Difference between revisions of "Team:CHINA CD UESTC/Description"
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− | In conclusion, Laccase is one of the most suitable choice for cathode. Therefore, we set out to transform the cathode with | + | In conclusion, Laccase is one of the most suitable choice for cathode. Therefore, we set out to transform the cathode with Laccase. For the purpose of visualizing the location and concentration of Laccase, we combined RFP with Laccase. After that, we designed a way of enriching Laccase on the cathode--using magnetosomes(Figure 1)! |
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<img src="https://static.igem.org/mediawiki/2015/c/c8/CHINA_CD_UESTC_DesOV.png" width="100%" style="margin-left:80px"> | <img src="https://static.igem.org/mediawiki/2015/c/c8/CHINA_CD_UESTC_DesOV.png" width="100%" style="margin-left:80px"> | ||
− | <p id="pic_illustration"> <strong>Figure 1.</strong>The flow diagram of our project. First, we fused RFP with | + | <p id="pic_illustration"> <strong>Figure 1.</strong>The flow diagram of our project. First, we fused RFP with Laccase to make it visible. Then we wanted to construct a high-efficiency enzymatic biofuel cell (EBFC) by enrichment of Laccase utilizing magnetotaxis. |
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Revision as of 02:16, 18 September 2015
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DESCRIPTION
Do you know how to solve energy crisis utilizing biological methods? Have you ever heard about how to construct a enzymatic biofuel cell(EBFC)? Nothing is too strange in the nature. There are many special properties of bacteria in the nature such as producing electricity, being attracted by magnet. Please read the description!