What we expected to see
DI: Here we expected no flourescence at all as the PcomE promoter would have no phosphorilated ComE to activate LasR expression.
KX: In this construction LasR was being producessed constitutively while there was no QteE expression. Because of that the LasR would be able to induce the GFP expression with no expression barrier.
KXIV: This circuit has both LasR and QteE being generated at the same rate, that's because they are under the control of the same promter. What we wanted to verify was wheter the LasR could induce GFP expression whem in the same molar concentration as QteE.
What actually happened: After measuring the construction above, the results were inconsistent. KX assembly, which was supposed to have a higher fluorescence compared to the other two, did not display such behavior. Some of the problems we might have had in our construction:
- The lasI gene, which produces the HSL needed for proper folding and indicer ability of the LasR protein did not produce it correctly, impossibilitating the induction of the PlasR promoter.
- The PlasR promoter is just not working properly.
- Any false positive in the confirmation of the assemblies could have harmed the circuit's biological cascade.