Team:Uppsala-Sweden

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<span class="hidden">Welcome to Uppsala-SwedeniGEM '2011</span>
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<div class="grid_1 link selflink">[[Team:Uppsala-Sweden | <span class="selflink">Home</span>]]</div><div class="grid_2 link">[[Team:NTU-Singapore/Project | pLaq''U''<span class="sup">e</span> Out!]]</div><div class="grid_2 link">[[Team:NTU-Singapore/HPA | DIYbio]]</div><div class="grid_3 link">[[Team:NTU-Singapore/Notebook/Deliverables | <span class="red">Accomplishments!</span>]]</div><div class="grid_2 link">[[Team:NTU-Singapore/Notebook | Notebook]]</div><div class="grid_2 link">[[Team:NTU-Singapore/About/Team | About Us]]</div>
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<span class="title">''Hello'' <span class="bold">iGEM</span>.</span>
 
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Coming soon !
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=== About our project ===
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Abstract
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Show color with color. The aim is to control gene expression by using only light. Our light sensing system is unique. The output modules will, when right sensor is active, express a colorfull picture.[[Team:Uppsala-Sweden/Project |(More)]]
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<!--#'''Check out [[Team:Uppsala/Notebook/Deliverables | our accomplishments]]!'''-->
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Team
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The team consists of 18 enthusiastic undergraduate students from the Masters Programme in Molecular Biotechnology Engineering and Bioinformatics. Together we will represent ....[[Team:Uppsala-Sweden/Team|(More)]]
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=== Human Practices Advance ===
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Assembly plan
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'''We will be looking into DIYbio, a branch of hobbyist biology that aims to make biotechnology open and accessible to amateur biologists!'''
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The assembly plan shows the approach of our project. It is divided in seven parts (red output, blue output, green/yellow output, chromophore, red sensor, blue sensor and green sensor). [[Team:Uppsala-Sweden/Assembly_plan|(More)]]
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We researched intensively on the origins and scope of DIYbio, debated its merits and demerits, conducted a public survey & interviewed the top names in DIYbio.
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                <img src="https://static.igem.org/mediawiki/2011/2/28/MG_6276.jpeg" title="Photo by Mikael Wallerstedt for the magazine Universen"/>
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                <img src="https://static.igem.org/mediawiki/2011/b/b3/MG_6291.jpeg" title="Photo by Mikael Wallerstedt for the magazine Universen"/>
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Read more [[Team:NTU-Singapore/HPA | here]]!
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About our project
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<!--=== About our project ===
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The aim of our project is to regulate gene expression by three different wavelengths and further on build a bacterial system that will act like a bacterial photocopier. With this project we will participate in the International Genetically Engineered Machine competition (iGEM).<br><br>
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=== About the team ===
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The experimental part of this project is to further develop the light induced regulation of gene expression, aka coliroids. We start out by employing the principles explained by Tabor, Levskaya and Voigt's research on multichromatic light sensing. The first step is make DNA constructs for at least three light-sensing systems, each with different activation wavelengths and different outputs. Then we test each light-sensing system individually in a bacteria platform. Once this is done, we plan to express the three light-sensing systems in the same platform, at the same time and test their abilities when put together. The laboratory methods include for instance BioBrick cloning, site-directed mutagenesis, Lambda Red recombineering, etc.<br><br>
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The ultimate goal is making a "multichromatic coliroid system" capable of independent regulation of three sets of genes by light regulation. The proof of concept will be demonstrated by growing a colorful picture on an agar plate. <br><br>
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Besides this, we will also put a lot of efforts into other parts of the project including characterization of parts, marketing, human practice biosecurity, bio-ethics and website.<br><br>
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This marks the second year NTU-Singapore is taking part in this competition. The team consists of 8 undergraduates, guided by 7 instructors and 3 advisors.
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You can read more about our system design at our data page:
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''See you at the Jamboree!''
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https://2011.igem.org/Team:Uppsala-Sweden/Project/Data
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[[Team:NTU-Singapore/Contact | Contact Us!]]
 
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== Blue Sensor - Animated Example ==
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=== Our top sponsors ===
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We would like to sincerely thank our Gold sponsors, Genentech Singapore and Johnson & Johnson Singapore for their invaluable contribution to the team!
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<br /><div class="grid_4 alpha">[[Image:NTUsponsorgenentech.png|center|200px|Genentech]]</div>
 
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You can see the complete list of sponsors [[Team:NTU-Singapore/Sponsors | here]].
 
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Latest revision as of 22:14, 28 October 2011

Visit our blog:

USblog.png










http://igem2011uu.blogspot.com



Abstract

Show color with color. The aim is to control gene expression by using only light. Our light sensing system is unique. The output modules will, when right sensor is active, express a colorfull picture.(More)

Team

The team consists of 18 enthusiastic undergraduate students from the Masters Programme in Molecular Biotechnology Engineering and Bioinformatics. Together we will represent ....(More)

Assembly plan

The assembly plan shows the approach of our project. It is divided in seven parts (red output, blue output, green/yellow output, chromophore, red sensor, blue sensor and green sensor). (More)




About our project

The aim of our project is to regulate gene expression by three different wavelengths and further on build a bacterial system that will act like a bacterial photocopier. With this project we will participate in the International Genetically Engineered Machine competition (iGEM).

The experimental part of this project is to further develop the light induced regulation of gene expression, aka coliroids. We start out by employing the principles explained by Tabor, Levskaya and Voigt's research on multichromatic light sensing. The first step is make DNA constructs for at least three light-sensing systems, each with different activation wavelengths and different outputs. Then we test each light-sensing system individually in a bacteria platform. Once this is done, we plan to express the three light-sensing systems in the same platform, at the same time and test their abilities when put together. The laboratory methods include for instance BioBrick cloning, site-directed mutagenesis, Lambda Red recombineering, etc.

The ultimate goal is making a "multichromatic coliroid system" capable of independent regulation of three sets of genes by light regulation. The proof of concept will be demonstrated by growing a colorful picture on an agar plate.

Besides this, we will also put a lot of efforts into other parts of the project including characterization of parts, marketing, human practice biosecurity, bio-ethics and website.

You can read more about our system design at our data page:

https://2011.igem.org/Team:Uppsala-Sweden/Project/Data


Blue Sensor - Animated Example