Iosikharenko (Talk | contribs) |
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<h1 class='gold'>Gold</h1> | <h1 class='gold'>Gold</h1> | ||
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− | <li><p> | + | <li><p><b>Integrated Human Practices:</b><br /></p></li> |
− | <li><p> | + | <li><p><b>Improve a previous part or project:</b><br /></p></li> |
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<h1 class='silver'>Silver</h1> | <h1 class='silver'>Silver</h1> | ||
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− | <li><p> | + | <li><p><b>Validated Part / Validated Contribution:</b><br /></p></li> |
+ | <li><p><b>Collaboration:</b><br /></p></li> | ||
+ | <li><p><b>Human Practices:</b><br /></p></li> | ||
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<h1 class='bronze'>Bronze</h1> | <h1 class='bronze'>Bronze</h1> | ||
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− | <li><p> | + | <li><p><b>Register and attend:</b><br /></p></li> |
+ | <li><p><b>Attribution:</b><br />This is our <a href='https://2016.igem.org/Team:UT-Tokyo/Attributions'>Attributions page.</a></p></li> | ||
+ | <li><p><b>Part / Contribution:</b><br /></p></li> | ||
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Revision as of 17:18, 14 October 2016
Gene expression changes after each cell division
Our project would be able to exhibit, in E. coli, that despite carrying the same genetic information, different phenotypes can be expressed across generations. Much like the phenomenon seen in epigenetics. Moreover, this technology could potentially be applied in field to carry out certain tasks automatically without the need of external input eg. to make engineered cells automatically carry programmed cell death after a certain number of divisions.
Gold
Integrated Human Practices:
Improve a previous part or project:
Silver
Validated Part / Validated Contribution:
Collaboration:
Human Practices:
Bronze
Register and attend:
Attribution:
This is our Attributions page.Part / Contribution: