Chassis.htm

From 2012.igem.org

(Difference between revisions)
(Blanked the page)
 
Line 1: Line 1:
-
<html xmlns="http://www.w3.org/1999/xhtml"><head>
 
-
<title>Home</title>
 
-
 
-
<link rel="stylesheet" href="https://dl.dropbox.com/u/199422/Cinvestav/style.css" />
 
-
 
-
 
-
<meta http-equiv="Content-Type" content="text/html; charset=utf-8" />
 
-
<style type="text/css">td img {display: block;}</style>
 
-
 
-
<!--Fireworks CS6 Dreamweaver CS6 target.  Created Tue Sep 25 17:05:18 GMT-0500 (Central Daylight Time (Mexico)) 2012-->
 
-
</head>
 
-
<body bgcolor="#ffffff">
 
-
<table style="display: inline-table;" border="0" cellpadding="0" cellspacing="0" width="950" bgcolor="">
 
-
<!-- fwtable fwsrc="INDEX.fw.png" fwpage="Page 1" fwbase="principal.jpg" fwstyle="Dreamweaver" fwdocid = "927795023" fwnested="0" -->
 
-
  <tr>
 
-
  <td><img src="images/spacer.gif" width="240" height="1" alt="" /></td>
 
-
  <td><img src="images/spacer.gif" width="710" height="1" alt="" /></td>
 
-
  <td><img src="images/spacer.gif" width="1" height="1" alt="" /></td>
 
-
  </tr>
 
-
 
-
  <tr>
 
-
  <td><img src="https://static.igem.org/mediawiki/2012/6/68/LOGOPRIN.jpg" width="240" height="178" alt="Logo Principal" /></td>
 
-
  <td bgcolor="01A79D"><ul class="nav">
 
-
<li>
 
-
<a href="home.htm">Home<span class="flecha">&#9660;</span></a>
 
-
</li>
 
-
<li>
 
-
<a href="#">Rhodofactory<span class="flecha">&#9660;</span></a>
 
-
<ul>
 
-
<li><a href="Overview.htm">Overview<span class="flecha">&#9660;</span></a></li>
 
-
           
 
-
            <li><a href="Light Response.htm">Light Response<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Oxigen Response.htm">Oxigen Response<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Chassis.htm">Chassis<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Perspective.htm">Perspective<span class="flecha">&#9660;</span></a></li>
 
-
 
-
</ul>
 
-
</li>
 
-
<li>
 
-
<a href="">Results<span class="flecha">&#9660;</span></a>
 
-
<ul>
 
-
<li><a href="Biobricks.htm">Biobricks<span class="flecha">&#9660;</span></a></li>
 
-
           
 
-
            <li><a href="Notebook.htm">Notebook<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Protocol.htm">Protocol<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Light Response.htm">Light Response<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Oxigen Response.htm">Oxigen Response<span class="flecha">&#9660;</span></a></li>
 
-
</ul>
 
-
</li>
 
-
 
-
<li>
 
-
<a href="#">IGEM Contribution<span class="flecha">&#9660;</span></a>
 
-
<ul>
 
-
<li><a href="Construction.htm">Construction<span class="flecha">&#9660;</span></a></li>
 
-
           
 
-
            <li><a href="Metods.htm">Metods<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Results.htm">Results<span class="flecha">&#9660;</span></a></li>
 
-
 
-
</ul>
 
-
</li>
 
-
<li>
 
-
<a href="Modelling.htm">Modelling<span class="flecha">&#9660;</span></a>
 
-
<ul>
 
-
 
-
</ul>
 
-
</li> 
 
-
   
 
-
    <li>
 
-
<a href="#">Team<span class="flecha">&#9660;</span></a>
 
-
<ul>
 
-
<li><a href="Members.htm">Members<span class="flecha">&#9660;</span></a></li>
 
-
           
 
-
            <li><a href="Institute.htm">Institute<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Labs.htm">Labs<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Sponsor.htm">Sponsor<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Gallery.htm">Gallery<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Acknowledgments.htm">Acknowledgments<span class="flecha">&#9660;</span></a></li>
 
-
 
-
</ul>
 
-
</li>
 
-
    <li>
 
-
<a href="#">Outreach<span class="flecha">&#9660;</span></a>
 
-
<ul>
 
-
            <li><a href="Human Practice.htm">Human Practice<span class="flecha">&#9660;</span></a></li>
 
-
            <li><a href="Safety.htm">Safety<span class="flecha">&#9660;</span></a></li>
 
-
</ul>
 
-
</li>
 
-
   
 
-
   
 
-
</ul></td>
 
-
  <td><img src="images/spacer.gif" width="1" height="150" alt="" /></td>
 
-
  </tr>
 
-
  <tr>
 
-
  <td colspan="2" >
 
-
 
 
-
  <div id="main">
 
-
<div id="bodys_r1_c2">
 
-
</div>
 
-
<div id="bodys_r1_c3">
 
-
   
 
-
      <img src="https://static.igem.org/mediawiki/2012/4/4e/Chassis.fw.png" width="500" height="92" /> </div>
 
-
<div class="clearFloat"></div>
 
-
<div id="bodys_r2_c2"></div>
 
-
<div id="bodys_r2_c3">
 
-
    <div class="Text">
 
-
   
 
-
      <p><em>Rhodopseudomonas palustris</em> has an extraordinary metabolic versatility; this organism can grow in a wide variety of environmental conditions. <em>R palustris</em> obtain energy by different  mechanism including <strong>anoxygenic</strong> <strong>photosynthesis, aerobic and anaerobic  respiration</strong>. </p>
 
-
      <p>&nbsp;</p>
 
-
      <p><img src="https://static.igem.org/mediawiki/2012/a/af/Cha.jpg" width="640" height="266" /></p>
 
-
      <p><strong>Figure</strong> Metabolic versatility or R. palustris (Harwood  et. al. (2004))</p>
 
-
      <p><br />
 
-
        When O2 is  absent or limiting, light energy can be harnessed by a photosynthetic electron  transport chain that has features similar to those used by plants and other  oxygen-evolving phototrophs <strong>(3)</strong>. During photosynthetic growth, <em>R. palustris</em> is capable of autotrophic  or heterotrophic growth using either carbon dioxide (CO2) or organic carbon  sources. <br />
 
-
        <strong>Biotechnological  potential</strong><br />
 
-
        <em>R. palustris </em>is an excellent candidate for use in a wide  variety of biotechnological applications because of a wide range of  regulation systems that allow it to sense environmental conditions.</p>
 
-
</p>
 
-
    <p><img src="https://static.igem.org/mediawiki/2012/c/cb/Cha2.jpg" width="640" height="474" /></p>
 
-
    <p><strong>Why synthetic biology in <em>R. palustris</em>?</strong></p>
 
-
    <p>The application of Synthetic Biology in R. palustris  could help to exploit the biotechnological potential of this organism. We want  to explore the functioning of 2 orthologous regulation systems that respond to  oxygen and light inspired in <em>Rhodobacter  sphaeroides </em>regulatory systems.</p>
 
-
    <p><img src="https://static.igem.org/mediawiki/2012/thumb/9/97/Cha3.jpg/800px-Cha3.jpg" width="640" height="463" /></p>
 
-
    <p>1. Hunter CN, Daldal F, Thurnauer MC, Beatty JT:  (2009) <strong>The Purple Phototrophic Bacteria</strong>.  Springer; 200928.<em> pp. 707–725.</em> <br />
 
-
      2.  Harwood  et. al. (2004) <strong>Complete genome sequence of the metabolically versatile  photosynthetic bacterium <em>Rhodopseudomonas palustris</em></strong>, Nature Biotechnology Volume 2, Number 1,  January 2004<br />
 
-
      3. Imam S., Yilmaz S., Sohmen Y, Gorzalski A., Reed J.  Noguera D., Donohue T. (2011)<strong> iRsp1095:  A genome-scale reconstruction of theRhodobacter sphaeroides metabolic network </strong>BMC  Systems Biology 2011, 5:116 </p>
 
-
</div>
 
-
    </div>
 
-
<div class="clearFloat"></div>
 
-
</div>
 
-
 
 
-
    </td>
 
-
  <td><img src="images/spacer.gif" width="1" height="500" alt="" /></td>
 
-
  </tr>
 
-
</table>
 
-
</body>
 
-
</html>
 

Latest revision as of 00:18, 27 September 2012