Difference between revisions of "Team:Tianjin/Demonstrate"

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   <p>Aiming to achieve MTS for environmental use, it is essential to make sure that when the <i>MAT</i> locus has DSB (double strands break) cleaved by <i>HO</i>, our type-a (<i>MATa</i>) yeast can only become type-α (<i>MATα</i>). Therefore, we used a <i>Ura-tag</i> to replace the<i> HMRa</i> domain in <i>chromosome Ⅲ</i>. In this way the <i>HMRa</i> will no longer be the donor for the homologous recombination in the repairing process for MAT cleavage. Since the change of mating type may appear successively, there is a great possibility that the same type haploid mate with each other. To avoid the existence of meaningless mating, we built an vector to express <i>MATα</i> genes to produce <i>a1-α2 stable corepressor</i> so that the haploid will regard itself as a diploid and prevent mating unless the <i>MATa</i> locus changes to the other one. After selection, by homologous recombination, we deleted the <i>Ura-tag</i> for further usage. We selected the target colonies (<b><i>SynⅩ-dUra</i></b>) via <i>5-FOA</i> plates. </p>
 
   <p>Aiming to achieve MTS for environmental use, it is essential to make sure that when the <i>MAT</i> locus has DSB (double strands break) cleaved by <i>HO</i>, our type-a (<i>MATa</i>) yeast can only become type-α (<i>MATα</i>). Therefore, we used a <i>Ura-tag</i> to replace the<i> HMRa</i> domain in <i>chromosome Ⅲ</i>. In this way the <i>HMRa</i> will no longer be the donor for the homologous recombination in the repairing process for MAT cleavage. Since the change of mating type may appear successively, there is a great possibility that the same type haploid mate with each other. To avoid the existence of meaningless mating, we built an vector to express <i>MATα</i> genes to produce <i>a1-α2 stable corepressor</i> so that the haploid will regard itself as a diploid and prevent mating unless the <i>MATa</i> locus changes to the other one. After selection, by homologous recombination, we deleted the <i>Ura-tag</i> for further usage. We selected the target colonies (<b><i>SynⅩ-dUra</i></b>) via <i>5-FOA</i> plates. </p>
  <img src="https://static.igem.org/mediawiki/2017/7/7e/Tianjin-ho-result-1.jpeg">
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<div class="zxx_zoom_demo" align="center">
  <p>Fig.1.We successfully acquired the target yeasts as our chassis (<b><i>SynⅩ-dUra</i></b>).</p>
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<script  type="text/javascript" src="https://2017.igem.org/Team:Tianjin/Resources/JS:zoom?action=raw&ctype=text/javascript"></script>
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                    <div class="small_pic_demo" align="center">
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                        <a href="#pic_twenty">
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                          <img src="https://static.igem.org/mediawiki/2017/7/7e/Tianjin-ho-result-1.jpeg"></a>
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<p style="font-size:15px;text-align:center"><br/>Figure 1.Fig.1.We successfully acquired the target yeasts as our chassis (<b><i>SynⅩ-dUra</i></b>)</p>
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                    </div>
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                    </div>
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                  <div id="pic_twenty" style="display:none;"><img src="https://static.igem.org/mediawiki/2017/7/7e/Tianjin-ho-result-1.jpeg"><p style="font-size:15px;text-align:center"><br/>Figure 1.Fig.1.We successfully acquired the target yeasts as our chassis (<b><i>SynⅩ-dUra</i></b>)</p></div>
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   <h4> The result for constructing the <i>Gal</i> systems</h4>
 
   <h4> The result for constructing the <i>Gal</i> systems</h4>
 
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Revision as of 13:19, 27 October 2017

/* OVERRIDE IGEM SETTINGS */

Demonstrate