0/ModSquadLogo_100.png" align="left" />
-
                 <h1>Modeling ω−3 depletion scenarios</h1>
+
<p></p>
 +
                 <p>We modelled fish population dynamics. Our result: if we continue fishing in the current manner, by 2100, only a fraction of present day biomass will remain.  Yet, there is hope.  Indeed, realizing Team St Andrews' alternative production of omega-3 could be the measure necessary to save our seas.  We investigated the effect that alternative production can have on future fish biomass, as well as the practicalities of preserving life in this manner.</p>
-
                <p>Ut nec nisi vitae dolor molestie mollis. Duis ultricies purus eget velit mollis hendrerit. Nam sit amet mi eros. Integer sagittis, tellus ut posuere ornare, urna nibh placerat ante, sit amet mollis velit est et nisl. Mauris vitae sagittis tortor. Donec semper, enim ut facilisis pretium, tortor erat eleifend nulla, nec dapibus diam erat at leo. Cras vestibulum enim sed justo bibendum mattis. Nam odio felis, vulputate eget ultrices vel, congue eu justo. Morbi semper est a tortor lobortis ut pulvinar dui semper. Fusce accumsan lectus feugiat purus lacinia sed pellentesque orci adipiscing.</p>
 
-
 
-
                <p><a class="btn btn-large">Learn more</a></p>
 
             </div>
             </div>
         </div>
         </div>
     </div>
     </div>
-
    <div class="container-fluid">
 
-
        <div class="row-fluid">
 
-
            <div class="span9">
 
-
                <div class="row offset1">
 
-
                    <div class="span6">
 
-
                        <h2>Projects</h2>Lorem ipsum dolor sit amet, consectetur adipiscing elit. In lobortis elit facilisis odio egestas dictum. Donec sed orci quis nibh suscipit aliquam. Mauris a risus nisl. Ut vel lorem mauris. Integer et arcu ut tellus cursus rhoncus at sed lorem. Phasellus imperdiet, est quis sagittis laoreet, eros ante tristique magna, sed auctor lorem quam et lectus. Quisque ac sem sit amet nisl consectetur iaculis.
 
-
                    </div>
 
-
                    <div class="span6">
 
-
                        <h2>Human practices</h2>Lorem ipsum dolor sit amet, consectetur adipiscing elit. In lobortis elit facilisis odio egestas dictum. Donec sed orci quis nibh suscipit aliquam. Mauris a risus nisl. Ut vel lorem mauris. Integer et arcu ut tellus cursus rhoncus at sed lorem. Phasellus imperdiet, est quis sagittis laoreet, eros ante tristique magna, sed auctor lorem quam et lectus. Quisque ac sem sit amet nisl consectetur iaculis.
 
-
                    </div>
 
-
                </div><br>
 
-
                <br>
 
-
 
-
                <div class="row offset1">
 
-
                    <div class="span6">
 
-
                        <h2>Biobricks</h2>Lorem ipsum dolor sit amet, consectetur adipiscing elit. In lobortis elit facilisis odio egestas dictum. Donec sed orci quis nibh suscipit aliquam. Mauris a risus nisl. Ut vel lorem mauris. Integer et arcu ut tellus cursus rhoncus at sed lorem. Phasellus imperdiet, est quis sagittis laoreet, eros ante tristique magna, sed auctor lorem quam et lectus. Quisque ac sem sit amet nisl consectetur iaculis.
 
-
                    </div>
 
-
 
-
                    <div class="span6">
 
-
                        <h2>Data</h2>Lorem ipsum dolor sit amet, consectetur adipiscing elit. In lobortis elit facilisis odio egestas dictum. Donec sed orci quis nibh suscipit aliquam. Mauris a risus nisl. Ut vel lorem mauris. Integer et arcu ut tellus cursus rhoncus at sed lorem. Phasellus imperdiet, est quis sagittis laoreet, eros ante tristique magna, sed auctor lorem quam et lectus. Quisque ac sem sit amet nisl consectetur iaculis.
 
-
                    </div>
 
-
                </div>
 
-
                <div class="marketing">
+
              <div class="marketing">
                     <hr class="soften">
                     <hr class="soften">
                 </div>
                 </div>
-
                 <div class="row offset1">
+
    <div class="container-fluid">
 +
        <div class="row-fluid">
 +
            <div class="span9">
 +
 
 +
 
 +
 +
 
 +
                 <div class="row">
                     <h1>Sponsors</h1>
                     <h1>Sponsors</h1>
Line 118: Line 150:
                          
                          
                         <li class="span3"><a href="http://www.delphigenetics.com/" class="thumbnail"><img src="http://dl.dropbox.com/u/491730/iGEm/images/sponsors/Delphi%20Genetics.jpg" alt=""></a></li>
                         <li class="span3"><a href="http://www.delphigenetics.com/" class="thumbnail"><img src="http://dl.dropbox.com/u/491730/iGEm/images/sponsors/Delphi%20Genetics.jpg" alt=""></a></li>
 +
 +
                        <li class="span3"><a href="http://www.lgcstandards.com/" class="thumbnail"><img src="http://dl.dropbox.com/u/491730/iGEm/images/sponsors/LGC.jpg" alt=""></a></li>
 +
 +
                        <li class="span3"><a href="http://www.msd-uk.com/" class="thumbnail"><img src="https://static.igem.org/mediawiki/2012/b/b7/Msd.png" alt=""></a></li>
 +
                     </ul>
                     </ul>
                 </div>
                 </div>
Line 125: Line 162:
                     <h1>iGEM</h1>
                     <h1>iGEM</h1>
-
                     <p>The International Genetically Engineered Machine competition (iGEM) is the premiere undergraduate Synthetic Biology competition. Student teams are given a kit of biological parts at the beginning of the summer from the Registry of Standard Biological Parts. Working at their own schools over the summer, they use these parts and new parts of their own design to build biological systems and operate them in living cells. This project design and competition format is an exceptionally motivating and effective teaching method.</p>
+
                     <p>The International Genetically Engineered Machine competition (iGEM) is the premier undergraduate synthetic biology competition. Student teams are given a kit of biological parts at the beginning of the summer from the Registry of Standard Biological Parts. Working at their own schools over the summer, they use these parts and new parts of their own design to build biological systems and operate them in living cells. This project design and competition format is an exceptionally motivating and effective teaching method.</p>
                 </div>
                 </div>
             </div>
             </div>
             <div class="span3">
             <div class="span3">
 +
 +
<div class="alert alert-info">
 +
<a class="close" data-dismiss="alert" href="#">×</a>
 +
<h4 class="alert-heading">Offline project summaries</h4>
 +
These are the downloadable versions of our project summaries:
 +
<br>
 +
<br>
 +
<form action="http://dl.dropbox.com/u/491730/St%20Andrews%20iGEM%202012-%20Offline%20summaries.zip">
 +
<button type="submit" class="btn btn-info" href="http://dl.dropbox.com/u/491730/St%20Andrews%20iGEM%202012-%20Offline%20summaries.zip"></img>Download</button></form><!-- Wikitext kills our usual buttons, so here's a terrible hack with a form button -->
 +
 +
</div>
 +
                 <div>
                 <div>
-
                     <h3>Twitter</h3><br>
+
                     <h1>Twitter</h1><br>
                 </div>
                 </div>
Line 163: Line 212:
                     }).render().setUser('StAndrewsiGEM12').start();
                     }).render().setUser('StAndrewsiGEM12').start();
                     </script>
                     </script>
-
                </div>
 
-
 
-
                <div class="well">
 
-
                    <h3>News</h3>
 
                 </div>
                 </div>
             </div>
             </div>
         </div>
         </div>
 +
    </div>
 +
 +
 +
 +
     </div>
     </div>
</body>
</body>
</html>
</html>
 +
{{:Team:St_Andrews/Template:Footer}}

Latest revision as of 02:02, 23 October 2012

StA iGEM Wiki 2012 - Home

source

University of St Andrews' team for 2012 International Genetically Engineered Machine competition

Alternative omega-3 production and novel metal recovery methods

University of St Andrews coat of arms

Metal binding protein

Precious and toxic metals from car catalysts frequently find their way into the environment. By developing metal-binding proteins, we can reverse metal aggregation on our roads. This not only reduces the environmental impact of personal transportation, but will proffer a new man-made mine of precious metals.

ω−3 fatty acids synthesis

ω-3 fatty acid is a key component of the healthy human diet. The nutrient is only synthesized naturally in a handful of organisms (algae and oil-rich plants). Our team partially recreated the pathway for ω-3 production in E. coli using genes from the cyanobacteria Synechocystis, despite the difficulty of working with membrane-bound proteins. Until now, synthetic ω-3 production has only been achieved in plants.


Scientific impact of iGEM

We investigate the relationship between the iGEM competition and the rest of the scientific community. Is iGEM really having scientific impact? How often, how fairly and by whom are iGEM teams cited? Does the iGEM competition result in scholarly articles being published? What can guarantee continued recognition within the SynBio community?


The mathematics of ω-3

We modelled fish population dynamics. Our result: if we continue fishing in the current manner, by 2100, only a fraction of present day biomass will remain. Yet, there is hope. Indeed, realizing Team St Andrews' alternative production of omega-3 could be the measure necessary to save our seas. We investigated the effect that alternative production can have on future fish biomass, as well as the practicalities of preserving life in this manner.


Sponsors

iGEM

The International Genetically Engineered Machine competition (iGEM) is the premier undergraduate synthetic biology competition. Student teams are given a kit of biological parts at the beginning of the summer from the Registry of Standard Biological Parts. Working at their own schools over the summer, they use these parts and new parts of their own design to build biological systems and operate them in living cells. This project design and competition format is an exceptionally motivating and effective teaching method.

×

Offline project summaries

These are the downloadable versions of our project summaries:

Twitter


Back to top

University of St Andrews, 2012.

Contact us: igem2012@st-andrews.ac.uk, Twitter, Facebook

This iGEM team has been funded by the MSD Scottish Life Sciences Fund. The opinions expressed by this iGEM team are those of the team members and do not necessarily represent those of Merck Sharp & Dohme Limited, nor its Affiliates.