Difference between revisions of "Team:Aix-Marseille/Collaborations"

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For plasmid replication rate we propose, again following Shene et al. [?], the empirical relationship :<br/>
 
For plasmid replication rate we propose, again following Shene et al. [?], the empirical relationship :<br/>
<div lang="latex"> k_1 \frac{\mu (\mathbf{z},S)}{K_1 + \mu (\mathbf{z},S)} ( z_{1_{max}} - z_1 ) </div>
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<div lang="latex"> \dot{z}_1 (\mathbf{z},S) = k_1 \frac{\mu (\mathbf{z},S)}{K_1 + \mu (\mathbf{z},S)} ( z_{1_{max}} - z_1 ) if z_1 \geq 1.0 or  \dot{z}_1 (\mathbf{z},S) = 0 if 0.0 \leq z_1 < 1.0</div> (4)
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This relation, and equivalent one for plasmid number 2 <div lang="latex">\dot{z}_2 (\mathbf{z,S})</div> is designed to satisfy the boundary conditions of no reproduction if there is less than 1 plasmid in the cell, and a maximum copy number of <div lang="latex">z_{1_{max}}</div>. This introduces the parameters <div lang="latex">k_1</div> and <div lang="latex">K_1</div> which are respectively the plasmid replication rate (in <div lang="latex">hr^{-1}</div>) and the inhibition constant (also in <div lang="latex">hr^{-1}</div>).<br/>
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The inhibition constant reduces plasmid replication rate at slower growth rates.
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Notice that here we have directly defined <div lang="latex">\bar{\dot{\mathbf{V}}}(\mathbf{z,c})</div> rather than <div lang="latex">\beta </div> and <div lang="latex">\bar{\mathbf{R}}(\mathbf{z,c})</div>.<br/>
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For the growth yield we propose :
 
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Revision as of 15:28, 17 October 2016