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A Computational Study of Amensalistic Control of Listeria monocytogenes by Lactococcus lactis under Nutrient Rich Conditions in a Chemostat Setting

机译:在恒化器环境中,在富营养条件下,乳酸乳球菌对单核细胞增生李斯特菌的弹道控制的计算研究。

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We study a previously introduced mathematical model of amensalistic control of the foodborne pathogen Listeria monocytogenes by the generally regarded as safe lactic acid bacteria Lactococcus lactis in a chemostat setting under nutrient rich growth conditions. The control agent produces lactic acids and thus affects pH in the environment such that it becomes detrimental to the pathogen while it is much more tolerant to these self-inflicted environmental changes itself. The mathematical model consists of five nonlinear ordinary differential equations for both bacterial species, the concentration of lactic acids, the pH and malate. The model is algebraically too involved to allow a comprehensive, rigorous qualitative analysis. Therefore, we conduct a computational study. Our results imply that depending on the growth characteristics of the medium in which the bacteria are cultured, the pathogen can survive in an intermediate flow regime but will be eradicated for slower flow rates and washed out for higher flow rates.
机译:我们研究了在营养丰富的生长条件下,在化学恒温器中通常被认为是安全的乳酸菌乳酸乳球菌对食源性单核细胞增生李斯特氏菌的闭经控制的数学模型。控制剂产生乳酸,因此影响环境中的pH值,从而使其对病原体有害,而对这些自身造成的环境变化本身则具有更大的耐受性。该数学模型由针对细菌物种,乳酸浓度,pH和苹果酸的五个非线性常微分方程组成。该模型涉及代数过多,因此无法进行全面,严格的定性分析。因此,我们进行了计算研究。我们的结果表明,取决于细菌所培养的培养基的生长特性,病原体可以在中间流动状态下存活,但是对于较慢的流速将被消除,而对于较高的流速将被洗掉。

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