Team:OUC-China/Acknowledgement
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+ | <div class="span9"><p style="font-weight:normal;"><font size="2px"><a href="https://2013.igem.org/Team:OUC-China/Part description">1.We construct a series of new standard Biobrick part and device and submit it to MIT.</a><br /><br /><a href="https://2013.igem.org/Team:OUC-China/Instruction">2.We design a “RNA guardian” device and prove it matches our goals and submit it to MIT.</a><br /><br />3.We find that Biobrick BBa_K590015 do not work because of the wrong sequence, so we correct it and registry the mamJ gene(BBa_K1059014).<br /><br />4.We utilize the microfluidic chip to build the mathematical model reflecting the relationship between the bacterial number and magnetic field intensity.<br /><br />5.We preserved Magnetospirillum Magneticum AMB-1 mamAB genes in E.coli, prevented the genes lose when AMB-1 strain was cultured in High oxygen partial pressure environment.<br /><br />6.We help Tsinghua University by constructing a device and sharing drugs.<br /><br /></font></p> | ||
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Revision as of 00:51, 27 September 2013
Achievement & judge criteria
1.We construct a series of new standard Biobrick part and device and submit it to MIT.
2.We design a “RNA guardian” device and prove it matches our goals and submit it to MIT.
3.We find that Biobrick BBa_K590015 do not work because of the wrong sequence, so we correct it and registry the mamJ gene(BBa_K1059014).
4.We utilize the microfluidic chip to build the mathematical model reflecting the relationship between the bacterial number and magnetic field intensity.
5.We preserved Magnetospirillum Magneticum AMB-1 mamAB genes in E.coli, prevented the genes lose when AMB-1 strain was cultured in High oxygen partial pressure environment.
6.We help Tsinghua University by constructing a device and sharing drugs.