Difference between revisions of "Team:KUAS Korea/Project/Design"

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                <center><h4><font size = 6.5><strong>B</strong>acterial <strong>E</strong>volutionary <strong>G</strong>ame <strong>S</strong>imulation (<strong>BEGS</strong>)</font><br><font size = 3><i>for Snowdrift, Harmony, Stag Hunt and Prisoner's Dilemma Games</i></font></h4>
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                <p>이미지가 들어갈 자리입니다 호호</p><br><br><br>
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                <li>Producer strain (“cooperator”): display of β-glucosidase on the cell surface</li>
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                <li>Cheater strain: expression of GFP<sub>uv</sub> in the cell, which acts as a reporter gene</li><br><br>
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                <ol>The mechanism is as follows.<br>
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                <li>The producer (cooperator) constitutively expresses beta-glucosidase on its surface and degrades the cellobiose. </li>
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                <li>The cooperator and the cheater take them as energy source and the cheater expresses GFPuv as a reporter gene when it takes up the glucose. </li>
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                <li>As the ratio between the cheater and cooperator changes, the total number of cooperator and cheater changes at the end.</li></ol>
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Latest revision as of 11:27, 15 October 2018

Design




Bacterial Evolutionary Game Simulation (BEGS)
for Snowdrift, Harmony, Stag Hunt and Prisoner's Dilemma Games




이미지가 들어갈 자리입니다 호호




  • Producer strain (“cooperator”): display of β-glucosidase on the cell surface
  • Cheater strain: expression of GFPuv in the cell, which acts as a reporter gene


    1. The mechanism is as follows.
    2. The producer (cooperator) constitutively expresses beta-glucosidase on its surface and degrades the cellobiose.
    3. The cooperator and the cheater take them as energy source and the cheater expresses GFPuv as a reporter gene when it takes up the glucose.
    4. As the ratio between the cheater and cooperator changes, the total number of cooperator and cheater changes at the end.

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