Team:Utah State/Attributions

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<title>USU iGEM 2012</title>
<title>USU iGEM 2012</title>
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The exercise consisted in transforming green fluorescent protein (GFP) into competent E. coli cells. The students added GFP DNA cells to the competent cells and allowed them to incubate for a few minutes. The mixture of cells were then placed in a 42 degree Celsius water bath to “heat shock” the cells, allowing DNA to enter the E. coli cells. Then LB growth medium was added and the cells were incubated for some time to be then transferred to Ampicillin-containing agar plates. The students had fun by “drawing” with the solution on the agar plates while they learned the process behind it. These plates were incubated overnight and pictures of their plates under UV light were emailed to these students.
The exercise consisted in transforming green fluorescent protein (GFP) into competent E. coli cells. The students added GFP DNA cells to the competent cells and allowed them to incubate for a few minutes. The mixture of cells were then placed in a 42 degree Celsius water bath to “heat shock” the cells, allowing DNA to enter the E. coli cells. Then LB growth medium was added and the cells were incubated for some time to be then transferred to Ampicillin-containing agar plates. The students had fun by “drawing” with the solution on the agar plates while they learned the process behind it. These plates were incubated overnight and pictures of their plates under UV light were emailed to these students.
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        Members of the 2012 iGEM also team presented to high school students visiting Utah State University for the department's Discover Biological Engineering program.  The presentation included what synthetic biology is, what the iGEM competition is, how Utah State has participated in the past, and explained this year’s project.  Interactions included answering questions and helping high school students learn how to get involved in iGEM.
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         Sponsors
         Sponsors

Revision as of 20:57, 9 August 2012

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