Team:TU Munich
From 2011.igem.org
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- | <li><a href="http://www.igem.org" target="_blank">iGEM Main Page</a> </li> | + | <li><a href="http://www.igem.org" target="_blank">iGEM Main Page</a></li> |
- | <li><a href="http://igem.ph.tum.de/" target="_blank">German Website</a> </li> | + | <li><a href="https://2011.igem.org/Team:TU_Munich/project/data" target="_blank">Data Page</a></li> |
+ | <li><a href="https://2011.igem.org/Team:TU_Munich/extra/attribution" target="_blank">Attributions</a></li> | ||
+ | <li><a href="http://igem.ph.tum.de/" target="_blank">German Website</a></li> | ||
+ | <li><a href="http://www.youtube.com/user/iGEMTUMUNICH2011" target="_blank">Youtube Channel</a></li> | ||
+ | <li><a href="http://twitter.com/#!/iGEM_TUM_2011/" target="_blank">Twitter Account</a></li> | ||
+ | <li><a href="http://www.facebook.com/pages/IGEM-TU-M%C3%BCnchen/149746078408629/" target="_blank">Facebook Page</a></li> | ||
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Revision as of 09:57, 4 September 2011
X.PRESS3D
This year, we aim to develop a light-controlled 3D-printer by innovative utilization of optogenetics. As a first step, we want to develop a genetic logical AND-gate sensitive to light of two different wavelengths (e.g. blue and red light). The bacteria are then immobilized in a transparent gel matrix, where they can be precisely actuated when hit by both blue and red light at the same time. If both of these inputs are positive, gene expression is induced. Various different gene products can be expressed using this system.