Team:LCG-UNAM-Mexico:KZM
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<br>For the purpose of this project we are particularly concerned in the abundance of phage T7 (burst size) at the end of the cycle (720 seconds) in each infection event. | <br>For the purpose of this project we are particularly concerned in the abundance of phage T7 (burst size) at the end of the cycle (720 seconds) in each infection event. | ||
<br>Ensembles of runs of WTM and KZM will provide us with data to build Burst Size Distributions for each model. | <br>Ensembles of runs of WTM and KZM will provide us with data to build Burst Size Distributions for each model. | ||
- | '''A Kamikaze BSD is next utilized by the population models to recreate the impact of our synthetic circuit in the infection at population level.''' | + | '''A Kamikaze BSD is next utilized by the population models to recreate the impact of our synthetic circuit in the infection at population level.'''<br><br> |
+ | ''See also [[Team:LCG-UNAM-Mexico:WTM |WTM]], [[Team:LCG-UNAM-Mexico:BSD |BSD]], [[Team:LCG-UNAM-Mexico:Population |Population Model]], [[Team:LCG-UNAM-Mexico:CA |Cellular Automata]].'' | ||
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* <h2>Simulation, performance and BSD construction</h2> | * <h2>Simulation, performance and BSD construction</h2> | ||
<br>The next video has been recorded from a single simulation of KZM, molecular species monitoring in time is one of the fundamental objectives of this mode. | <br>The next video has been recorded from a single simulation of KZM, molecular species monitoring in time is one of the fundamental objectives of this mode. | ||
- | <br><br>In order to accurately simulate the infection at population scale we study the amount of phages an infected bacteria will produce at the end of the lytic cycle of T7, burst size. Furthermore we construct burst size distributions of KZM (BSD) and WTM so we can compare the performance of our synthetic kamikaze system vs wild-type behavior. | + | <br><br>In order to accurately simulate the infection at population scale we study the amount of phages an infected bacteria will produce at the end of the lytic cycle of T7, burst size. Furthermore we construct burst size distributions of KZM (BSD) and [[Team:LCG-UNAM-Mexico:WTM |WTM]] so we can compare the performance of our synthetic kamikaze system vs wild-type behavior. |
- | <br>The following video plots the abundance of ABproteins a main procapsid component of viral coat and assembled T7 phages, it is noteworthy to see the impact of the toxin in the amount of viral proteins and in the final number of assembled particles of T7, burst sizes are significantly lower than the wild-type burst sizes, for more details go to [[Team:LCG-UNAM-Mexico: | + | <br>The following video plots the abundance of ABproteins a main procapsid component of viral coat and assembled T7 phages, it is noteworthy to see the impact of the toxin in the amount of viral proteins and in the final number of assembled particles of T7, burst sizes are significantly lower than the wild-type burst sizes, for more details go to [[Team:LCG-UNAM-Mexico:BSD |BSD]]. |
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Latest revision as of 01:03, 22 October 2009