Team:Bielefeld-Germany/Biosafety
From 2013.igem.org
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- | < | + | <h1>Biosafety</h1> |
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+ | <a href="https://2013.igem.org/Team:Bielefeld-Germany/Project/Abstract">Safety Strain</a></div> | ||
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+ | <p><a href="https://2013.igem.org/Team:Bielefeld-Germany/Project/Nanowires#Theory">System TetOR Alive</a></p></div> | ||
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+ | <p><a href="https://2013.igem.org/Team:Bielefeld-Germany/Project/Nanowires#Genetic_Approach">System Lac of Growth</a></p></div> | ||
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+ | <p><a href="https://2013.igem.org/Team:Bielefeld-Germany/Project/Nanowires#Results">System AraCtive</a></p></div> | ||
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- | + | ==Overview== | |
- | [[ | + | [[Image:IGEM Bielefeld 2913 Biosafety E.coli bewaffnet save ohne hintergrund.jpg|300px|left|thumb]] |
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- | Biosafety is an essential aspect when taking part in iGEM especially when you work with living organisms which could possibly get out of your application by damage or incorrect handling. In order to counter this problem there exist useful systems to prevent the bacteria from escaping or killing the bacteria when they are outside of the application. To complement this archive we constructed not only one system but also three systems which differ in leakiness and strength. | + | Biosafety is an essential aspect when taking part in iGEM especially when you work with living organisms which could possibly get out of your application by damage or incorrect handling. In order to counter this problem there exist useful systems to prevent the bacteria from escaping or killing the bacteria when they are outside of the application. To complement this archive we constructed not only one system but also three systems which differ in leakiness and strength. |
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For this approach we combined two common Biosafety-ideas, an auxotrophy and a toxic gene product, in one device. So the constructed Biosafety-System takes the best of this two approaches and is characterized by a double kill-swtich system. This double kill-switch mechanism provides additional a higher plasmid stability and a higher resistance towards undesirable mutations. In one sentence: Our Biosafety-System is save! | For this approach we combined two common Biosafety-ideas, an auxotrophy and a toxic gene product, in one device. So the constructed Biosafety-System takes the best of this two approaches and is characterized by a double kill-swtich system. This double kill-switch mechanism provides additional a higher plasmid stability and a higher resistance towards undesirable mutations. In one sentence: Our Biosafety-System is save! | ||
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- | + | ==Theory== | |
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+ | ==Genetic Approach== | ||
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+ | ==Results== | ||
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+ | ==References== | ||
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Revision as of 21:37, 29 September 2013
Biosafety
Overview
Biosafety is an essential aspect when taking part in iGEM especially when you work with living organisms which could possibly get out of your application by damage or incorrect handling. In order to counter this problem there exist useful systems to prevent the bacteria from escaping or killing the bacteria when they are outside of the application. To complement this archive we constructed not only one system but also three systems which differ in leakiness and strength. For this approach we combined two common Biosafety-ideas, an auxotrophy and a toxic gene product, in one device. So the constructed Biosafety-System takes the best of this two approaches and is characterized by a double kill-swtich system. This double kill-switch mechanism provides additional a higher plasmid stability and a higher resistance towards undesirable mutations. In one sentence: Our Biosafety-System is save!
Theory
Genetic Approach
Results
References