Team:UNAM-Genomics Mexico/Project

From 2011.igem.org

(Difference between revisions)
m (typo correction)
m (version 1.0.6)
Line 6: Line 6:
<!--
<!--
-
@VERSION 1.0.5
+
@VERSION 1.0.6
@NAME    Project page for the UNAM-Genomics_Mexico team wiki.
@NAME    Project page for the UNAM-Genomics_Mexico team wiki.
-->
-->
Line 125: Line 125:
</div>
</div>
<div class="summary_text">
<div class="summary_text">
-
<p><a class="project" href=""><i>Rhizobium etli</i></a> is a bacterial species that can live either freely or in symbiosis with the bean <a class="garden" href=""><i>Phaseolus vulgaris</i></a>.
+
<p><a class="project" href=""><i>Rhizobium etli</i></a> is a bacterial species that can live either freely or in symbiosis with the bean <a class="project" href=""><i>Phaseolus vulgaris</i></a>.
In it's symbiotic stage <i>R. etli</i> lives in nodules in the plant's root and has the ability to <a class="project" href="">fixate nitrogen</a> gas as amine molecules.
In it's symbiotic stage <i>R. etli</i> lives in nodules in the plant's root and has the ability to <a class="project" href="">fixate nitrogen</a> gas as amine molecules.
Inside the nodule the environment is <a class="project" href="">hypoxigenic</a>.
Inside the nodule the environment is <a class="project" href="">hypoxigenic</a>.
Line 145: Line 145:
<p> The <a class="project" href="">conjugation process</a>.</p>
<p> The <a class="project" href="">conjugation process</a>.</p>
<h1 class="project_goals">Bean innoculation</h1>
<h1 class="project_goals">Bean innoculation</h1>
-
<p> Our bacteria are innoculated in <a class="garden" href="">bean seeds</a>.
+
<p> Our bacteria are innoculated in <a class="project" href="">bean seeds</a>.
-
These seeds are <a class="garden" href="">grown</a> for several days.
+
These seeds are <a class="project" href="">grown</a> for several days.
-
When we have a small <a class="garden" href="">nodulating plant</a> we will measure <a class="project" href="">hydrogen production</a>.</p>
+
When we have a small <a class="project" href="">nodulating plant</a> we will measure <a class="project" href="">hydrogen production</a>.</p>
</div>
</div>
</div><!--id="container"-->
</div><!--id="container"-->
</body>
</body>
</html>
</html>

Revision as of 02:41, 13 June 2011

UNAM-Genomics_Mexico

Our Project Image

Rhizobium etli is a bacterial species that can live either freely or in symbiosis with the bean Phaseolus vulgaris. In it's symbiotic stage R. etli lives in nodules in the plant's root and has the ability to fixate nitrogen gas as amine molecules. Inside the nodule the environment is hypoxigenic. The enzymatic production of hydrogen requires a hypoxigenic environment to favor the reactions. We want to introduce the metabolic pathway of hydrogen production into R. etli and take advantage of its niche in the hypoxic nodule. Our goal is hydrogen production in the Phaseolus vulgaris root.

These are the goals in our project:

System design

The system comprises four genes: a hydrogenase HydA, a pyruvate ferrodoxin reductase PFOR, and two hydrogenase maturases HydEF and HydG.

System insertion into E. coli

Rhizobium etli can't be transformed, and it's phages haven't been studied enough. However R. etli can receive DNA if conjugated with Escherichia coli. To introduce our system into R. etli we must first introduce it into E. coli.

System conjugation into R. etli

The conjugation process.

Bean innoculation

Our bacteria are innoculated in bean seeds. These seeds are grown for several days. When we have a small nodulating plant we will measure hydrogen production.