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

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<h1>Description</h1>
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<p>Tell us about your project, describe what moves you and why this is something important for your team.</p>
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  <img src="https://static.igem.org/mediawiki/2017/5/55/NWU-CHINA-Project1.jpg"/ width="100%">
 
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<h5>What should this page contain?</h5>
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<h1>Description</h1>
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      <p style="font-size:20px">Oil pollution is one of the environmental issues that attract more and more attention. It not only harms creatures immediately, but cause continuous damage to polluted area, which will cause severe harm to environment. Besides, oil polluted area is hard to recovered as well. So, solving the problem of oil pollution has been a dream of people for a long time. So, recovering areas from oil contamination has been a dream of people for a long time.</p>
<li> A clear and concise description of your project.</li>
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      <p style="font-size:20px">This year, we opened our mind. We didn’t limit our mind in recovery, but focused on the prevention. There is a saying goes that a small leak will sink a great ship. On analogy of this, many of oil pollutions are caused by oil spill and some little leak will cause oil spill. If these kinds of leak be found in the beginning, some accident won’t occur any more. Therefore, with using those creature degrading oil, such as bacteria, we are willing to sense oil and find a way expressing this signal to detect leak in a early time. By this way, we want to prevent oil spill and make the world better. This is our Alkane biosensor.  </p>
<li>A detailed explanation of why your team chose to work on this particular project.</li>
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<h3>Background</h3>  
<li>References and sources to document your research.</li>
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      <p style="font-size:20px">Oil pollution is a problem ailed people for a very long time. People have tried a lot of method to deal with this problem, such as, oil boom method, mechanical method, adsorption method, chemical treatment, and biological method. However, these methods cannot meet the requirement of environment recovery. For example, oil boom can only treat a small scale of oil spill; chemical reagent used in chemical method can be more poisonous than oil; biodegradation doesn’t have ideal degradation value. </p>
<li>Use illustrations and other visual resources to explain your project.</li>
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<h1>Design</h1>
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<p style="font-size:20px">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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&copy;2017 NWU-CHINA IGEM.All Rights Reserved. <br>
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<h5>Advice on writing your Project Description</h5>
 
 
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We encourage you to put up a lot of information and content on your wiki, but we also encourage you to include summaries as much as possible. If you think of the sections in your project description as the sections in a publication, you should try to be consist, accurate and unambiguous in your achievements.
 
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Judges like to read your wiki and know exactly what you have achieved. This is how you should think about these sections; from the point of view of the judge evaluating you at the end of the year.
 
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<h5>References</h5>
 
<p>iGEM teams are encouraged to record references you use during the course of your research. They should be posted somewhere on your wiki so that judges and other visitors can see how you thought about your project and what works inspired you.</p>
 
 
 
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<h5>Inspiration</h5>
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<p>See how other teams have described and presented their projects: </p>
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<li><a href="https://2016.igem.org/Team:Imperial_College/Description">2016 Imperial College</a></li>
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<li><a href="https://2016.igem.org/Team:Wageningen_UR/Description">2016 Wageningen UR</a></li>
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<li><a href="https://2014.igem.org/Team:UC_Davis/Project_Overview"> 2014 UC Davis</a></li>
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<li><a href="https://2014.igem.org/Team:SYSU-Software/Overview">2014 SYSU Software</a></li>
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Latest revision as of 06:18, 1 November 2017

Description

Oil pollution is one of the environmental issues that attract more and more attention. It not only harms creatures immediately, but cause continuous damage to polluted area, which will cause severe harm to environment. Besides, oil polluted area is hard to recovered as well. So, solving the problem of oil pollution has been a dream of people for a long time. So, recovering areas from oil contamination has been a dream of people for a long time.

This year, we opened our mind. We didn’t limit our mind in recovery, but focused on the prevention. There is a saying goes that a small leak will sink a great ship. On analogy of this, many of oil pollutions are caused by oil spill and some little leak will cause oil spill. If these kinds of leak be found in the beginning, some accident won’t occur any more. Therefore, with using those creature degrading oil, such as bacteria, we are willing to sense oil and find a way expressing this signal to detect leak in a early time. By this way, we want to prevent oil spill and make the world better. This is our Alkane biosensor.

Background

Oil pollution is a problem ailed people for a very long time. People have tried a lot of method to deal with this problem, such as, oil boom method, mechanical method, adsorption method, chemical treatment, and biological method. However, these methods cannot meet the requirement of environment recovery. For example, oil boom can only treat a small scale of oil spill; chemical reagent used in chemical method can be more poisonous than oil; biodegradation doesn’t have ideal degradation value.






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.




©2017 NWU-CHINA IGEM.All Rights Reserved.