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<p style=" font-size:9px" align="center"><img src="https://static.igem.org/mediawiki/2012/2/29/ASAS.jpg" width="450" height="280" /></p> | <p style=" font-size:9px" align="center"><img src="https://static.igem.org/mediawiki/2012/2/29/ASAS.jpg" width="450" height="280" /></p> | ||
<p size align="center" style="font-size:11px"><strong>Fig 4: Polymerases per second, we can appreciate that the J23107 promoter is the strongest of the selected, our reference promoter was J23101 .</strong></p> | <p size align="center" style="font-size:11px"><strong>Fig 4: Polymerases per second, we can appreciate that the J23107 promoter is the strongest of the selected, our reference promoter was J23101 .</strong></p> | ||
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+ | With the previous results of the characterization of the promoters there is concluded that the promoter J23107, is the strongest because it produces more PoPs” | ||
+ | </p> | ||
<p align="center"> </p> | <p align="center"> </p> | ||
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Revision as of 03:59, 27 September 2012
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The characteristics of said biopartsare described in the following table:
The following shows the gel digestions confirmatory promoters constructs:
Fig 2: fluorescence of the different promoters when the bacteria were exposed to UV light.
Fig 3: GFP expression vs. Time, we can appreciate that the J23107 promoter is the strongest of the selected, our reference promoter was J23101 Fig 4: Polymerases per second, we can appreciate that the J23107 promoter is the strongest of the selected, our reference promoter was J23101 . With the previous results of the characterization of the promoters there is concluded that the promoter J23107, is the strongest because it produces more PoPs”
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