Team:Bielefeld-CeBiTec/Project/Isobutanol

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<h1> Isobutanol </h1>
<h1> Isobutanol </h1>
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     <p>Within the third module the products of carbon dioxide fixation will be used by the cell to produce the key metabolite pyruvate. Hence, it can be converted in different products. As a '<i>proof of concept</i> we decided to introduce an isobutanol production pathway. Here we want to use and improve existing BioBricks (iGEM Team Formosa 2011/2012). The modularity of BioBricks enables the exchange of a variety of production systems. These systems can be applied on variable high value products derived from pyruvate. Pyruvate is a metabolic branching point. Hence, products like isoprene, putrescine or even antibiotics are possible candidates with industrial application.</p>
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  <h6>Short summary</h6>
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     <p>Within the third module of our project the products of the carbon dioxide fixation will be used by the cell to produce the key metabolite pyruvate. Pyruvate can be converted in different products. We decided to introduce an isobutanol production pathway. For this we want to use and improve existing BioBricks (iGEM Team Formosa 2011/2012).  
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The modularity of BioBricks enables the exchange of a variety of producing systems. The producing pathway of variable high value products derived from pyruvate can be implemented. Hence, products like isoprene, putrescine or even antibiotics are possible candidates with industrial application.
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<br><br>
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<a href="https://2014.igem.org/Team:Bielefeld-CeBiTec/Results/Isobutanol">Here</a> you will find our results of the production of Isobutanol.
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You can find more information about the <a href="https://2014.igem.org/Team:Bielefeld-CeBiTec/Project/Isobutanol/Theory">underlying theory</a>, our <a href ="https://2014.igem.org/Team:Bielefeld-CeBiTec/Project/Isobutanol/GeneticalApproach">genetical approach</a> and an <a href="https://2014.igem.org/Team:Bielefeld-CeBiTec/Project/Isobutanol/Outlook">outlook</a> on our wiki</p>
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Latest revision as of 09:25, 15 October 2014


Isobutanol

Short summary

Within the third module of our project the products of the carbon dioxide fixation will be used by the cell to produce the key metabolite pyruvate. Pyruvate can be converted in different products. We decided to introduce an isobutanol production pathway. For this we want to use and improve existing BioBricks (iGEM Team Formosa 2011/2012).
The modularity of BioBricks enables the exchange of a variety of producing systems. The producing pathway of variable high value products derived from pyruvate can be implemented. Hence, products like isoprene, putrescine or even antibiotics are possible candidates with industrial application.

Here you will find our results of the production of Isobutanol.
You can find more information about the underlying theory, our genetical approach and an outlook on our wiki