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An individual-based model for the study of Paracoccus denitrificans, a denitrifying bacterium

机译:一种基于个体的乳癌脱氮网,一种反硝化细菌的模型

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In order to understand some environmental factors that control N_2O production by microbes in agricultural soils, a virtual bioreactor for Paracoccus denitrificans was designed using a culture medium containing succinate as a carbon source, ammonium as nitrogen source and various electron acceptors such as oxygen, nitrate, nitrite, nitrogen monoxide and dinitrogen oxide. INDISIM was the core individual-based model for the bacterial behavior and five metabolic pathways were selected and translated into balanced chemical equations using the Thermodynamic Electron Equivalents Model. This thermodynamic approach is the basis of the individual metabolism that this microbe carries out for its cellular maintenance and production of new biomass. The preliminary simulation results achieved with the implementation of this model in NetLogo showed that it is possible to investigate the behavior of this denitrifying bacterium and some of the outputs regarding the temporal evolutions of the diverse substrates are consistent with previous experimental data carried out with it.
机译:为了了解在农业土壤中使用微生物的微生物进行控制的一些环境因素,使用含有琥珀酸盐作为碳源的培养基,作为氮源和各种电子受体,如氧,硝酸盐,硝酸盐等培养基设计了一种用于裂开的乳癌脱氮的虚拟生物反应器。亚硝酸盐,一氧化氮和二氮氧化物。 IndiSim是核心基于个体的个体类别的模型,用于使用热力学电子等同物模型选择并将五种代谢途径选择并转换成平衡化学方程。这种热力学方法是这种微生物进行其细胞维持和生产新生物量的个体代谢的基础。在NetLogo中实现该模型实现的初步模拟结果表明,可以研究这种脱氮细菌的行为,并且关于各种底物的时间演进的一些输出与与其进行的先前的实验数据一致。

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