Difference between revisions of "Team:Valencia UPV/Results"

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<li>Module 3: A hardware device (ChatterBox) was engineered in order to provide a SynBio-based solution to improve agriculture sustainability.</li>
<li>Our project has been documented in our Team Wiki and it will be disclosed in our Team Poster and Presentation.</li>
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<li>Module 4: PlantLabCo, an open-access platform aiming to unify Plant SynBio researchers work, was developed.
<li>Safety and Judging forms have been filled out according to the practices done by our Team in each part of the project.</li>
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<li>The new parts made for the project have been submitted to the Registry and well documented in each Registry Part page.</li>
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<li>Attributions page has been created to designate work done by each student in different aspects of the project.</li>
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<li>See our <u><a href="https://2017.igem.org/Team:Valencia_UPV/Attributions" target="_blank">Attributions</a></u> web page.</li>
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<li>BBa_K1742004 (PhiC31) characterization has been improved and additional information has been entered in its Registry Part page.</li>
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<li>See our <u><a href="https://2017.igem.org/Team:Valencia_UPV/Contribution" target="_blank">Contribution</a></u> web page.</li>
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Revision as of 21:00, 1 November 2017

Home • Wet Lab •

RESULTS

  • Module 1: An optogenetic toggle switch circuit capable of tuning the expression of a desired protein depending on the wavelength of the light stimuli was developed.
    • Red activation of the optogenetic toggle switch was characterized.
    • Luciferase dynamic in optogenetic circuit was analysed.
    • Root-aerial part transport by viral autoreplicative vectors was demonstrated.
  • Module 2: A Color Code System triggered by external inducible stimulus together with stress-signals was achieved in order to flag any change in their status accelerating corrective measures.
    • PhiC31 was characterized.
    • Metabolic load vs unproductive complex theory hypothesis were assessed.
    • Recombination Directionality Factor (RDF) action was demonstrated.
    • RDF was characterized.
    • Stress-inducible promoter feasibility was demonstrated.
    • Color code protein expression through a viral vector strategy was achieved.
    • Chromoproteins expression in Nicotiana benthamiana was tested.
  • Module 3: A hardware device (ChatterBox) was engineered in order to provide a SynBio-based solution to improve agriculture sustainability.
  • Module 4: PlantLabCo, an open-access platform aiming to unify Plant SynBio researchers work, was developed.