Team:SUSTC-Shenzhen-B/lab results
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- | + | <p>Result</p> | |
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- | <p> | + | </font><h3 class="STYLE2"><font face="Arial, Helvetica">1. Pictures seen under fluorescence microscope</font></h3> |
- | <p> | + | <p class="STYLE2"><font face="Arial, Helvetica"><img src=" https://static.igem.org/mediawiki/2012/d/d2/71.png" class="img_fl img_border" //font></p><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br> |
- | <p> | + | <p><span class="STYLE3">(figure 1: Those bacteria who express GFP and RFP are seen under the fluorescence microscope activated by 488nm light.The picture shows the expression of the RFP. )</span></p> |
- | < | + | <p class="STYLE2"><font face="Arial, Helvetica"><img src=" https://static.igem.org/mediawiki/2012/e/ec/81.png" class="img_fl img_border" //font></p><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br><Br> |
- | + | <p><span class="STYLE3">(figure 2: Those bacteria who express GFP and RFP are seen under the fluorescence microscope activated by 488nm light.The picture shows the expression of the GFP. ) </span></p> | |
- | <p> | + | <p> </p> |
- | <p> | + | <h3 class="STYLE2"><font face="Arial, Helvetica">2. Fit curves relating to dscores and terminator efficiencies. </font></h3> |
- | + | <p class="STYLE2"><img src="https://static.igem.org/mediawiki/2012/e/ec/91.png" class="img_fl img_border" //font /></p> | |
- | + | <p class="STYLE3">(figure 3 : According the data on biofab ( <a href="http://io.biofab.org/services/studio/dac/">http://io.biofab.org/services/studio/dac/</a> ) and our software predicted dscores, create fit curves. Linear fit curve is founded to have the highest accuracy among all the fit curves. )</p> | |
- | + | <p class="STYLE3"><span class="STYLE2"><img src=" https://static.igem.org/mediawiki/2012/d/d6/92.png" class="img_fl img_border" //font /></span></p> | |
- | + | <p class="STYLE3">(figure 4 : According to our experiment measured terminator efficiencies and our software predicted dscores, we create fit curve to relate all the data . To correspond to the figure 3, we choose linear fit curve to link all the data. There are 5 valuable points of terminator efficiencies. The sequences are listed below. In the experiment, we transform 9 terminators to plasmid mutant-psb1a3-GF and only get 5 reliably terminators’ data. The points appeared on the figure are terminators whose number is 1,4,6,7,8 )</p> | |
- | + | <p class="STYLE4"><span class="STYLE2"><img src=" https://static.igem.org/mediawiki/2012/2/2b/94.png" class="img_fl img_border" //font /></span></p> | |
- | + | <p class="STYLE3">(figure 5 : Here listed the sequences of terminator whose efficiencies are measured in the lab.)</p> | |
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Revision as of 21:08, 26 September 2012
Result
1. Pictures seen under fluorescence microscope
(figure 1: Those bacteria who express GFP and RFP are seen under the fluorescence microscope activated by 488nm light.The picture shows the expression of the RFP. )
(figure 2: Those bacteria who express GFP and RFP are seen under the fluorescence microscope activated by 488nm light.The picture shows the expression of the GFP. )
2. Fit curves relating to dscores and terminator efficiencies.
(figure 3 : According the data on biofab ( http://io.biofab.org/services/studio/dac/ ) and our software predicted dscores, create fit curves. Linear fit curve is founded to have the highest accuracy among all the fit curves. )
(figure 4 : According to our experiment measured terminator efficiencies and our software predicted dscores, we create fit curve to relate all the data . To correspond to the figure 3, we choose linear fit curve to link all the data. There are 5 valuable points of terminator efficiencies. The sequences are listed below. In the experiment, we transform 9 terminators to plasmid mutant-psb1a3-GF and only get 5 reliably terminators’ data. The points appeared on the figure are terminators whose number is 1,4,6,7,8 )
(figure 5 : Here listed the sequences of terminator whose efficiencies are measured in the lab.)