Genetically Modifying Wild Type K12 E. coli for the MtrC Gene for Production of Cytochrome C and Microbial Fuel Cell Application
ISEF · 2024 Energy: Sustainable Materials and Design
Overview
With environmental disasters affecting poorer, disadvantaged communities in disproportionate amounts, solutions that are accessible (i.e. low-cost and abundant resources) are important for targeting those most in need. Microbial Fuel Cells (MFCs) are bioelectrochemical devices that depend on the transport of cytochromes, iron-based proteins, across microorganisms’ cell membranes as a means of transporting electrons to the outside of the cell. These transported electrons can be used for human electricity production. Current work is focused on increasing the efficiency of these systems. The organism Shewanella oneidensis naturally produces cytochromes as coded for by the gene mtrC. This strain of Shewanella has highly complex protein systems that make the microorganism difficult to manipulate and study to increase efficiency. Wild-type (WT) K12 Escherichia coli, a cheap, thoroughly-researched, microorganism, has the potential of operating as a successful electron source in MFCs. This research project attempts to successfully insert the mtrC gene into wild-type K12 E. coli to create a high-efficiency organic substrate for application in MFCs that is low-cost and accessible for the communities most heavily affected by the climate crisis. In the experiment, the transformation of the plasmid containing mtrC into the E. coli of interest via heat shock transformation protocol and electroporation protocol was conducted. Gel electrophoresis processes and growth in the presence of antibiotic kanamycin were conducted. Additional metrics including the reproduction rate of the transformed E. coli and CO2 emission levels of the E. coli were measured. Results from experiments displayed the successful transformation of the mtrC gene into the WT K12 E. coli.
Competition history
- ISEF 2024
Resources
Related projects
ISEF · 2014
MFCs Reloaded: A Novel Bio-Augmented Design to Enhance MFC Efficiency
ISEF · 2025
Optimization of a Microbial Fuel Cell System for Practicality, Versatility, and Affordability: The Future of Green Energy Production
ISEF · 2023
Effects of Artificial Algal-Bacterial Symbioses (E. coli K-12, C. fruendii, & E. coli MC4100) on Microbial Hydrogen Production
ISEF · 2025
Microbial Fuel Cells: A Bioelectrochemical Respiration Assay Using S. oneidensis Cytochrome Complex mtrCAB
ISEF · 2018
Single Chamber MFC: Role of Extracellular Phosphate in Heavy Metal Precipitation
ISEF · 2020
Genetic Modification of Escherichia coli with the Gene alkB2 to Replicate Alcanivorax borkumensis Oil Degradation
ISEF · 2017
Utilization of Epigallocatechin gallate (EGCg) as a Shewanella putrefaciens ATP Synthase Inhibitor to Maximize Microbial Fuel Cell Performance
ISEF · 2026
The Bionic Leaf: Developing a Novel Self-Healing, Bi-Functional Manganese Oxide Catalyst to Use With the Bacterium Ralstonia Eutropha for Sustainable Ethanol Production
Closest projects by meaning, across every fair and year in the corpus.
Browse more like this
Source: Regeneron International Science and Engineering Fair