Difference between revisions of "Team:Tianjin/Demonstrate"

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               <p>To our delight, we verified that our strategy, namely <i>Gal</i> System, is able to trigger the <i>Mating Type Switching</i> in yeasts when induced by galactose. Thereby, we succeeded in building a new kind of on-off device in our target yeast——<b><i> SynⅩ-dUra-416</i></b>, where the whole system is ready to perform as a mating switcher to turn on/off other functional genes for further usage in our project——<b><i>Romantic Switcher</i></b>.</p>
 
               <p>To our delight, we verified that our strategy, namely <i>Gal</i> System, is able to trigger the <i>Mating Type Switching</i> in yeasts when induced by galactose. Thereby, we succeeded in building a new kind of on-off device in our target yeast——<b><i> SynⅩ-dUra-416</i></b>, where the whole system is ready to perform as a mating switcher to turn on/off other functional genes for further usage in our project——<b><i>Romantic Switcher</i></b>.</p>
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           <h4>References</h4>
 
           <h4>References</h4>
 
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         <h4>EXPECTATIONS</h4>   
 
         <h4>EXPECTATIONS</h4>   
 
<p>We are exhilarated to see that SCRaMbLE is really a feasible technology to enhance the yeast's ability to cope with adverse environmental conditions. Not just heavy metal ions, we are looking forward to seeing its future applications, be they, for example, alcohol tolerance or heat tolerance. </p>
 
<p>We are exhilarated to see that SCRaMbLE is really a feasible technology to enhance the yeast's ability to cope with adverse environmental conditions. Not just heavy metal ions, we are looking forward to seeing its future applications, be they, for example, alcohol tolerance or heat tolerance. </p>
 
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         <h4>REFERENCES</h4>   
 
         <h4>REFERENCES</h4>   
 
<p>[1]Shen, Y., Stracquadanio, G., Wang, Y., Yang, K., Mitchell, L. A., & Xue, Y., et al. (2016). Scramble generates designed combinatorial stochastic diversity in synthetic chromosomes. <i>Genome Research</i>, 26(1), 36.<br>   
 
<p>[1]Shen, Y., Stracquadanio, G., Wang, Y., Yang, K., Mitchell, L. A., & Xue, Y., et al. (2016). Scramble generates designed combinatorial stochastic diversity in synthetic chromosomes. <i>Genome Research</i>, 26(1), 36.<br>   
 
[2]Lindstrom, D. L., & Gottschling, D. E. (2009). The mother enrichment program: a genetic system for facile replicative life span analysis in Saccharomyces cerevisiae.<i>Genetics</i> , 183(2):413.
 
[2]Lindstrom, D. L., & Gottschling, D. E. (2009). The mother enrichment program: a genetic system for facile replicative life span analysis in Saccharomyces cerevisiae.<i>Genetics</i> , 183(2):413.
 
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<p>In the future, we plan to construct this biosensor on chromosomes to see whether the result will be more positive. Meanwhile, we will continue enlarging the response peak and rage to improve this biosensor.</p>
 
<p>In the future, we plan to construct this biosensor on chromosomes to see whether the result will be more positive. Meanwhile, we will continue enlarging the response peak and rage to improve this biosensor.</p>
  
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Revision as of 13:13, 28 October 2017

/* OVERRIDE IGEM SETTINGS */

Demonstrate