Team:Paris Saclay/Parts

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The team created two BioBricks in the framework of the projet within the part [https://2014.igem.org/Team:Paris_Saclay/Project/Salicylate_Inducible_System Lemon Ripening]. We had to design a control system to move from a "green state" to a "yellow state" by switching from a “+ ARNt suppressor" state to a “– ARNt suppressor” state. Thus, we put the production of suppressor tRNA (''SupD-tRNA'') under the control of a substrate that will be consumed by bacteria of the growth-medium over time: the salicylate.
The team created two BioBricks in the framework of the projet within the part [https://2014.igem.org/Team:Paris_Saclay/Project/Salicylate_Inducible_System Lemon Ripening]. We had to design a control system to move from a "green state" to a "yellow state" by switching from a “+ ARNt suppressor" state to a “– ARNt suppressor” state. Thus, we put the production of suppressor tRNA (''SupD-tRNA'') under the control of a substrate that will be consumed by bacteria of the growth-medium over time: the salicylate.

Revision as of 03:32, 18 October 2014

Parts

The team created two BioBricks in the framework of the projet within the part Lemon Ripening. We had to design a control system to move from a "green state" to a "yellow state" by switching from a “+ ARNt suppressor" state to a “– ARNt suppressor” state. Thus, we put the production of suppressor tRNA (SupD-tRNA) under the control of a substrate that will be consumed by bacteria of the growth-medium over time: the salicylate.

Both BioBricks shown below were constructed by the blending of three BioBricks in two steps to get the control system of the production of SupD-tRNA by salicylate.


<groupparts>iGEM014 Paris_Saclay</groupparts>