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− | T7 Toehold LacZ is a construct that was developed by the Lambert iGEM 2018 team to be applied as a biosensor. The part BBa_I732005 was submitted by 2007 UTSC iGEM that singularly included the LacZ lactose operon encoding the Beta-galactosidase protein. Used as a qualitative reporter, the Beta-galactosidase activity in the LacZ gene can be viewed with the naked eye when induced by | + | T7 Toehold LacZ is a construct that was developed by the Lambert iGEM 2018 team to be applied as a biosensor. The part BBa_I732005 was submitted by 2007 UTSC iGEM that singularly included the LacZ lactose operon encoding the Beta-galactosidase protein. Used as a qualitative reporter, the Beta-galactosidase activity in the LacZ gene can be viewed with the naked eye when induced by xgal. |
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− | In order to utilize this biobrick as a biosensor mechanism, Lambert iGEM obtained a LacZ toehold construct assembled with a T7 promoter from the Styczynski Lab at Georgia Institute of Technology. When assembled with a distinct RNA sequence complementary to a specific trigger sequence, the blue pigment expression produced by the LacZ toehold construct can be characterized based on | + | In order to utilize this biobrick as a biosensor mechanism, Lambert iGEM obtained a LacZ toehold construct assembled with a T7 promoter from the Styczynski Lab at Georgia Institute of Technology. When assembled with a distinct RNA sequence complementary to a specific trigger sequence, the blue pigment expression produced by the LacZ toehold construct can be characterized based on RGB (red green blue) scales using the Chrome-Q and Color Q system. |
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In conjunction with the 2018 project to detect diseases, specifically cholera, in water, Lambert iGEM submitted eight parts to the Registry of Standard Biological Parts, seven of which are specific to the ctxB1 gene. Four parts are the T7 Cholera ctxB1 Toehold LacZ constructs, and three parts are the T7 Cholera ctxB1 trigger sequences. | In conjunction with the 2018 project to detect diseases, specifically cholera, in water, Lambert iGEM submitted eight parts to the Registry of Standard Biological Parts, seven of which are specific to the ctxB1 gene. Four parts are the T7 Cholera ctxB1 Toehold LacZ constructs, and three parts are the T7 Cholera ctxB1 trigger sequences. |
Revision as of 10:51, 15 October 2018
P A R T S
Parts Overview
T7 Toehold LacZ is a construct that was developed by the Lambert iGEM 2018 team to be applied as a biosensor. The part BBa_I732005 was submitted by 2007 UTSC iGEM that singularly included the LacZ lactose operon encoding the Beta-galactosidase protein. Used as a qualitative reporter, the Beta-galactosidase activity in the LacZ gene can be viewed with the naked eye when induced by xgal.
In order to utilize this biobrick as a biosensor mechanism, Lambert iGEM obtained a LacZ toehold construct assembled with a T7 promoter from the Styczynski Lab at Georgia Institute of Technology. When assembled with a distinct RNA sequence complementary to a specific trigger sequence, the blue pigment expression produced by the LacZ toehold construct can be characterized based on RGB (red green blue) scales using the Chrome-Q and Color Q system.
In conjunction with the 2018 project to detect diseases, specifically cholera, in water, Lambert iGEM submitted eight parts to the Registry of Standard Biological Parts, seven of which are specific to the ctxB1 gene. Four parts are the T7 Cholera ctxB1 Toehold LacZ constructs, and three parts are the T7 Cholera ctxB1 trigger sequences.
In order to utilize this biobrick as a biosensor mechanism, Lambert iGEM obtained a LacZ toehold construct assembled with a T7 promoter from the Styczynski Lab at Georgia Institute of Technology. When assembled with a distinct RNA sequence complementary to a specific trigger sequence, the blue pigment expression produced by the LacZ toehold construct can be characterized based on RGB (red green blue) scales using the Chrome-Q and Color Q system.
In conjunction with the 2018 project to detect diseases, specifically cholera, in water, Lambert iGEM submitted eight parts to the Registry of Standard Biological Parts, seven of which are specific to the ctxB1 gene. Four parts are the T7 Cholera ctxB1 Toehold LacZ constructs, and three parts are the T7 Cholera ctxB1 trigger sequences.
Parts Table
<groupparts id="content2">iGEM18 Lambert_GA</groupparts>