Difference between revisions of "Team:Paris Bettencourt/Project/VitaminB12"

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<h2>Production of cobalamin with<i>Propionibacterium freudenreichii</i></h2>
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<h2>Production of cobalamin with<i>Propionibacterium freudenreichii</i></h2><br>
The pathway of production of the vitamin B12 is huge in terms of genetic material needed for the production of all the enzymes and such cloning is not likely to works during the igem time scale. This is why we tried o find a strain which is already used in the industry to produce B12.
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The pathway of production of the vitamin B12 is huge in terms of genetic material needed for the production of all the enzymes and such cloning is not likely to works during the igem time scale. This is why we tried o find a strain which is already used in the industry to produce B12.<br>
Among the over-producers strains used for cobalamin synthesis, <i>propionibacterium</i> was selected because it is widely used in cheese production (like emmental).
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Among the over-producers strains used for cobalamin synthesis, <i>propionibacterium</i> was selected because it is widely used in cheese production (like emmental).<br>
 
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<h2>B12 daily requirement and toxicity </h2>
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<body class="c5"><p class="c4 c3"><span></span></p><a href="#" name="2508d652d90fd6c7733798a594e62f5a26f0cebd"></a><a href="#" name="0"></a><table cellpadding="0" cellspacing="0" class="c7"><tbody><tr class="c6"><td class="c1" colspan="1" rowspan="1"><p class="c0 c3"><span class="c2"></span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">children</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">pregnant women</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">men</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">toxicity</span></p></td></tr><tr class="c6"><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">required dose ug/day</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">0.4-1.8</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">2.6</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">2.4</span></p></td><td class="c1" colspan="1" rowspan="1"><p class="c0"><span class="c2">N/A</span></p></td></tr></tbody></table><p class="c3 c4"><span></span></p></body>
 
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Revision as of 12:50, 18 September 2015

Background

Aims

Results

Cobalamin (vitamin B12) deficiency is widely spread in India, due to diet that is mostly vegetarian. We aimed at introducing a high-level cobalamin producer to the rice batter. Tadaa.

Cobalamin or vitamin B12



Cobalamin is a vitamin involved in the metabolism of every cell in the human body. It is needed for development and maintenance of the nervous system and brain. B12 vitamin is involved in DNA synthesis and regulation of the transcription. Only Bacteria and Archae are able to produce their own while animals. It is the largest and the most complex vitamin and it’s synthesis by organic chemistry required 91 post-doc and 23 Ph.D. students.

Because no plants are producing this vitamin vegan and vegetarian populations are at risk of developing symptoms of the deficiency. Those symptoms are severe and in a lot of case irreversibles. Symptoms of B12 deficiency are including nerves and brain damages, fatigue, depression, poor memory, mania, psychosis and pernicious anemia, an anemic disease that is usually fatal if not treated.



Production of cobalamin withPropionibacterium freudenreichii


The pathway of production of the vitamin B12 is huge in terms of genetic material needed for the production of all the enzymes and such cloning is not likely to works during the igem time scale. This is why we tried o find a strain which is already used in the industry to produce B12.
Among the over-producers strains used for cobalamin synthesis, propionibacterium was selected because it is widely used in cheese production (like emmental).

B12 daily requirement and toxicity

children

pregnant women

men

toxicity

required dose ug/day

0.4-1.8

2.6

2.4

N/A