Team:Valencia Biocampus/modhp

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If we look what happens from the 50% and 50%, we se that the ''shape'' of the curve coincides with the one obtained in the expeirmental evolution. The time scale is no accurate, but still the model is able to capture the nature of the cheaters ability to substitute the  ‘’honest’’ Bac2 bacteria under selection pressure.
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Revision as of 18:03, 26 September 2012



    Modeling for Human Practices: The secret files


    Students from our Human Practices subteam found out that two years before releasing their last product, the Talking Life Device, Talking Life Technologies started to carry out a high number of secret experiments regarding the safety of their uprising new sensing-bacteria. These controversial results have just been released two days ago! Click on the image below or in this link to read the complete version of their report!



    After analyzing it, we realized that these equations and the parameters used belong to previous studies done in 2010 (1). Since we wanted to test whether these results were true, we have also carried out our own experiments (Table 1) to determine the best data to use and check the possible outcomes. Let’s model Human Practices!

    Table 1. Data from different sources used to modelllize the population dynamics.
    *Data obtained after several experiments with a cheating plasmid and with no plasmid at all.



    After using our own data the population dynamics we obtained is similar to those from Talking Life Technologies (Figure 4), confirming the worst-case scenario:

    Figure 4. The evolution of both cheater and secretor ("honest") populations
    using our own data.



    So, how could this big company have done something like that? Is our health under their control?

    Experimental evolution prediction from the model

    With the model proposed by Frank [1], with some changes to meet our experimental setup, we obtained the folowing system of ODEs

    Ecu hp.png

    And after the parametric identification of the system with SSm algorithm, with data from the experimental evolution, we get values for the model parameters.

    Table hp.png

    Then we made a simulation experiment to see what happens when we start with no cheaters. In figure 5, we can see the predicted time evolution of the Bac2 and cheaters population.

    Evo hp.png
    Figure 5.
    Model prediction of Bac2 and cheaters evolution.

    If we look what happens from the 50% and 50%, we se that the shape of the curve coincides with the one obtained in the expeirmental evolution. The time scale is no accurate, but still the model is able to capture the nature of the cheaters ability to substitute the ‘’honest’’ Bac2 bacteria under selection pressure.

    Dashed.png
    Figure 5.
    Model prediction of Bac2 and cheaters evolution.


    References:
    [1] Frank, A. (2010) Microbial secretor−cheater dynamics. Phil. Trans. R. Soc. B 365, 2515-2522

    [2] Volkmer, B. and Heinemann, M. (2011) Condition-Dependent Cell Volume and Concentration of Escherichia coli to Facilitate Data Conversion for Systems Biology Modeling. PLoS ONE 6(7): e23126