Difference between revisions of "Team:Paris Bettencourt/Notebook/Manufacturing"
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<h2>Material</h2> | <h2>Material</h2> | ||
+ | <ul> | ||
<li>Glycerol stock of Sc. mcherry</li> | <li>Glycerol stock of Sc. mcherry</li> | ||
<li>YPD broth</li> | <li>YPD broth</li> | ||
Line 32: | Line 33: | ||
<li>Sterile eppendorf tubes</li> | <li>Sterile eppendorf tubes</li> | ||
<li>Sterile plates and beads</li> | <li>Sterile plates and beads</li> | ||
+ | </ul> | ||
<h2>Procedure</h2> | <h2>Procedure</h2> | ||
<img src="https://static.igem.org/mediawiki/2015/5/5f/PBmanufacturingdilutions.jpg" width="400px" style="display:block; margin-right: 20px; float:left;"> | <img src="https://static.igem.org/mediawiki/2015/5/5f/PBmanufacturingdilutions.jpg" width="400px" style="display:block; margin-right: 20px; float:left;"> | ||
− | <li>Make a culture of Sc. mcherry in 10ml of YPD media adding 20µL of geneticin</li> | + | <ul><li>Make a culture of Sc. mcherry in 10ml of YPD media adding 20µL of geneticin</li> |
(We did cultures on the 25th of july) | (We did cultures on the 25th of july) | ||
<li>Two days later, centrifuge the culture tube</li> | <li>Two days later, centrifuge the culture tube</li> | ||
Line 41: | Line 43: | ||
<li>Measure the OD, doing the blank with osmosed water</li> | <li>Measure the OD, doing the blank with osmosed water</li> | ||
<li>If the OD is too high to be measured, make a 10 times dilution and measure the OD of the dilution</li> | <li>If the OD is too high to be measured, make a 10 times dilution and measure the OD of the dilution</li> | ||
− | <li> | + | <li>In the eppendorf tubes, make 10^-1 to 10^-5 dilutions of the yeasts/water solution to plate them on YPDagar+GEN(200)</li></ul> |
<br> | <br> | ||
− | That is what we did today, and we plated the different dilutions. | + | That is what we did today, and we plated the different dilutions, thanks to the beads. |
Line 54: | Line 56: | ||
<h2>Material</h2> | <h2>Material</h2> | ||
− | <li>YPD broth</li> | + | <ul><li>YPD broth</li> |
<li>Agar</li> | <li>Agar</li> | ||
<li>Geneticin, 100mg/ml</li> | <li>Geneticin, 100mg/ml</li> | ||
Line 60: | Line 62: | ||
<li>Glycerol stock of Sc. mcherry</li> | <li>Glycerol stock of Sc. mcherry</li> | ||
<li>Sterile eppendorf tubes</li> | <li>Sterile eppendorf tubes</li> | ||
− | <li>Sterile plates and beads</li> | + | <li>Sterile plates and beads</li></ul> |
<h2>Procedure</h2> | <h2>Procedure</h2> | ||
Line 71: | Line 73: | ||
<li>Scratch the aluminium to detach the dried yeasts</li> | <li>Scratch the aluminium to detach the dried yeasts</li> | ||
<li>Put the powder in 10ml of osmosed water</li> | <li>Put the powder in 10ml of osmosed water</li> | ||
− | <li>Plate the solution to see if Sc. | + | <li>Plate the solution to see if Sc. mcherry survived</li> |
</ul> | </ul> | ||
Line 91: | Line 93: | ||
<h1 class="date one">July 29th</h1> | <h1 class="date one">July 29th</h1> | ||
− | <H2>Result of OD test made on the 27th of July:</h2> | + | <H2>Result of the OD test made on the 27th of July:</h2> |
The 10ml solution of Sc. mcherry/water had an OD of 2,557.<br> | The 10ml solution of Sc. mcherry/water had an OD of 2,557.<br> | ||
100µL of the 10^-4 dilution grew 359 colonies, so:<br> | 100µL of the 10^-4 dilution grew 359 colonies, so:<br> | ||
<b>1 OD = 1,4x10^7 cells/ml</b><br> | <b>1 OD = 1,4x10^7 cells/ml</b><br> | ||
− | We repeated the very same experiment today, for more repetitions. | + | We repeated the very same OD experiment today, for more repetitions. |
Line 102: | Line 104: | ||
<h2>Results of the drying test made on the 28th of July:</h2> | <h2>Results of the drying test made on the 28th of July:</h2> | ||
− | Yeasts grew in the plate. We can check that they produce RFP, it's Sc. | + | Yeasts grew in the plate.<br> |
+ | We can check that they produce RFP, it's Sc. mcherry who survived.<br> | ||
<h2>Procedure</h2> | <h2>Procedure</h2> | ||
Today, we are repeating the drying experiment (see July 28th) but drying the yeasts on a plastic dish.<br> | Today, we are repeating the drying experiment (see July 28th) but drying the yeasts on a plastic dish.<br> | ||
− | + | <ul><li>Take 100µL of the culture solution of Sc. mcherry to make dilutions (10^-1 to 10^-5)</li> | |
+ | We remind that the culture tube contain 10ml of media. | ||
+ | <li>Plate 100µL of each dilutions to deduce the number of cells in the culture tube</li> | ||
+ | <li>Centrifuge the culture tube</li> | ||
+ | <li>Throw the media away</li> | ||
+ | <li>Add 300µL of water to detach the yeasts from the tube easily</li> | ||
+ | <li>Spread on aluminium</li> | ||
+ | <li>Let it dry for 2 hours</li> | ||
+ | <li>Scratch the aluminium to detach the dried yeasts</li> | ||
+ | <li>Put the powder in 10ml of osmosed water</li> | ||
+ | <li>Take 100µL of the solution to make dilutions (10^-1 to 10^-5)</li> | ||
+ | <li>Thanks to the beads, plate 100µL of each dilution</li></ul> | ||
+ | |||
<br><br> | <br><br> | ||
<h1 class="date one">July 31th</h1> | <h1 class="date one">July 31th</h1> | ||
− | <h2>Result of the | + | <h2>Result of the OD test made on the 29th of July:</h2> |
+ | The 10ml solution of Sc. mcherry/water had an OD of 2,635.<br> | ||
+ | 100µL of the 10^-4 dilution grew 205 colonies, so:<br> | ||
<b>1 OD = 7,8x10^6 cells/ml</b> | <b>1 OD = 7,8x10^6 cells/ml</b> | ||
+ | |||
<br><br> | <br><br> | ||
<h1 class="date two">August 1st</h1> | <h1 class="date two">August 1st</h1> | ||
− | <h2> | + | <h2>Result of the drying test made on the 30th of July:</h2> |
− | The powder obtained with the drying method | + | 100µL of the 10^-5 dilution of the initial 10ml culture solution grew 106 colonies, so we initially dried 1,06x10^9 cells.<br> |
− | + | 100µL of the 10^-4 dilution of the powder mixed with 30ml of osmosed water grew 123 colonies, so 8,4x10^8 cells survived.<br> | |
+ | We therefore have a survival rate of 79%. | ||
+ | |||
+ | <h2>Discussion and new goal</h2> | ||
+ | The powder we obtained with the drying method stick to everything, because of static electricity and therefore, it is not very easy to distribute and manipulate.<br> | ||
+ | Consequently, we are looking fo other solutions...<br> | ||
<br> | <br> | ||
− | Our second idea | + | Our second idea was to cook a homemade powder with edible ingredients easily found in India.<br> |
+ | We found a recipe that inspired us here: http://www.instructables.com/id/Stop-Paying-for-Yeast-Make-Your-Own/<br> | ||
+ | We decided to compare the initial recipe to our modifications, so we made for different tests :<br> | ||
+ | <ul> | ||
+ | <li>Test 1, original recipe: wheat flour, sugar and ginger </li> | ||
+ | Since the project is designed for rice fermentation and rice is cheaper than wheat, we wanted to try with rice flour. | ||
+ | <li>Test 2: rice flour, sugar and ginger</li> | ||
+ | Ginger can be expensive so maybe we can avoid using it... | ||
+ | <li>Test 3: rice flour, sugar</li> | ||
+ | And maybe we can also avoid using sugar | ||
+ | <li>Test 4: only rice flour</li> | ||
+ | </ul> | ||
+ | |||
+ | <h2>Material</h2> | ||
+ | <ul> | ||
+ | <li>Culture of Sc. mcherry</li> | ||
+ | <li>Potatoes</li> | ||
+ | <li>Flour (wheat and rice)</li> | ||
+ | <li>Cornmeal</li> | ||
+ | <li>Sugar</li> | ||
+ | <li>Ginger</li> | ||
+ | <li>Plate of YPDagar+Gen(200)</li> | ||
+ | <li>Osmosed water</li> | ||
+ | <li>Sterile eppendorf tubes</li> | ||
+ | <li>Sterile beads</li> | ||
+ | </ul> | ||
+ | |||
<h2>Procedure</h2> | <h2>Procedure</h2> | ||
− | |||
<ul> | <ul> | ||
<li>Cook some potatoes</li> | <li>Cook some potatoes</li> | ||
− | <li>Save the cooking water, wait till it's not too hot and mix | + | <li>Save the cooking water, wait till it's not too hot and mix 20ml of it with the yeasts</li> |
− | <li>Add | + | <li>Add 20ml of flour (rice or wheat depending on the recipe), 40ml of mashed potatoes</li> |
− | <li>Add | + | <li>Depending on the recipe add 20ml of sugar and a teaspoon of ginger</li> |
+ | <li>Add 80ml of cornmeal</li> | ||
</ul> | </ul> | ||
<div class="column-left"> | <div class="column-left"> | ||
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<li>Plate the powder obtained to see how many Sc. M Cherry survived </li> | <li>Plate the powder obtained to see how many Sc. M Cherry survived </li> | ||
</ul><br> | </ul><br> | ||
− | |||
− | |||
</div> | </div> | ||
<div class="column-right"><p> | <div class="column-right"><p> | ||
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<br> | <br> | ||
<h1 class="date two">August 3rd</h1> | <h1 class="date two">August 3rd</h1> | ||
− | <h2> | + | <h2>Continuing the experiment we began on the 4th of August</h2> |
− | + | ||
− | + | ||
<div class="column-left"><p> | <div class="column-left"><p> | ||
<br> | <br> | ||
− | + | After almost two days of drying, we obtained a very hard paste that we milled.<br> | |
− | We put | + | After milling, we had this nice yellow powder you can see on the picture<br><br> |
− | + | We put 100mg of each powder in 10ml of osmosed water, made dilutions,<br> | |
+ | and plated the solutions in YPDagar+GEN(200) plates. | ||
</p></div> | </p></div> | ||
<div class="column-right"><p> | <div class="column-right"><p> |
Revision as of 11:27, 12 September 2015