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Empirical Evidence and Mathematical Modelling of Carbamazepine Degradative Kinetics by a Wood-Rotting Microbial Consortium

机译:木质腐烂的微生物联盟的经验证据和数学建模降解动力学

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An experimental evolution system with a wood-rotting microbial consortium (BOS08) has demonstrated the acquisition of a new ability to exploit a previously untapped carbon source, such as the recalcitrant carbamazepine (CBZ). The improved extraction method has provided an accurate CBZ depletion rate from BOS08 of 2.14 ± 0.42 × 10~(-3) h~(-1). The consortium did not use cometabolism to process CBZ and the intermediate metabolite produced 10,11-dihydroxycarbamazepine was not pharmacologically active and toxic. The bacteria identification by massive sequencing (Illumina) confirmed the dominance of Proteobacteria Phylum such as genera Cupriavidus sp., Sphingomonas sp., Delftia sp., Acinetobacter sp. and Methylo-bacterium sp. coexisting through all biodegradation process. Based on biological principles, we model the consortium-CBZ kinetics with a set of nonlinear ordinary differential equations with logistic growth type terms. The use of experimental data combined with logistic growth models allow us to test new functional features acquired by the consortium.
机译:具有木材腐烂的微生物联盟(BOS08)的实验演化系统已经证明了采集利用以前未开发的碳源的新能力,例如克钙毒素(CBZ)。改进的提取方法提供了来自BOS08的精确CBZ耗尽率为2.14±0.42×10〜(-3)H〜(-1)。该联盟未使用Cometabolism来处理CBZ,中间代谢物产生10,11-二羟基肉碱没有药理学活跃和有毒。大规模测序(Illumina)的细菌鉴定(Illumina)证实了Phylum植物的优势,如属upriavidus sp。,鞘豆Sp。,Delftia sp.,acinetobacter sp。和甲基 - 细菌sp。通过所有生物降解过程共存。基于生物学原理,我们用一组非线性常微分方程模拟了联盟-CBZ动力学,具有逻辑生长类型术语。使用实验数据与Logistic Grows模型相结合,使我们能够测试由联盟获得的新功能功能。

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