Difference between revisions of "Team:UFSCar-Brasil/achievements.html"

 
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       <h2 class="ui teal header">What we do</h2>
 
       <h2 class="ui teal header">What we do</h2>
      <a href="#overview" class="ui huge inverted primary basic button">Overview<i class="right arrow icon"></i></a>
 
 
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       <img class="ui small image" src="https://static.igem.org/mediawiki/2015/8/83/UFSCar-Brasil_falcons.PNG" alt=""> Overview
 
       <img class="ui small image" src="https://static.igem.org/mediawiki/2015/8/83/UFSCar-Brasil_falcons.PNG" alt=""> Overview
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  <p> During laboratory activities realized by UFSCar-Brasil team, was obtained different results for the proposed project, as well as the contribution with new biobricks for registry and new protocols for scientific community use in forward projects.
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    <p> During laboratory activities realized by UFSCar-Brasil team, was obtained different results for the proposed project, as well as the contribution with new biobricks for registry and new protocols for scientific community use in forward projects. Based
Based on molecular biology, bioinformatics and microbiology techniques, our Team could propose protocols and biobricks, which assist obtaining protein of difficult expression through the UspA promoter, as well as maintaining bacterial viability at room temperature by plasmolysis induced polyethylene glycol. Thus, we believe that with the expansion of synthetic biology to market manufactures, our protocols represent an important tool in enabling bacteria genetically engineered shelf products.</p>
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      on molecular biology, bioinformatics and microbiology techniques, our Team could propose protocols and biobricks, which assist obtaining protein of difficult expression through the UspA promoter, as well as maintaining bacterial viability at room
<p>Another important point refer to the following project's module, characterized by overexpression of chaperones during cell growth and the utilization of a biosafety method as Killswitch; Developed by UFSCar-Brasil team, these modules can also represent important tools that envisaged the viability and theoretical basis of the project.
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      temperature by plasmolysis induced polyethylene glycol. Thus, we believe that with the expansion of synthetic biology to market manufactures, our protocols represent an important tool in enabling bacteria genetically engineered shelf products.</p>
We believe that, although many structural and funding problems, attach ourselves to the iGEM spirit and we achieved great achievements, and through impressive results in the laboratory, which are described below, contribute to the development of synthetic biology.</p>
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    <p>Another important point refer to the following project's module, characterized by overexpression of chaperones during cell growth and the utilization of a biosafety method as Killswitch; Developed by UFSCar-Brasil team, these modules can also represent
 +
      important tools that envisaged the viability and theoretical basis of the project. We believe that, although many structural and funding problems, attach ourselves to the iGEM spirit and we achieved great achievements, and through impressive results
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      in the laboratory, which are described below, contribute to the development of synthetic biology.</p>
  
 
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   <h3 class="ui header" id="parts">Parts</h3>
 
   <h3 class="ui header" id="parts">Parts</h3>
   <p>Here UFSCar-Brasil presents submitted parts to registry, allied to those used by us. In this sense, we submitted 11 new biobricks, being: 3 intermediate parts, 2 composite parts and 6 new simple parts. Our main goal was to design, build and test <a href="http://parts.igem.org/Part:BBa_K1620000">UspA promoter</a> considered our best part.</p>
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   <p>Here UFSCar-Brasil presents submitted parts to registry, allied to those used by us. In this sense, we submitted 11 new biobricks, being: 3 intermediate parts, 2 composite parts and 6 new simple parts. Our main goal was to design, build and test
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    <a
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    href="http://parts.igem.org/Part:BBa_K1620000">UspA promoter</a> considered our best part.</p>
  
<img class="ui centered image" src="https://static.igem.org/mediawiki/2015/7/71/UFSCariGEM2015_Complete_Circuit.jpg">
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  <img class="ui centered image" src="https://static.igem.org/mediawiki/2015/7/71/UFSCariGEM2015_Complete_Circuit.jpg">
  
 
   <h6 class="ui center aligned header"><b>Figure 1</b>: Genetic circuit of Bug Shoo.</h6>
 
   <h6 class="ui center aligned header"><b>Figure 1</b>: Genetic circuit of Bug Shoo.</h6>
  
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      <a href="https://2015.igem.org/wiki/index.php?title=Team:UFSCar-Brasil/parts.html" class="ui button">See more!</a>
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    <a href="https://2015.igem.org/wiki/index.php?title=Team:UFSCar-Brasil/parts.html" class="ui big teal button">See more!</a>
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   <h3 class="ui header" id="result">Result</h3>
 
   <h3 class="ui header" id="result">Result</h3>
   <p>Here we presented all results of our work. We obtained new biobricks, generated characterization information. Although do not achieve a functional prototype, we design mathematical methods and lab protocols to further testings. We also report all steps of biobricks and testing obtaining. Finally, we also reported plasmolysis experiment, where we could observe a great viability after 7 weeks using a cost effective and simple treatment, which could help transpass in the future our manufacturing tracking project into a real product.</p>
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   <p>Here we presented all results of our work. We obtained new biobricks, generated characterization information. Although do not achieve a functional prototype, we design mathematical methods and lab protocols to further testings. We also report all steps
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    of biobricks and testing obtaining. Finally, we also reported plasmolysis experiment, where we could observe a great viability after 7 weeks using a cost effective and simple treatment, which could help transpass in the future our manufacturing tracking
      <a href="https://2015.igem.org/wiki/index.php?title=Team:UFSCar-Brasil/results.html" class="ui button">See more!</a>
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    project into a real product.</p>
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    <a href="https://2015.igem.org/wiki/index.php?title=Team:UFSCar-Brasil/results.html" class="ui big teal button">See more!</a>
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   <h3 class="ui header" id="judging">Judging Criteria</h3>
 
   <h3 class="ui header" id="judging">Judging Criteria</h3>
 
   <p>Judging criteria are presented allied to our achievements showing how great our work was!</p>
 
   <p>Judging criteria are presented allied to our achievements showing how great our work was!</p>
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      <a href="https://2015.igem.org/wiki/index.php?title=Team:UFSCar-Brasil/judging.html" class="ui button">See more!</a>
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    <a href="https://2015.igem.org/wiki/index.php?title=Team:UFSCar-Brasil/judging.html" class="ui big teal button">See more!</a>
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Latest revision as of 21:49, 18 September 2015

Achievements

What we do

Overview

During laboratory activities realized by UFSCar-Brasil team, was obtained different results for the proposed project, as well as the contribution with new biobricks for registry and new protocols for scientific community use in forward projects. Based on molecular biology, bioinformatics and microbiology techniques, our Team could propose protocols and biobricks, which assist obtaining protein of difficult expression through the UspA promoter, as well as maintaining bacterial viability at room temperature by plasmolysis induced polyethylene glycol. Thus, we believe that with the expansion of synthetic biology to market manufactures, our protocols represent an important tool in enabling bacteria genetically engineered shelf products.

Another important point refer to the following project's module, characterized by overexpression of chaperones during cell growth and the utilization of a biosafety method as Killswitch; Developed by UFSCar-Brasil team, these modules can also represent important tools that envisaged the viability and theoretical basis of the project. We believe that, although many structural and funding problems, attach ourselves to the iGEM spirit and we achieved great achievements, and through impressive results in the laboratory, which are described below, contribute to the development of synthetic biology.

Parts

Here UFSCar-Brasil presents submitted parts to registry, allied to those used by us. In this sense, we submitted 11 new biobricks, being: 3 intermediate parts, 2 composite parts and 6 new simple parts. Our main goal was to design, build and test UspA promoter considered our best part.

Figure 1: Genetic circuit of Bug Shoo.

Result

Here we presented all results of our work. We obtained new biobricks, generated characterization information. Although do not achieve a functional prototype, we design mathematical methods and lab protocols to further testings. We also report all steps of biobricks and testing obtaining. Finally, we also reported plasmolysis experiment, where we could observe a great viability after 7 weeks using a cost effective and simple treatment, which could help transpass in the future our manufacturing tracking project into a real product.

Judging Criteria

Judging criteria are presented allied to our achievements showing how great our work was!

Our amazing sponsors!