Team:ITESM-CEM/Interlab
From 2014.igem.org
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GFP has long been used as a reporter of patterns of gene expression in both prokaryotes, were it is useful for characterization of promoters, enhancers and terminators; and in eukaryotes, were tissue-specific or time-specific gene expression can be traced (2). The basis of this procedure is the usage of GFP’s fluorescence as a reporter of activity of promoters and enhancers; the relative fluorescence of cells at different experimental conditions can be compared with statistical techniques, and so the efficiency of the parts can be tested. | GFP has long been used as a reporter of patterns of gene expression in both prokaryotes, were it is useful for characterization of promoters, enhancers and terminators; and in eukaryotes, were tissue-specific or time-specific gene expression can be traced (2). The basis of this procedure is the usage of GFP’s fluorescence as a reporter of activity of promoters and enhancers; the relative fluorescence of cells at different experimental conditions can be compared with statistical techniques, and so the efficiency of the parts can be tested. | ||
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<a name="GFP0"><h2>Existing GFP device</h2></a> | <a name="GFP0"><h2>Existing GFP device</h2></a> | ||
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Bla bla. | Bla bla. | ||
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<a name="GFP1"><h2>New GFP device 1</h2></a> | <a name="GFP1"><h2>New GFP device 1</h2></a> | ||
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Bla bla. | Bla bla. | ||
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<a name="GFP2"><h2>New GFP device 2</h2></a> | <a name="GFP2"><h2>New GFP device 2</h2></a> | ||
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Bla bla. | Bla bla. | ||
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Revision as of 19:10, 24 September 2014
ITESM-CEM | Enzy7-K me |
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Interlab
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