Team:UC Chile2/Biosafety
From 2012.igem.org
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<li><strong> researcher or public safety, </strong> </li> | <li><strong> researcher or public safety, </strong> </li> | ||
- | No pathogenic microorganisms or dangerous genes are considered in our ideas, in consequence | + | No pathogenic microorganisms or dangerous genes are considered in our ideas, in consequence our intended projects, if executed, do not represent any risk to researchers nor public safety. |
<li><strong> environmental safety? </strong> </li> | <li><strong> environmental safety? </strong> </li> | ||
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To adress the possibility of recombinant Synechocystis cells being released from the lab, we've designed a recombination plasmid that knocks out the copS gene. This gene codes for a Cu-binding protein and is essential to Cu stress response in Synechocystis. It has been demonstrated that strains lacking this gene can´t survive in much lesser Cu concentrations found in drink water or natural water bodies (2). | To adress the possibility of recombinant Synechocystis cells being released from the lab, we've designed a recombination plasmid that knocks out the copS gene. This gene codes for a Cu-binding protein and is essential to Cu stress response in Synechocystis. It has been demonstrated that strains lacking this gene can´t survive in much lesser Cu concentrations found in drink water or natural water bodies (2). | ||
- | We advice every team working in this chassis to adopt similar strategies. By designing integrative plasmids which interrupt fitness related genes, recombinant strains will be auxotrophic and/or hiper- | + | We advice every team working in this chassis to adopt similar strategies. By designing integrative plasmids which interrupt fitness related genes, recombinant strains will be auxotrophic and/or hiper-susceptible. Thus, their recombinant cyanobacterial strains will be unable to thrive in natural environments. |
</ul> | </ul> |
Revision as of 21:02, 7 September 2012