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<h1>Results </h1> | <h1>Results </h1> | ||
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+ | <h3>Overview </h3> | ||
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− | + | The goal of our project was to construct a biobrick capable of plastic degradation. We created three biobrick constructs. Each of these constructs contained PETase, ChloroR, osmY, and an Andersen Promoter. The principal difference between three these constructs was the strength of the Andersen promoter incorporated in the construct. Depending on their predicted ability to promote the secretion of the enzyme PETase by the <i>E. coli</i> bacterium, these Andersen promoters were labelled as weak, moderately-strong, or strong. | |
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− | + | Our experiment was ineffectual in demonstrating a substantial degradation of PET plastic. The differences in mass measurements of PET after allowing the <i>E. coli</i> bacterium to secrete PETase into the system were insignificant. We believe human errors, such as our failure to feed the <i>E. coli</i>cells at appropriate intervals, were a main cause of experimental inaccuracies. In addition, time constraints prevented further data collection. | |
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− | + | We are unsure regarding whether our PETase construct was successfully secreted into the system. One way we could test this would be to tag PETase with c-myc, and perform a Western Blot test. | |
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+ | <img src="https://2016.igem.org/File:T--ASIJ_Tokyo--FinalDataTable.png" alt="graphs" style="width:700px;height:600px;">><p style-"float:center; clear:right"> | ||
+ | <br><br> | ||
<img src="https://static.igem.org/mediawiki/2016/2/20/T--ASIJ_Tokyo--WeakPG.png" alt="graphs" style="width:700px;height:600px;">><p style-"float:center; clear:right"> | <img src="https://static.igem.org/mediawiki/2016/2/20/T--ASIJ_Tokyo--WeakPG.png" alt="graphs" style="width:700px;height:600px;">><p style-"float:center; clear:right"> |
Revision as of 10:50, 17 October 2016
Results
Overview
The goal of our project was to construct a biobrick capable of plastic degradation. We created three biobrick constructs. Each of these constructs contained PETase, ChloroR, osmY, and an Andersen Promoter. The principal difference between three these constructs was the strength of the Andersen promoter incorporated in the construct. Depending on their predicted ability to promote the secretion of the enzyme PETase by the E. coli bacterium, these Andersen promoters were labelled as weak, moderately-strong, or strong. Our experiment was ineffectual in demonstrating a substantial degradation of PET plastic. The differences in mass measurements of PET after allowing the E. coli bacterium to secrete PETase into the system were insignificant. We believe human errors, such as our failure to feed the E. colicells at appropriate intervals, were a main cause of experimental inaccuracies. In addition, time constraints prevented further data collection. We are unsure regarding whether our PETase construct was successfully secreted into the system. One way we could test this would be to tag PETase with c-myc, and perform a Western Blot test.
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