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- | <td width=" | + | <td width="454" height="54" valign="bottom" nowrap="nowrap" bgcolor="#03438A" id="logo"><img src="https://static.igem.org/mediawiki/2008/f/fc/Logonew1.jpg" width="340" height="120" /><a href="https://2008.igem.org/Team:Tianjin" class="STYLE1"> <span class="STYLE2">a</span><span class="STYLE3">Home</span></a></td> |
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<td colspan="3" bgcolor="#03438A" class="subHeader"><div align="center" class="STYLE16" style="margin-bottom: 0"> | <td colspan="3" bgcolor="#03438A" class="subHeader"><div align="center" class="STYLE16" style="margin-bottom: 0"> | ||
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<td height="39" colspan="2" bgcolor="#03438A"><span class="STYLE1" style="margin-bottom: 0"><strong>Background</strong></span></td> | <td height="39" colspan="2" bgcolor="#03438A"><span class="STYLE1" style="margin-bottom: 0"><strong>Background</strong></span></td> | ||
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- | <td width=" | + | <td width="510" bgcolor="#03438A" class="STYLE9"><p><span class="STYLE10"><strong>Inverted repeats</strong> <br /> |
If the two sites at which recombination will take place are oriented oppositely to one another in the same DNA molecule then the following illustrates the sequence of events that will take place:</span></p></td> | If the two sites at which recombination will take place are oriented oppositely to one another in the same DNA molecule then the following illustrates the sequence of events that will take place:</span></p></td> | ||
- | <td width=" | + | <td width="444" bgcolor="#03438A" class="STYLE9"><p><span class="STYLE10"><strong>Direct repeats</strong> <br /> |
If the two sites at which recombination will take place are oriented in the same direction in the same DNA molecule then the following illustrates the sequence of events:</span></p></td> | If the two sites at which recombination will take place are oriented in the same direction in the same DNA molecule then the following illustrates the sequence of events:</span></p></td> | ||
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<td width="42%"><p align="center"><a href="http://www.mun.ca/biochem/courses/3107/images/POP_BOB.jpg"></a><img src="https://static.igem.org/mediawiki/2008/d/d9/Qweerw.jpg" width="500" height="110" /></p></td> | <td width="42%"><p align="center"><a href="http://www.mun.ca/biochem/courses/3107/images/POP_BOB.jpg"></a><img src="https://static.igem.org/mediawiki/2008/d/d9/Qweerw.jpg" width="500" height="110" /></p></td> | ||
- | <td width="58%"><p align="center"><a href="http://www.mun.ca/biochem/courses/3107/images/BOP_POB.jpg"></a><img src="https://static.igem.org/mediawiki/2008/6/63/Y.jpg" width=" | + | <td width="58%"><p align="center"><a href="http://www.mun.ca/biochem/courses/3107/images/BOP_POB.jpg"></a><img src="https://static.igem.org/mediawiki/2008/6/63/Y.jpg" width="456" height="110" /></p></td> |
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- | <td width=" | + | <td width="406" bgcolor="#03438A" class="STYLE9"><p class="STYLE15"> </p> <p class="STYLE1"> </p> <p> </p> <p class="STYLE9">How do they work? <br /> |
When the donor vector carrying the gene of interest GENE1 was introduced to the E Coli which contains the Receptor vector, the site-specific recombination will occur between the <em>attB1</em> site and the <em>attP1</em> site, so that the two sequences will be integraded into one circular DNA, and then, under inducible conditions, Cre will be expressed and the recombined sequence will be divided into two separate plasmids; one will retain the desired gene 1, while the other preserves the killer gene ccdB, which is under the control of another inducible promoter. When induced, the promoter will express CcdB so that cells containing CcdB will be killed. In order to link GENE 1 with GENE 2, we will introduce the new plasmid containing the desired GENE2 to the survival cells, in which the plasmids containing GENE 1 will behave as the new Receptor plasmid. Very similarly recombination between the <em>attB2 </em>and<em> attP2 </em>and the cleavage between the two <em>loxp </em> sites will be performed, and plasmids containing the linked GENE1 and GENE2 will be selected when the promoter expresses CcdB is induced. </p></td> | When the donor vector carrying the gene of interest GENE1 was introduced to the E Coli which contains the Receptor vector, the site-specific recombination will occur between the <em>attB1</em> site and the <em>attP1</em> site, so that the two sequences will be integraded into one circular DNA, and then, under inducible conditions, Cre will be expressed and the recombined sequence will be divided into two separate plasmids; one will retain the desired gene 1, while the other preserves the killer gene ccdB, which is under the control of another inducible promoter. When induced, the promoter will express CcdB so that cells containing CcdB will be killed. In order to link GENE 1 with GENE 2, we will introduce the new plasmid containing the desired GENE2 to the survival cells, in which the plasmids containing GENE 1 will behave as the new Receptor plasmid. Very similarly recombination between the <em>attB2 </em>and<em> attP2 </em>and the cleavage between the two <em>loxp </em> sites will be performed, and plasmids containing the linked GENE1 and GENE2 will be selected when the promoter expresses CcdB is induced. </p></td> | ||
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- | <td | + | <td><p class="STYLE1">Where have we been?</p></td> |
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<td height="59" colspan="3" bgcolor="#03438A" class="subHeader"><p align="center" class="STYLE3" style="margin-bottom: 0">The synthetic convertible ecosystem</p> </td> | <td height="59" colspan="3" bgcolor="#03438A" class="subHeader"><p align="center" class="STYLE3" style="margin-bottom: 0">The synthetic convertible ecosystem</p> </td> | ||
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- | <td height="30" colspan="3" bgcolor="#03438A" class="subHeader"><table width=" | + | <td height="30" colspan="3" bgcolor="#03438A" class="subHeader"><table width="968" height="384" border="0" align="center"> |
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- | <td width=" | + | <td width="318" bordercolor="#03438A" bgcolor="#03438A"><p class="STYLE8"><span class="STYLE10"><strong>Toggle switch</strong>-----toggle switch is a switch on the basis of two mutually-repressive promoters, the product of each represses the express of that of the other, and both the repressors could be deactivated in certain conditions. And the state of the cell could be regulated by the change of the culture variations.</span></p></td> |
- | <td width=" | + | <td width="319" bordercolor="#03438A" bgcolor="#03438A"><p class="STYLE11"><span class="STYLE4"><strong>Quoru |
m sensing</strong>-----Th | m sensing</strong>-----Th | ||
at is the way how various bacteria “talk” to each other. It is the mechanism ensures that certain genes will keep silent before the cell density of the species pass a threshold. </span></p></td> | at is the way how various bacteria “talk” to each other. It is the mechanism ensures that certain genes will keep silent before the cell density of the species pass a threshold. </span></p></td> | ||
- | <td width=" | + | <td width="329" bordercolor="#03438A" bgcolor="#03438A"><p class="STYLE5"><span class="STYLE9"><strong>Prisoners’ Dilemma----</strong>It is the dilemma in which the two suspects could either choose to cooperate with or betray each other. In conditions when they could communicate freely with each other, they will cooperate, which maximizes their benefits as a whole; while when they are inquisited separately, they will both choose to betray one another to lower the risks of long sentence. </span></p></td> |
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<td height="196" bordercolor="#03438A" bgcolor="#03438A"><img src="https://static.igem.org/mediawiki/2008/2/2d/Qwe.jpg" width="318" height="195" /></td> | <td height="196" bordercolor="#03438A" bgcolor="#03438A"><img src="https://static.igem.org/mediawiki/2008/2/2d/Qwe.jpg" width="318" height="195" /></td> | ||
<td bordercolor="#03438A" bgcolor="#03438A"><img src="https://static.igem.org/mediawiki/2008/6/6e/%E6%9C%AA%E5%91%BD%E5%90%8D%C2%B7.jpg" width="319" height="196" /></td> | <td bordercolor="#03438A" bgcolor="#03438A"><img src="https://static.igem.org/mediawiki/2008/6/6e/%E6%9C%AA%E5%91%BD%E5%90%8D%C2%B7.jpg" width="319" height="196" /></td> | ||
- | <td bordercolor="#03438A" bgcolor="#03438A"><img src="https://static.igem.org/mediawiki/2008/0/0f/Prison.jpg" width=" | + | <td bordercolor="#03438A" bgcolor="#03438A"><img src="https://static.igem.org/mediawiki/2008/0/0f/Prison.jpg" width="317" height="194" /></td> |
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</table></td> | </table></td> | ||
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</strong></span></span></td> | </strong></span></span></td> | ||
<td width="1" rowspan="2" bgcolor="#03438A"> </td> | <td width="1" rowspan="2" bgcolor="#03438A"> </td> | ||
- | <td width=" | + | <td width="407" height="41" bgcolor="#03438A" class="sidebarHeader STYLE5 STYLE4 STYLE12">Our Design </td> |
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- | <td colspan="2"> | + | <td colspan="2" bgcolor="#03438A"><table width="984" border="0"> |
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+ | <td width="484"><div align="center"><span class="STYLE17"><a href="https://2008.igem.org/Experiment">Experiment</a></span> </div></td> | ||
+ | <td width="496"><div align="center"><a href="https://2008.igem.org/Modle" class="STYLE18">Model</a></div></td> | ||
+ | </tr> | ||
+ | </table></td> | ||
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Revision as of 13:03, 27 October 2008
aHome | |||||||||||||||||||||||||||||||||||||||||||||||||||
This idea was inspired by the theory of Prisoner’s Dilemma. As in prisoners’ dilemma, the bacteria in our design are faced with two solutions for coexistence, they could either choose to cooperate with one another by providing inducers to express their partners’ antibiotics-resistance genes or they could take a foe strategy in which no cooperation is needed for both strains’ survival. |
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