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Biodegradation kinetics of 4-fluorocinnamic acid by a consortium of Arthrobacter and Ralstonia strains

机译:关节杆菌和拉尔斯顿氏菌菌株对4-氟肉桂酸的生物降解动力学

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摘要

Arthrobacter sp. strain G1 is able to grow on 4-fluorocinnamic acid (4-FCA) as sole carbon source. The organism converts 4-FCA into 4-fluorobenzoic acid (4-FBA) and utilizes the two-carbon side-chain for growth with some formation of 4-fluoroacetophenone as a dead-end side product. We also have isolated Ralstonia sp. strain H1, an organism that degrades 4-FBA. A consortium of strains G1 and H1 degraded 4-FCA with Monod kinetics during growth in batch and continuous cultures. Specific growth rates of strain G1 and specific degradation rates of 4-FCA were observed to follow substrate inhibition kinetics, which could be modeled using the kinetic models of Haldane-Andrew and Luong-Levenspiel. The mixed culture showed complete mineralization of 4-FCA with quantitative release of fluoride, both in batch and continuous cultures. Steady-state chemostat cultures that were exposed to shock loadings of substrate responded with rapid degradation and returned to steady-state in 10-15 h, indicating that the mixed culture provided a robust system for continuous 4-FCA degradation.
机译:关节杆菌菌株G1能够在4-氟肉桂酸(4-FCA)上作为唯一碳源生长。该生物将4-FCA转化为4-氟苯甲酸(4-FBA),并利用双碳侧链进行生长,并以某种形式形成4-氟苯乙酮作为末端副产物。我们还分离了Ralstonia sp.。 H1菌株,可降解4-FBA的生物。菌株G1和H1的组合在分批培养和连续培养过程中以Monod动力学降解了4-FCA。观察到菌株G1的特定生长速率和4-FCA的特定降解速率遵循底物抑制动力学,这可以使用Haldane-Andrew和Luong-Levenspiel的动力学模型来建模。混合培养物在分批培养和连续培养中均显示出4-FCA的完全矿化和定量释放的氟化物。暴露于底物的冲击负荷下的稳态化学稳定培养物迅速降解并在10-15小时内恢复到稳态,表明混合培养物为连续的4-FCA降解提供了强大的系统。

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