Difference between revisions of "Team:Paris Bettencourt/Project/Manufacturing"
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{{Paris_Bettencourt/banner|page_id=design|page_name=Manufacturing}} | {{Paris_Bettencourt/banner|page_id=design|page_name=Manufacturing}} | ||
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− | + | <img src="https://static.igem.org/mediawiki/2015/3/3e/ParisBettencourt_manufacturingInfo.png" style="width:100%"><br><br> | |
+ | <div id="overview" style="text-align: center"> | ||
+ | <table> | ||
+ | <tr> | ||
+ | <th class="noBottom"><h3>Background</h3></td> | ||
+ | <th class="noBottom"><h3>Aims</h3></td> | ||
+ | <th class="noBottom"><h3>Results</h3></td> | ||
+ | </tr> | ||
+ | <div id="overview" style="text-align: justify"> | ||
+ | <tr> | ||
+ | <td class="noTop"> | ||
+ | Our strains has to be grown in India and to be distributed to the users. | ||
+ | </td> | ||
+ | <td class="noTop"> | ||
+ | The goal of the manufacturing project is to find a way to grow and distribute our strains cheaply and easily. | ||
+ | </td> | ||
+ | <td class="noTop"> | ||
+ | <ul><li>We shown that <i>S. cerevisiae</i> mCherry, <i>Lactococcus</i> Lactis and <i>Propionibacterium</i> freudenreichii can grow on rice water and potato water </li> | ||
+ | <li>We have design a rice flour cube, that we named VitaCube</li> | ||
+ | <li>We have shown that the yeast and the <i>Lactococcus</i> can survive in the VitaCube during at least 4 days</li> | ||
+ | <li>We have design a rice flour cube, that we named VitaCube</li> | ||
+ | </ul> | ||
+ | </td> | ||
+ | </div> | ||
+ | </tr> | ||
+ | </table> | ||
+ | </div> | ||
+ | </div> | ||
+ | <div class="textContent"> | ||
<p>The aim of our manufacturing project was to find a way to grow and distribute our strains easily and cheaply to | <p>The aim of our manufacturing project was to find a way to grow and distribute our strains easily and cheaply to | ||
reach as many people as possible. The product has to be simple and minimize the disruption of Indian | reach as many people as possible. The product has to be simple and minimize the disruption of Indian | ||
habits.</p><br><br> | habits.</p><br><br> | ||
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<h2>Growth of our strains</h2> | <h2>Growth of our strains</h2> | ||
− | |||
<div class="column-left" align="justify"> | <div class="column-left" align="justify"> | ||
Our project is designed for poor regions: the cheaper our product, the more people it can reach. Starting from | Our project is designed for poor regions: the cheaper our product, the more people it can reach. Starting from | ||
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accessible to the population.<br> | accessible to the population.<br> | ||
</div> | </div> | ||
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<div class="column-right" align="justify"> | <div class="column-right" align="justify"> | ||
We worked on 3 different strains: <i>S. cerevisiae</i> mCherry, <i>Lactococcus</i> Lactis and <i>Propionibacterium</i> freudenreichii, which are close from the one we were engineering. | We worked on 3 different strains: <i>S. cerevisiae</i> mCherry, <i>Lactococcus</i> Lactis and <i>Propionibacterium</i> freudenreichii, which are close from the one we were engineering. | ||
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</div> <div style="clear:both"> | </div> <div style="clear:both"> | ||
− | + | <div class="column-left" align="justify"> | |
− | <div class="column-left" align="justify"> | + | |
On the Graph 1, we can see that the strains are growing in each media. The rice media is the best one, giving even better result than the normal media for <i>Lactococcus</i> Lactis and <i>Propionibacterium</i> freudenreichii. We couldn't show that neither the concentration of potato nor the addition of sugar had any influence on the growth of our strains.<br> | On the Graph 1, we can see that the strains are growing in each media. The rice media is the best one, giving even better result than the normal media for <i>Lactococcus</i> Lactis and <i>Propionibacterium</i> freudenreichii. We couldn't show that neither the concentration of potato nor the addition of sugar had any influence on the growth of our strains.<br> | ||
<b>So finally, we shown that our strains could be grown in potato water and rice water.</b> | <b>So finally, we shown that our strains could be grown in potato water and rice water.</b> | ||
</div> | </div> | ||
− | <div class="column-right" align="justify"> | + | <div class="column-right" align="justify"> |
<img src="https://static.igem.org/mediawiki/2015/3/3c/PBmediafig.png" alt="Graph"><br> | <img src="https://static.igem.org/mediawiki/2015/3/3c/PBmediafig.png" alt="Graph"><br> | ||
Graph 1 | Graph 1 | ||
</div> <div style="clear:both"> | </div> <div style="clear:both"> | ||
<br><br> | <br><br> | ||
− | |||
<h2>Packaging and distribution</h2><br> | <h2>Packaging and distribution</h2><br> | ||
− | |||
<div class="column-left" align="justify"> | <div class="column-left" align="justify"> | ||
One stake of our project is to give the strains to the population. | One stake of our project is to give the strains to the population. | ||
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</div> | </div> | ||
<div style="clear:both"><br> | <div style="clear:both"><br> | ||
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<div class="column-left" align="justify"> | <div class="column-left" align="justify"> | ||
<img src="https://static.igem.org/mediawiki/2015/1/17/PBVitacube.png" alt="Graph"><br> | <img src="https://static.igem.org/mediawiki/2015/1/17/PBVitacube.png" alt="Graph"><br> | ||
</div> | </div> | ||
− | |||
<div class="column-right" align="justify"> | <div class="column-right" align="justify"> | ||
− | + | <img src="https://static.igem.org/mediawiki/2015/d/d9/PBmanufacturingcubeenmain.jpg" alt="Graph"><br> | |
</div> | </div> | ||
<div style="clear:both"> | <div style="clear:both"> | ||
<br><br> | <br><br> | ||
− | |||
<div class="column-left" align="justify"> | <div class="column-left" align="justify"> | ||
Now that we have found a convenient distribution mean, we need to be sure that it keeps our strains alive and to know how long it can be stored.<br> | Now that we have found a convenient distribution mean, we need to be sure that it keeps our strains alive and to know how long it can be stored.<br> | ||
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Therefore, we designed a one week experiment: we made plenty of VitaCubes on the same day, and then each day, we plated one cube. Each day, we respected the very same conditions, every step was timed.<br> | Therefore, we designed a one week experiment: we made plenty of VitaCubes on the same day, and then each day, we plated one cube. Each day, we respected the very same conditions, every step was timed.<br> | ||
<img src="https://static.igem.org/mediawiki/2015/6/6f/PBScsurvivalrate.jpeg" alt="Graph"> <br> | <img src="https://static.igem.org/mediawiki/2015/6/6f/PBScsurvivalrate.jpeg" alt="Graph"> <br> | ||
+ | Graph 2<br> | ||
<img src="https://static.igem.org/mediawiki/2015/0/0e/PBlactococcussurvival.jpeg" alt="Graph"><br> | <img src="https://static.igem.org/mediawiki/2015/0/0e/PBlactococcussurvival.jpeg" alt="Graph"><br> | ||
− | + | Graph 3<br> | |
− | + | On graph 2, we can see that the yeasts are very resistant and have a very high survival rate, decreasing very slowly over time. The survival rate is even higher than 1 because yeasts are growing very fast, so in 20 minutes in the water, they divide. In conclusion, the yeasts can be stored more than one week in a VitaCube.<br> | |
− | + | On graph 3, we can see that <i>L.</i> lactis survival rate is low since the first day and is decreasing very quickly every day. After 4 days of drying, the survival rate started to be very very low. Nevertheless, there are still around 10<sup>5</sup> cells in a VitaCube after one week, each is far enough to make a culture from it.<br> | |
Looking at the graphs, we can see that the mix of both strains doesn't influence their survival. | Looking at the graphs, we can see that the mix of both strains doesn't influence their survival. | ||
</div> | </div> | ||
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</div> | </div> | ||
<div style="clear:both"> | <div style="clear:both"> | ||
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− | + | ||
</div> | </div> | ||
− | |||
<h1>Micro-organisms in idli</h1> | <h1>Micro-organisms in idli</h1> | ||
− | + | <p>We want to make sure that the organisms we are using can grow on idli | |
− | <p>We want to make sure that the organisms we are using can grow on idli | + | batter in the conditions of fermentation, and that they can grow |
− | batter in the conditions of fermentation, and that they can grow | + | together in the same batter. To test this hypothesis, we did two |
− | together in the same batter. To test this hypothesis, we did two | + | different experiments. The first one consisted in inoculating the |
− | different experiments. The first one consisted in inoculating the | + | different strains of micro-organisms that we intend to use for |
− | different strains of micro-organisms that we intend to use for | + | fermentation in the batter of idli at the moment of fermentation (after |
− | fermentation in the batter of idli at the moment of fermentation (after | + | the mixing and grinding step). Each time, we add between 10<sup>7</sup> |
− | the mixing and grinding step). Each time, we add between 10<sup>7</sup> | + | |
and 10<sup>8</sup> cells.</p> | and 10<sup>8</sup> cells.</p> | ||
− | + | <p>The second experiment consisted in measuring the growth curve using a | |
− | <p>The second experiment consisted in measuring the growth curve using a | + | TECAN imager, to check if the strains that we want to use can grow in |
− | TECAN imager, to check if the strains that we want to use can grow in | + | such an unusual medium. Here we used classic microbiologic media (LB, |
− | such an unusual medium. Here we used classic microbiologic media (LB, | + | MRS, M17, YPD) and unusual DIY media (sterilized osmosed water, |
− | MRS, M17, YPD) and unusual DIY media (sterilized osmosed water, | + | |
sterilized idli water, sterilized idli batter diluted 1000 times).</p> | sterilized idli water, sterilized idli batter diluted 1000 times).</p> | ||
− | |||
<h2>Growth during fermentation of idli</h2> | <h2>Growth during fermentation of idli</h2> | ||
− | |||
<br> | <br> | ||
− | |||
<h2>TECAN study</h2> | <h2>TECAN study</h2> | ||
− | |||
<br> | <br> | ||
− | |||
<div class="column-left"align="center"> | <div class="column-left"align="center"> | ||
− | + | <IMG SRC= | |
− | <IMG SRC= | + | |
"https://static.igem.org/mediawiki/2015/3/3a/Mean_Idliwater_11sep.png" width=50%> | "https://static.igem.org/mediawiki/2015/3/3a/Mean_Idliwater_11sep.png" width=50%> | ||
− | |||
</div> | </div> | ||
− | |||
<div class="column-right"align="center"> | <div class="column-right"align="center"> | ||
− | + | <IMG SRC= | |
− | <IMG SRC= | + | |
"https://static.igem.org/mediawiki/2015/9/97/Mean_Idliwater_10sep.png" width=50%> | "https://static.igem.org/mediawiki/2015/9/97/Mean_Idliwater_10sep.png" width=50%> | ||
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</div> | </div> | ||
− | |||
<br><br> | <br><br> | ||
− | + | As we can observe, the E. coli strain we engineered to produce | |
− | As we can observe, the E. coli strain we engineered | + | vitamin B2 and the S. cerevisiae who have undergone the PHO 80 or/and |
− | vitamin B2 and the S. cerevisiae who have undergone the PHO 80 or/and | + | PHO85 genes deletion grew well on idli water. This media was obtained by |
− | PHO85 genes deletion | + | |
taking the transparent supernatant after decantation of the idli batter. | taking the transparent supernatant after decantation of the idli batter. | ||
</html> | </html> | ||
{{Paris_Bettencourt/footer}} | {{Paris_Bettencourt/footer}} |
Revision as of 03:54, 19 September 2015