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Mathematical Model of Plasmid Transfer between Strains of Streptomycetes in Soil Microcosms

机译:土壤微观世界链霉菌菌株之间质粒转移的数学模型

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A mathematical model was developed and used to simulate the long-term dynamics of growth and plasmid transfer in nutrient-limited soil microcosms of Streptomyces lividans TK24 carrying chromosomal resistance to streptomycin, S. lividans 1326; and S. violaceolatus ISP5438. Donor, recipient, and transconjugant survival was modelled by an extension to the Verhulst logistic equation which takes account of nutrient limitation, and plasmid transfer was modelled by a mass action model. Rate parameters were derived from experimental data on the early stages of the development of sterile systems. The model predicted donor, recipient, and transconjugant populations in 2.4-h (0.1-day) steps and was tested against the long-term behavior of the experimental sterile systems and independent experimental data on nonsterile systems. Bacteria were periodically enumerated onto selective media over a 20-day period. The effects of long-term nutrient-moisture depletion were correctly predicted.
机译:建立了数学模型并用于模拟在对链霉素,S.lividans 1326具有染色体抗性的营养有限的土壤链霉菌链霉菌TK24中生长和质粒转移的长期动态。和S. violaceolatus ISP5438。通过扩展考虑营养限制的Verhulst logistic方程对供体,受体和转导结合体存活率进行建模,并通过质量作用模型对质粒转移进行建模。速率参数来自无菌系统开发早期的实验数据。该模型以2.4小时(0.1天)的步长预测了供体,受体和转导结合体种群,并针对实验无菌系统的长期行为和非无菌系统上的独立实验数据进行了测试。在20天的时间内定期将细菌计数到选择性培养基上。正确预测了长期养分水分消耗的影响。

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