Team:TU Delft-Leiden/Project/Life science/EET
From 2014.igem.org
Line 28: | Line 28: | ||
<figure> | <figure> | ||
<img src= | <img src= | ||
- | "https://2014.igem.org/File:Module_electron_transport_transfer_pathway_with_Mtr_protein_complex.jpg" width="100%"> | + | "https://2014.igem.org/File:Module_electron_transport_transfer_pathway_with_Mtr_protein_complex.jpg" width="100%" height="100%"> |
<figcaption> | <figcaption> | ||
Figure 1: General scheme of biosensory plug-and-play E.coli cell responsive to, in this particular case, TNT. Generated is a measureable electrical current via the implemented extracellular electron transport pathway. | Figure 1: General scheme of biosensory plug-and-play E.coli cell responsive to, in this particular case, TNT. Generated is a measureable electrical current via the implemented extracellular electron transport pathway. |
Revision as of 17:59, 17 October 2014
Module Electron Transport
Information with respect to literature consulted regarding the Modules is referred to under Context. Also, each of the three complementary Modules is equipped with an Integration of Departments, in which it is described how the Departments Modeling, Experimental Work and Microfluidics interact. Furthermore, each Module contains information on Cloning and results are presented under Characterization.
- Module Electron Transport
Interested in one of our other Modules? Navigate to the Module Landmine Detection page and discover how we tweaked E. coli to let it respond on landmines. Interested in living materials? Go to our Module Conductive Curli and find out how you can combine the benefits of both living- and non-living materials.