Team:Hannover/NewLayout

From 2014.igem.org

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Line 6: Line 6:
<div id="main_menue">
<div id="main_menue">
<div id="main_box">
<div id="main_box">
-
<svg xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns="http://www.w3.org/2000/svg" height="68.0" width="950" version="1.1" xmlns:cc="http://creativecommons.org/ns#" xmlns:xlink="http://www.w3.org/1999/xlink" viewBox="0 0 1935.0415 138.67165" xmlns:dc="http://purl.org/dc/elements/1.1/">
+
<svg xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns="http://www.w3.org/2000/svg" height="171.47" width="880.34" version="1.1" xmlns:cc="http://creativecommons.org/ns#" xmlns:xlink="http://www.w3.org/1999/xlink" viewBox="0 0 1793.1598 349.68264" xmlns:dc="http://purl.org/dc/elements/1.1/">
-
<defs>
+
<defs>
-
  <style type="text/css"><![CDATA[
+
<style type="text/css"><![CDATA[
  #main_menu text {
  #main_menu text {
-
font-size:49.968px;
+
font-size:50px;
letter-spacing:4.9968px;
letter-spacing:4.9968px;
word-spacing:0px;
word-spacing:0px;
Line 21: Line 21:
fill:none
fill:none
}
}
 +
 +
#submenus path {
 +
    stroke:#337;
 +
stroke-width:2px;
 +
fill:none;
 +
}
 +
 +
#submenus text {
 +
    fill: #55a;
 +
font-family:"FFF Tusj";
 +
font-size:44px;
 +
line-height:125%;
 +
}
 +
 +
.dashed1 {
 +
    stroke-dasharray:16.31431176, 16.31431176;
 +
}
 +
 +
.dashed2 {
 +
    stroke-dasharray:12.23573382, 12.23573382;
 +
}
 +
 +
.dashed3 {
 +
      stroke-dasharray:26.78119978, 26.78119978;
 +
}
 +
 +
.evenodd {
 +
      fill-rule:evenodd;
 +
}
 +
.unselected text {
.unselected text {
fill:#5C5C99
fill:#5C5C99
Line 35: Line 65:
stroke-width:1.2051 !important;
stroke-width:1.2051 !important;
}
}
 +
.fill_bg {
 +
fill-opacity:1.0 !important;
 +
fill:#fff !important;
 +
}
 +
]]></style>
]]></style>
-
</defs>
+
</defs>
-
<g id="main_menu" transform="translate(683.74 -154.85)">
+
<g id="what" style="z-index: 0;" transform="translate(-1.1415 -.0000061035)">
-
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<div id='main_content'>
<div id='main_content'>
<h1>Welcome to iGEM Team Hanover´s website!</h1>
<h1>Welcome to iGEM Team Hanover´s website!</h1>
-
<p class="text">Our LUH-Team consists of eleven motivated young under- and graduate-students coming from “Life Science” and “Plant Biosience Technology” studies. They get supported by their supervisors Prof. Dr. Peterhänsel (Institute of Botany) and Dr. Reinard (Institute for Plant Genetics) as well as Patrick Reinke, a graduate student, who already has iGEM experience.<br>To strengthen our University´s  reputation as an onward and  innovative institution, is one goal of us. Therefore we do our best to create a stable infrastructure for our successors. More information are availabe here: <a href="http://www.naturwissenschaften.uni-hannover.de/studierendenprojekte" target="_blank">Faculty for Natural Sciences Hannover</a>.</p>
+
<p class="text">Our LUH-Team consists of eleven motivated young under- and graduate-students coming from “Life Science” and “Plant Biosience Technology” studies. They get supported by their supervisors Prof. Dr. Peterhänsel (Institute of Botany) and Dr. Reinard (Institute for Plant Genetics) as well as Patrick Reinke, a graduate student, who already has iGEM experience.<br>To strengthen our University´s  reputation as an onward and  innovative institution, is one goal of us. Therefore we do our best to create a stable <span id='a3'>infrastructure</span> for our successors. More information are availabe here: <a href="http://www.naturwissenschaften.uni-hannover.de/studierendenprojekte" target="_blank">Faculty for Natural Sciences Hannover</a>.</p>
<h1>Short Project Description</h1>
<h1>Short Project Description</h1>
-
<p class="text">Our goal is to produce a Top4 Metal Binding Protein (T4-MBP) which attaches itself to the cellulose of  plants and binds four heavy metals of global relevance. We intend to use naturally occurring metallothioneins - proteins whose specific amino acid sequences alone make them able to form complexes with heavy metals.<br> We are planing to use our protein in terrestrial (<i>Arabidopsis thaliana</i>) as well as aquatic plants (<i>Wolffia</i>). Our genetic construct is ultimately to be brought into the target organism with the aid of a transformation by <i>Rhizobium radiobacter</i> (formerly <i>Agrobacterium tumefaciens</i>). More information are availabe under: <a href="https://2014.igem.org/Team:Hannover/Project" target="_blank">Project</a>
+
<p class="text">Our goal is to produce a Top4 Metal Binding Protein (T4-MBP) which attaches itself to the cellulose of  plants and binds four heavy metals of global relevance. We intend to use naturally occurring metallothioneins - proteins whose specific amino acid <span id='a1'>sequences</span> alone make them able to form complexes with heavy metals.<br> We are planing to use our protein in terrestrial (<i>Arabidopsis thaliana</i>) as well as aquatic plants (<i id='a2'>Wolffia</i>). Our genetic construct is ultimately to be brought into the target organism with the aid of a transformation by <i>Rhizobium radiobacter</i> (formerly <i>Agrobacterium tumefaciens</i>). More information are availabe under: <a href="https://2014.igem.org/Team:Hannover/Project" target="_blank">Project</a>
</p>
</p>
 +
</div>
<div id='side_content'>
<div id='side_content'>
<h2>Sidebar</h2>
<h2>Sidebar</h2>
 +
<div class='annotation' ref='a2'>
 +
Wolffia is really a damn cool plant. Doubling Biomass every few days ..
 +
</div>
 +
<div class='annotation' ref='a3'>
 +
Don't you ever forget your infrastructure !
 +
</div>
 +
</div>
</div>
</div>
</div>

Latest revision as of 14:42, 9 October 2014

Welcome to iGEM Team Hanover´s website!

Our LUH-Team consists of eleven motivated young under- and graduate-students coming from “Life Science” and “Plant Biosience Technology” studies. They get supported by their supervisors Prof. Dr. Peterhänsel (Institute of Botany) and Dr. Reinard (Institute for Plant Genetics) as well as Patrick Reinke, a graduate student, who already has iGEM experience.
To strengthen our University´s reputation as an onward and innovative institution, is one goal of us. Therefore we do our best to create a stable infrastructure for our successors. More information are availabe here: Faculty for Natural Sciences Hannover.

Short Project Description

Our goal is to produce a Top4 Metal Binding Protein (T4-MBP) which attaches itself to the cellulose of plants and binds four heavy metals of global relevance. We intend to use naturally occurring metallothioneins - proteins whose specific amino acid sequences alone make them able to form complexes with heavy metals.
We are planing to use our protein in terrestrial (Arabidopsis thaliana) as well as aquatic plants (Wolffia). Our genetic construct is ultimately to be brought into the target organism with the aid of a transformation by Rhizobium radiobacter (formerly Agrobacterium tumefaciens). More information are availabe under: Project

Sidebar

Wolffia is really a damn cool plant. Doubling Biomass every few days ..
Don't you ever forget your infrastructure !