Difference between revisions of "Team:NWU-CHINA/Design"

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<h1>Design</h1>
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<h1>Design</h1>
Design is the first step in the design-build-test cycle in engineering and synthetic biology. Use this page to describe the process that you used in the design of your parts. You should clearly explain the engineering principles used to design your project.
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<p>We got inspiration from 2016 Sydney Australia. They used regulating circuit in ethylene degradation bacteria as sensor gene and used chromoprotein gene as reporter gene to develop an ethylene detection bacteria. They applied this to evaluating fruit ripeness. We are inspired from this method. Based on our lab&prime;s researching, we hope we can utilize the circuit regulating alkane degradation in P.a to construct an alkane detection bacteria.</p>
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This page is different to the "Applied Design Award" page. Please see the <a href="https://2017.igem.org/Team:NWU-CHINA/Applied_Design">Applied Design</a> page for more information on how to compete for that award.
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<h5>What should this page contain?</h5>
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<li>Explanation of the engineering principles your team used in your design</li>
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<li>Discussion of the design iterations your team went through</li>
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<li>Experimental plan to test your designs</li>
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<h5>Inspiration</h5>
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<li><a href="https://2016.igem.org/Team:MIT/Experiments/Promoters">2016 MIT</a></li>
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<li><a href="https://2016.igem.org/Team:BostonU/Proof">2016 BostonU</a></li>
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<li><a href="https://2016.igem.org/Team:NCTU_Formosa/Design">2016 NCTU Formosa</a></li>
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Latest revision as of 06:10, 16 October 2017

Design

We got inspiration from 2016 Sydney Australia. They used regulating circuit in ethylene degradation bacteria as sensor gene and used chromoprotein gene as reporter gene to develop an ethylene detection bacteria. They applied this to evaluating fruit ripeness. We are inspired from this method. Based on our lab′s researching, we hope we can utilize the circuit regulating alkane degradation in P.a to construct an alkane detection bacteria.