Difference between revisions of "Team:Vilnius-Lithuania/Project"

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         <h3 class="text-heading" style="border-bottom: 3px solid rgb(62,62,62); margin: 20px 20px;">Application</h3>
 
         <h3 class="text-heading" style="border-bottom: 3px solid rgb(62,62,62); margin: 20px 20px;">Application</h3>
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         <p class="text-justify" style="background-color: rgb(249,249,249); margin-top: 20px;">We wanted to show how efficient our system could be if it was applied to practice. For this reason we selected a few projects from iGEM competition and discussed, how could our Coliclock system be incorporated in them. Click below to find out more. </p>   
 
             <a href="https://2015.igem.org/Team:Vilnius-Lithuania/Results">
 
             <a href="https://2015.igem.org/Team:Vilnius-Lithuania/Results">
 
<img src="https://static.igem.org/mediawiki/2015/c/cd/Vilnius15_circle_dots.png"  
 
<img src="https://static.igem.org/mediawiki/2015/c/cd/Vilnius15_circle_dots.png"  

Revision as of 08:25, 16 September 2015

Description

We created Coliclock - a bacterial system, which helps to limit the spreading of GMOs in nature. To construct our system we used I-F type CRISPR-Cas mechanism, which contains Cascade complex, cas3 protein and crRNA genes. Click below to find out more.

Design

Coliclock was designed by crea­ting regulatory and functional units. Regulatory unit consists of pLux/cI promoter, LuxI, LuxR, pLac operon and cI repressor. Functional unit consists of Casca­de complex, Cas3 protein and crRNR genes. Click below to find out more.

Application

We wanted to show how efficient our system could be if it was applied to practice. For this reason we selected a few projects from iGEM competition and discussed, how could our Coliclock system be incorporated in them. Click below to find out more.

Results

During our project we achieved our goals to create functioning system. We fully cloned functional unit and did almost all the work with the regulatory unit. Click below to find out more.