Difference between revisions of "Team:SDU-Denmark/testvyff"

(Vyff prøver ting of)
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     <p>In order to find the best way to implement the toxin-antitoxin system, we resort to modelling. We use the <span class="btn-link btn-lg" data-toggle="modal" data-target="#gillespie-algorithm">gillespie algorithm</span> to model the interactions of the <span class="btn-link btn-lg" data-toggle="modal" data-target="#toxin-antitoxin-system">toxin antitoxin system</span>.<br>
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     <p> &alpha In order to find the best way to implement the toxin-antitoxin system, we resort to modelling. We use the <span class="btn-link btn-lg" data-toggle="modal" data-target="#gillespie-algorithm">gillespie algorithm</span> to model the interactions of the <span class="btn-link btn-lg" data-toggle="modal" data-target="#toxin-antitoxin-system">toxin antitoxin system</span>.<br>
 
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We find that when we implement enhanced relE production as a tool to make the bacteria dormant, an additional implementation of relB to ensure don’t stay dormant when in light again.  
 
We find that when we implement enhanced relE production as a tool to make the bacteria dormant, an additional implementation of relB to ensure don’t stay dormant when in light again.  

Revision as of 13:07, 21 October 2017

Modelling


&alpha In order to find the best way to implement the toxin-antitoxin system, we resort to modelling. We use the gillespie algorithm to model the interactions of the toxin antitoxin system.
We find that when we implement enhanced relE production as a tool to make the bacteria dormant, an additional implementation of relB to ensure don’t stay dormant when in light again.
The model found that the system is sensitive to the relE:relB ratio as well as the total production, and that an implementation with production rates in the vicinity of 50 and 35 molecules pr. min for relB and relE respectively yields close to the wished for effect: THe bacteria goes dormant in an hour and wakes up quickly.