Team:Michigan/Modeling
From 2010.igem.org
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In developing the mathematical model, the following assumptions were made: | In developing the mathematical model, the following assumptions were made: | ||
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(1) It is known that ''P. putida'' and ''P. fluorescens'' synergistically degrade NAs [4]. The mechanism of the synergistic degradation and differentiation between the two species should have little effect in evaluating the efficiency of NA degradation, thus our models will assume a homogeneous mixture of ''P. putida'' and ''P. fluorescens'' and represent the two species as one organism. | (1) It is known that ''P. putida'' and ''P. fluorescens'' synergistically degrade NAs [4]. The mechanism of the synergistic degradation and differentiation between the two species should have little effect in evaluating the efficiency of NA degradation, thus our models will assume a homogeneous mixture of ''P. putida'' and ''P. fluorescens'' and represent the two species as one organism. | ||
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(2) We will assume that the microbial population is in a steady state condition, with a balanced growth rate and death rate. | (2) We will assume that the microbial population is in a steady state condition, with a balanced growth rate and death rate. | ||
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[https://2009.igem.org/Team:uOttawa/Modeling uOttawa] used plug flow to describe nutrient flow in the intestines. | [https://2009.igem.org/Team:uOttawa/Modeling uOttawa] used plug flow to describe nutrient flow in the intestines. |
Revision as of 22:56, 27 August 2010