Team:Valencia Biocampus/Achievements
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• We analyzed our work in the context of a <html><a href="https://2013.igem.org/Team:Valencia_Biocampus/HP | • We analyzed our work in the context of a <html><a href="https://2013.igem.org/Team:Valencia_Biocampus/HP | ||
- | "target="_blank"><b>RRI framework</b></a></html>. We also wrote “Ten tales on Synthetic Biology”, a book of short stories showing negative and positive visions on SB. | + | "target="_blank"><b>RRI framework</b></a></html>. We also wrote <html><a href="https://2013.igem.org/Team:Valencia_Biocampus/Ten_Tales_On_Synthetic_Biology |
+ | "target="_blank"><b>“Ten tales on Synthetic Biology”</b></a></html>, a book of short stories showing negative and positive visions on SB. | ||
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• We collaborated with the <html><a href="https://2013.igem.org/Team:NRP-UEA-Norwich | • We collaborated with the <html><a href="https://2013.igem.org/Team:NRP-UEA-Norwich |
Revision as of 13:24, 4 October 2013
Achievements
• We achieved a synthetic transport system for bacteria through an artificial association with worms.
• We altered worms’ behaviour through the controlled expression of an iRNA.
• We characterized and sent to the Registry biobrick parts BBa_K1112000, BBa_K1112001, and BBa_K1112002.
• We built our own scanner and image-analysis software, C++elegans, in order to detect nutrient-rich hotspots in heterogeneous substrates.
• We modeled the system in increasing complexity levels.
• We analyzed our work in the context of a RRI framework. We also wrote “Ten tales on Synthetic Biology”, a book of short stories showing negative and positive visions on SB.
• We collaborated with the Norwich, Purdue ("Characterization collaboration"), Copenhaguen ("Bricks of knowledge") and UC Chile (promoting "Research" the game) teams.
• We performed a pre-field validation test.
• We did all this with transparency, which is the pillar of RRI.