Team:LZU-China
From 2014.igem.org
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In this study, we've designed a novel MFC system. For anode strain, we've cloned a NO3- sensor sequence and a riboflavin producing genes into Escherichia coli. The recombinants is able to detect PNP and produce riboflavin to boost electrical generation when co-cultured with Shewanella oneidensis. In the cathode, gene codes chromate (VI) reductase Yief was cloned into E.coli. The stability of MFCs has been improved and the electricity generated was correlated with the substrates. Moreover, based on this correlation, we've designed a cell phone program which is able to remotely monitor the contaminants concentrations in MFCs. </p> | In this study, we've designed a novel MFC system. For anode strain, we've cloned a NO3- sensor sequence and a riboflavin producing genes into Escherichia coli. The recombinants is able to detect PNP and produce riboflavin to boost electrical generation when co-cultured with Shewanella oneidensis. In the cathode, gene codes chromate (VI) reductase Yief was cloned into E.coli. The stability of MFCs has been improved and the electricity generated was correlated with the substrates. Moreover, based on this correlation, we've designed a cell phone program which is able to remotely monitor the contaminants concentrations in MFCs. </p> | ||
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Revision as of 15:04, 17 October 2014
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