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Models for the kinetics of biodegradation of organic compounds not supporting growth.

机译:不支持生长的有机化合物生物降解动力学模型。

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摘要

We developed 12 models of kinetics to describe the metabolism of organic substrates that are not supporting bacterial growth. These models can be used to describe the biodegradation of organic compounds that are not supporting growth when the responsible populations are growing logistically, logarithmically, or linearly or are not increasing in numbers. Nonlinear regression analysis was used to fit patterns of mineralization by two bacteria to these kinetic models. Pseudomonas acidovorans mineralized 1 ng of phenol per ml while growing exponentially at the expense of uncharacterized organic carbon in a synthetic medium. Phenol at a concentration of 1 ng/ml did not affect the growth of P. acidovorans. These data were best fit by the model that incorporates the equation for logarithmic growth and assumes a concentration of test substrate well below its Km value. In the absence of a second substrate, glucose at concentrations below those supporting growth was mineralized by Salmonella typhimurium in a manner best described by pseudo first-order kinetics. In the presence of different concentrations of arabinose, however, the kinetics of glucose mineralization by S. typhimurium reflected linear, logistic, or logarithmic growth of the population on arabinose. We conclude that the kinetics of mineralization of organic compounds at concentrations too low to support growth are best described either by the first-order model or by models that incorporate expressions for the kinetics of growth of the metabolizing population on other substrates. When growth is at the expense of other substrates, the kinetics observed reflect such growth, as well as the concentration of the substrate of interest.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:我们开发了12个动力学模型来描述不支持细菌生长的有机底物的代谢。这些模型可用于描述当负责任人口以对数,对数或线性增长或数量未增长时不支持增长的有机化合物的生物降解。非线性回归分析用于使两种细菌的​​矿化模式适合这些动力学模型。酸性假单胞菌每毫升矿化1 ng苯酚,同时以合成培养基中未表征的有机碳为代价呈指数增长。浓度为1 ng / ml的苯酚不会影响嗜酸假单胞菌的生长。这些数据最适合该模型,该模型结合了对数生长方程,并假设测试底物的浓度远低于其Km值。在没有第二种底物的情况下,鼠伤寒沙门氏菌以伪一级反应最能描述的方式矿化了低于支持生长的浓度的葡萄糖。但是,在存在不同浓度的阿拉伯糖时,鼠伤寒沙门氏菌的葡萄糖矿化动力学反映了阿拉伯糖种群的线性,对数或对数增长。我们得出结论,有机化合物矿化的动力学浓度太低,不足以支持生长,无论是通过一阶模型还是通过包含代谢种群在其他底物上生长动力学的表达的模型,都可以最好地描述有机化合物的矿化动力学。当生长以其他底物为代价时,观察到的动力学反应了这种生长以及目标底物的浓度。(摘要截短为250字)

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