Team:Gaston Day School

From 2010.igem.org

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==''Our Project''==
==''Our Project''==
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We have two primary goals for this year’s competition. First, we plan to produce an iron sensitive reporter which indicates elevated levels of iron. This will be done be done by combining an iron sensitive promoter with a constitutive RFP reporter. In addition to achieving this first reporter, we are using the parts submitted by the Cambridge team last year and use them in place of the RFP gene. Our second, and more important, goal is to create techniques and procedures for the common high school laboratory that can replicate the results from the more advanced research laboratories of universities.
We have two primary goals for this year’s competition. First, we plan to produce an iron sensitive reporter which indicates elevated levels of iron. This will be done be done by combining an iron sensitive promoter with a constitutive RFP reporter. In addition to achieving this first reporter, we are using the parts submitted by the Cambridge team last year and use them in place of the RFP gene. Our second, and more important, goal is to create techniques and procedures for the common high school laboratory that can replicate the results from the more advanced research laboratories of universities.

Revision as of 22:34, 28 July 2010


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Our Team

Consisting of 9th through 12th graders, our team bases itself out of Gaston Day School, a preK-through 12 school in Gastonia, North Carolina. With the guidance of Ms. Anne Byford we enter our second year in the iGEM competition. for this year we have two primary goals:
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  • Create an organsim that will effectively sense the presence of iron in water sources.
  • Adapt techniques from advanced synthetic biolgy to the highschool environment.


Gds student info

Our Project

Minty-e-coli.jpg


We have two primary goals for this year’s competition. First, we plan to produce an iron sensitive reporter which indicates elevated levels of iron. This will be done be done by combining an iron sensitive promoter with a constitutive RFP reporter. In addition to achieving this first reporter, we are using the parts submitted by the Cambridge team last year and use them in place of the RFP gene. Our second, and more important, goal is to create techniques and procedures for the common high school laboratory that can replicate the results from the more advanced research laboratories of universities.

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