Team:UNAM-Genomics Mexico/Project

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{{:Team:UNAM-Genomics Mexico/Templates/Modeling| content=
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=Project=
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<div id="box" style="width: 700px; margin-left: 137px; padding: 5px; border: 3px solid #000; background-color: #fe2b33;">
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<div id="template" style="text-align: center; font-weight: bold; font-size: large; color: #f6f6f6; padding: 5px;">
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This is a template page. READ THESE INSTRUCTIONS.
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<div id="instructions" style="text-align: center; font-weight: normal; font-size: small; color: #f6f6f6; padding: 5px;">
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You are provided with this team page template with which to start the iGEM season.  You may choose to personalize it to fit your team but keep the same "look." Or you may choose to take your team wiki to a different level and design your own wiki.  You can find some examples <a href="https://2008.igem.org/Help:Template/Examples">HERE</a>.
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<div id="warning" style="text-align: center; font-weight: bold; font-size: small; color: #f6f6f6; padding: 5px;">
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You <strong>MUST</strong> have a team description page, a project abstract, a complete project description, a lab notebook, and a safety page.  PLEASE keep all of your pages within your teams namespace. 
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Among the biological systems that produce hydrogen, the most efficient ones achieve it through reactions catalyzed by enzymes with iron-sulfur clusters which require hypoxic microenvironments to work. The bacterium ''Rhizobium etli'', during its symbiotic relationship with the common bean ''Phaseolus vulgaris'', can transform nitrogen gas into ammonia in a process called nitrogen fixation. In exchange the plant provides the bacteria with carbon sources and a protected niche inside its root, where ''Rhizobium etli'' reaches a hypoxic state. We will exploit this microenvironment to produce hydrogen in ''Rhizobium etli'' introducing a pathway assembled with elements from ''Clostridium acetobutylicum'', ''Desulfovibrio africanus'' and ''Chlamydomonas reinhardtii'', while maintaining nitrogen fixation. The two goals of our project are to make ''Rhizobium etli'' a powerful agent in environmental protection by nitrifying soils and producing hydrogen from solar energy, and to standardize the work in Rhizobials.
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|You can write a background of your team here. Give us a background of your team, the members, etc.  Or tell us more about something of your choosing.
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|[[Image:UNAM-Genomics_Mexico_logo.png|200px|right|frame]]
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''Tell us more about your project.  Give us background. Use this is the abstract of your project.  Be descriptive but concise (1-2 paragraphs)''
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|[[Image:UNAM-Genomics_Mexico_team.png|right|frame|Your team picture]]
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|align="center"|[[Team:UNAM-Genomics_Mexico | Team Example]]
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<!--- The Mission, Experiments --->
 
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{| style="color:#1b2c8a;background-color:#0c6;" cellpadding="3" cellspacing="1" border="1" bordercolor="#fff" width="62%" align="center"
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!align="center"|[[Team:UNAM-Genomics_Mexico|Home]]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Team|Team]]
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!align="center"|[https://igem.org/Team.cgi?year=2010&team_name=UNAM-Genomics_Mexico Official Team Profile]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Project|Project]]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Parts|Parts Submitted to the Registry]]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Modeling|Modeling]]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Notebook|Notebook]]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Safety|Safety]]
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!align="center"|[[Team:UNAM-Genomics_Mexico/Attributions|Attributions]]
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<div class="top-slider-main">
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    <div class="slider-box1">
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        <div class="left"><br /><center></center></div>
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      <div class="content"><a href="https://2011.igem.org/Team:UNAM-Genomics_Mexico/Notebook/SA"><img src="https://static.igem.org/mediawiki/2011/8/8a/Unamgenomicsassembly.jpg"></a></div>
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        <div class="left"><br /><center></center></div>
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        <div class="content" valign="middle"><a href="https://2011.igem.org/Team:UNAM-Genomics_Mexico/Project/HydrogenProduction"><img src="https://static.igem.org/mediawiki/2011/0/00/Unamgenomicsrsz_operons.jpg"></a></div>
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        <div class="left"><br /><center></center></div>
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        <div class="content"><a href="https://2011.igem.org/Team:UNAM-Genomics_Mexico/Project/RhizobialKit"><img src="https://static.igem.org/mediawiki/2011/e/ea/Unamgenomicsrsz_pberc5.jpg"></a></div>
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        <div class="content"><a href="https://2011.igem.org/Team:UNAM-Genomics_Mexico/Notebook/repC"><img src="https://static.igem.org/mediawiki/2011/8/82/UNAM_Genomics_MexicoDuplicadoparawiki.jpg"></a></div>
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        <div class="left"><br /><center></center></div>
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        <div class="content"><a href="https://2011.igem.org/Team:UNAM-Genomics_Mexico/Team"><img src="https://static.igem.org/mediawiki/2011/3/3e/Unamgenomics6.jpg"></a></div>
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        <div class="content"><a href="https://2011.igem.org/Team:UNAM-Genomics_Mexico/Project"><img src="https://static.igem.org/mediawiki/2011/1/1f/Unamgenomicsproject1.jpg"></a></div>
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== '''Overall project''' ==
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Your abstract
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== Project Details==
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=== Part 2 ===
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=== The Experiments ===
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=== Part 3 ===
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== Results ==
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Latest revision as of 03:04, 29 September 2011

UNAM-Genomics_Mexico


Project

Among the biological systems that produce hydrogen, the most efficient ones achieve it through reactions catalyzed by enzymes with iron-sulfur clusters which require hypoxic microenvironments to work. The bacterium Rhizobium etli, during its symbiotic relationship with the common bean Phaseolus vulgaris, can transform nitrogen gas into ammonia in a process called nitrogen fixation. In exchange the plant provides the bacteria with carbon sources and a protected niche inside its root, where Rhizobium etli reaches a hypoxic state. We will exploit this microenvironment to produce hydrogen in Rhizobium etli introducing a pathway assembled with elements from Clostridium acetobutylicum, Desulfovibrio africanus and Chlamydomonas reinhardtii, while maintaining nitrogen fixation. The two goals of our project are to make Rhizobium etli a powerful agent in environmental protection by nitrifying soils and producing hydrogen from solar energy, and to standardize the work in Rhizobials.