Team:SCUT/Data page/Achievements
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- | + | <h1>Achievements<h1> | |
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+ | 1.We helped SYSU construct the original hbax and characterize the part BBa_K1061006 by comparing its growth-inhibiting effect with the original hbax in yeast.<br> | ||
+ | 2.We constructed 22 biobricks in which 15 parts have worked, including 8 new biobricks and submitted 12 high quality and well-characterized standard biobricks.<br> | ||
+ | 3.We constructed two improved biobrick, BBa_K1072017 and BBa_K1072018 and successfully localized the odr-10 into membrane of yeast.<br> | ||
+ | 4.We induced the odr-10 receptor by ligand diacetyl successfully and also activate the downstream pathway.<br> | ||
+ | 5.We constructed improved biobrick, BBa_K1072022, and produced signal molecular.<br> | ||
+ | 6.We have cooperated with 11 bioengineering class to arrange a Bio-model Competition.<br> | ||
+ | 7.We mimicked deterministic and stochastic simulations of pathway model of odorant signal transport.<br> | ||
+ | |||
+ | </p> | ||
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</div> | </div> |
Revision as of 17:13, 27 September 2013
Achievements
1.We helped SYSU construct the original hbax and characterize the part BBa_K1061006 by comparing its growth-inhibiting effect with the original hbax in yeast.
2.We constructed 22 biobricks in which 15 parts have worked, including 8 new biobricks and submitted 12 high quality and well-characterized standard biobricks.
3.We constructed two improved biobrick, BBa_K1072017 and BBa_K1072018 and successfully localized the odr-10 into membrane of yeast.
4.We induced the odr-10 receptor by ligand diacetyl successfully and also activate the downstream pathway.
5.We constructed improved biobrick, BBa_K1072022, and produced signal molecular.
6.We have cooperated with 11 bioengineering class to arrange a Bio-model Competition.
7.We mimicked deterministic and stochastic simulations of pathway model of odorant signal transport.
1.We helped SYSU construct the original hbax and characterize the part BBa_K1061006 by comparing its growth-inhibiting effect with the original hbax in yeast.
2.We constructed 22 biobricks in which 15 parts have worked, including 8 new biobricks and submitted 12 high quality and well-characterized standard biobricks.
3.We constructed two improved biobrick, BBa_K1072017 and BBa_K1072018 and successfully localized the odr-10 into membrane of yeast.
4.We induced the odr-10 receptor by ligand diacetyl successfully and also activate the downstream pathway.
5.We constructed improved biobrick, BBa_K1072022, and produced signal molecular.
6.We have cooperated with 11 bioengineering class to arrange a Bio-model Competition.
7.We mimicked deterministic and stochastic simulations of pathway model of odorant signal transport.