Difference between revisions of "Team:SIAT-SCIE/Demonstrate"

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             <h2>Radiation Tolerance Experiment</h2>
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             <h2 style="font-family:'Avenir';font-size:23px">Radiation Tolerance Experiment</h2>
             <p>The expression is induced by different concentration of IPTG, and use a microplate reader to obtain the fluorescence, which can indicate the amount of protein expressed. Then we dilute the broth, take 100μl of diluted broth, spread them on the petri dish, to obtain the original Clone Forming Unit per 100μl diluted broth. Then take 100μl of diluted broth, spread them on the petri dish. Place the petri dish under UV for different time periods, then grow over night, to obtain the Clone Forming Unit per 100μl of diluted irradiated broth. From these experiments, we can count the survival rates of the bacteria with different amount of Dsup protein expressed and survival rates of bacteria after different amount of radiation irradiated. </p>
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             <p style="font-family:'Avenir';font-size:23px">The expression is induced by different concentration of IPTG, and use a microplate reader to obtain the fluorescence, which can indicate the amount of protein expressed. Then we dilute the broth, take 100μl of diluted broth, spread them on the petri dish, to obtain the original Clone Forming Unit per 100μl diluted broth. Then take 100μl of diluted broth, spread them on the petri dish. Place the petri dish under UV for different time periods, then grow over night, to obtain the Clone Forming Unit per 100μl of diluted irradiated broth. From these experiments, we can count the survival rates of the bacteria with different amount of Dsup protein expressed and survival rates of bacteria after different amount of radiation irradiated. </p>
 
             <br />
 
             <br />
             <h3>Experiment Report:</h3>
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             <h3 style="font-family:'Avenir';font-size:23px">Experiment Report:</h3>
 
             <br />
 
             <br />
             <h4>Sample Name:</h4>
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             <h4 style="font-family:'Avenir';font-size:23px">Sample Name:</h4>
             <h6>BL21-P15A-pTac-sfGFP-Dsup-IPTG+</h6>
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             <h6 style="font-family:'Avenir';font-size:23px">BL21-P15A-pTac-sfGFP-Dsup-IPTG+</h6>
             <h6>BL21-P15A-pTac-sfGFP-Dsup-IPTG-</h6>
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             <h6 style="font-family:'Avenir';font-size:23px">BL21-P15A-pTac-sfGFP-Dsup-IPTG-</h6>
 
             <br />
 
             <br />
             <h4>Notice:</h4>
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             <h4 style="font-family:'Avenir';font-size:23px">Notice:</h4>
             <h6>pTac-sfGFP-Dsup is Part BBa_2472007</h6>
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             <h6 style="font-family:'Avenir';font-size:23px">pTac-sfGFP-Dsup is Part BBa_2472007</h6>
 
             <br />
 
             <br />
             <h4>Induction:</h4>
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             <h4 style="font-family:'Avenir';font-size:23px">Induction:</h4>
             <p>0.5mM/ L induce for 6h</p>
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             <p style="font-family:'Avenir';font-size:23px">0.5mM/ L induce for 6h</p>
 
             <br />
 
             <br />
             <h4>OD</h4>
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             <h4 style="font-family:'Avenir';font-size:23px">OD</h4>
 
             <br />
 
             <br />
  
             <h6>BL21-P15A-pTac-sfGFP-Dsup-IPTG+</h6>
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             <h6 style="font-family:'Avenir';font-size:23px">BL21-P15A-pTac-sfGFP-Dsup-IPTG+</h6>
             <h6>BL21-P15A-pTac-sfGFP-Dsup-IPTG-</h6>
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             <h6 style="font-family:'Avenir';font-size:23px">BL21-P15A-pTac-sfGFP-Dsup-IPTG-</h6>
 
             <br />
 
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             <h3>Results</h3>
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             <h3 style="font-family:'Avenir';font-size:23px">Results</h3>
 
             <br />
 
             <br />
 
             <table>
 
             <table>
 
                 <tr>
 
                 <tr>
 
                     <th></th>
 
                     <th></th>
                     <th>-IPTG</th>
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                     <th style="text-align:center;">-IPTG</th>
                     <th>+IPTG</th>
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                     <th style="text-align:center;">+IPTG</th>
 
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                 </tr>
 
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             </table>
 
             </table>
             <p>Key: 30/72 means sample without IPTG added has 30 clones formed on petri dish No.1 and 72 clones formed on dish No.2</p>
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             <p style="font-family:'Avenir';font-size:23px">Key: 30/72 means sample without IPTG added has 30 clones formed on petri dish No.1 and 72 clones formed on dish No.2</p>
 
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             <h4>Survival Rate:</h4>
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             <h4 style="font-family:'Avenir';font-size:23px">Survival Rate:</h4>
 
             <table>
 
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             <h2>Conclusion:</h2>
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             <h2 style="font-family:'Avenir';font-size:23px">Conclusion:</h2>
             <p>We can see the survival rate of the ones with IPTG added, is significantly higher than the ones without IPTG. We can say that the presence of Dsup increase the survival rate of bacteria, after the bacteria is irradiated. So, Dsup can protect organism under radiation conditions.</p>
+
             <p style="font-family:'Avenir';font-size:23px">We can see the survival rate of the ones with IPTG added, is significantly higher than the ones without IPTG. We can say that the presence of Dsup increase the survival rate of bacteria, after the bacteria is irradiated. So, Dsup can protect organism under radiation conditions.</p>
 
             <br />
 
             <br />
  
             <p>Further analysis of the data is explained on <a href="#" alt="modeling">modeling.</a> <p>
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             <p style="font-family:'Avenir';font-size:23px">Further analysis of the data is explained on <a href="#" alt="modeling">modeling.</a> <p>
  
  

Revision as of 23:22, 1 November 2017

comic

Radiation Tolerance Experiment

The expression is induced by different concentration of IPTG, and use a microplate reader to obtain the fluorescence, which can indicate the amount of protein expressed. Then we dilute the broth, take 100μl of diluted broth, spread them on the petri dish, to obtain the original Clone Forming Unit per 100μl diluted broth. Then take 100μl of diluted broth, spread them on the petri dish. Place the petri dish under UV for different time periods, then grow over night, to obtain the Clone Forming Unit per 100μl of diluted irradiated broth. From these experiments, we can count the survival rates of the bacteria with different amount of Dsup protein expressed and survival rates of bacteria after different amount of radiation irradiated.


Experiment Report:


Sample Name:

BL21-P15A-pTac-sfGFP-Dsup-IPTG+
BL21-P15A-pTac-sfGFP-Dsup-IPTG-

Notice:

pTac-sfGFP-Dsup is Part BBa_2472007

Induction:

0.5mM/ L induce for 6h


OD


BL21-P15A-pTac-sfGFP-Dsup-IPTG+
BL21-P15A-pTac-sfGFP-Dsup-IPTG-

Results


-IPTG +IPTG
UV 0s 30 / 72 42 / 44
UV 5s 4 / 7 15 / 46
UV 10s 1 / 7 11 / 22

Key: 30/72 means sample without IPTG added has 30 clones formed on petri dish No.1 and 72 clones formed on dish No.2


#
#

Survival Rate:

-IPTG +IPTG
Dish 1 Dish 2 Dish 1 Dish 2
UV 5s 13.33% 9.72% 35.71% 104.54%
UV 10s 3.33% 9.72% 26.20% 50%

Conclusion:

We can see the survival rate of the ones with IPTG added, is significantly higher than the ones without IPTG. We can say that the presence of Dsup increase the survival rate of bacteria, after the bacteria is irradiated. So, Dsup can protect organism under radiation conditions.


Further analysis of the data is explained on modeling.

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