Team:UANL Mty-Mexico/Posters

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<div class="link-header">1: DNA</div>
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<b>Topics:</b> -Miau Miau Miau.
 
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<div class="link-header">2: Genes</div>
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<b>Topics</b>: -Genes as functional units of DNA -Organization and parts of a genes -How do the genes work? -Central dogma of molecular biology. 
 
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<b>Activity</b>: Puzzle with multiple options to explain gene function through the central Dogma. -Use of common examples.
 
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<div class="link-header">3: Proteins</div>
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<b>Topics</b>: -Proteins as carriers of most biological processes -Types of proteins -Examples of  common proteins -The genetic code 
 
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<b>Activity</b>: Build a protein from DNA code (translation), Protein models.
 
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         <div class="link-header">4: Genetic Engineering</div>
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<b>Topics</b>: -Recombinant DNA technology -Restriction enzymes, ligase and vectors -Examples. 
 
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<b>Activity</b>: Build a recombinant DNA molecule with colored cables  and transform a cell.
 
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         <div class="link-header">5: Synthetic Biology</div>
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            <b>Topics</b>: -Universality, modularity and abstraction of bioparts -Synbio as the application of engineering concepts to biology -Advancements in DNA synthesis and sequencing technologies.
 
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<b>Activity</b>:  Construct a genetic circuit on a board and estimate time and costs to build it.
 
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         <div class="link-header">6: Biobricks</div>
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            <b>Topics</b>: -BioBricks as standard DNA parts - Parts of a BioBrick - Types of BioBricks. -Biobrick assembly -The Registry of Standard Biological Parts
 
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<b>Activity</b>: Put compatible bricks together.
 
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         <div class="link-header">7: Biological machine</div>
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<b>Topics</b>: -Imagine the possibilities -Addressing high impact problems through biomachines. -Metabolic load -Advantages of biomachines over robots.
 
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<b>Activity</b>: "Labyrinth of metabolism" so that the visitor knows that "parts" must be manipulated to make a organism perform certain function.
 
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         <div class="link-header">8: Applications of SynBio</div>
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        <b>Topics</b>: -Impact of SynBio in a wide variety of areas - Examples of issues solved through SynBio (How do these projects work?) 
 
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<b>Activity</b>: The visitor must correlate a specific genetic circuit to its application area.
 
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         <div class="link-header">9: iGEM</div>
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<b>Topics</b>: iGEM as the biggest synthetic biology competition, rules, motivation, scope. - iGEM UANL 2011 and 2012 -CIDEB-UANL 2012 
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<b>Activity</b>: -Explain<a href= "https://2011.igem.org/Team:UANL_Mty-Mexico"> our 2011 project </a>-Exhibition of the light-machine used in our project -Explain <a href="https://2012hs.igem.org/Team:CIDEB-UANL_Mexico">CIDEB's 2012 project </a>
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         <div class="link-header">10: Ethics and Biosafety</div>
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        <b>Topics</b>: -Ethics definition -Human quality of life -Good and ugly -Impact awareness -Acceptance of SynBio -Potential problems -Precautions taken to prevent them -Biosafety levels
 
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<b>Activity</b>: Dress with biosafety equipment  (lab coat, glasses, gloves…) as fast as possible!
 
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Revision as of 19:32, 27 September 2013

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Posters Exposition


Both teams (IGEM-UANL and IGEM-CIDEB) were invited by the “Asociación Estudiantil de Biotecnología Genómica” from the FCB (AsEBioGen) to the poster exposition because of the LBG Week (Genomics and Biotechnology Career Week), celebrated in the central hall of the Faculty, where the projects done were exposed: HuBac y E. cologic as well as Human Practices in the case of the UANL team and Kumus with the CIDEB team.



iGEM Posters Exposed




Good comments and advices were generated respecting to the works exposed as well as people interested in being part of the IGEM team.


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