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Biodegradation of 5-chloro-2-picolinic acid by novel identified co-metabolizing degrader Achromobacter sp f1

机译:通过新蛋白酶鉴定为5-氯-2-菲素酸的生物降解鉴定了共代谢降解剂SP易杆菌SP F1

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Several bacteria have been isolated to degrade 4-chloronitrobenzene. Degradation of 4-chloronitrobenzene by Cupriavidus sp. D4 produces 5-chloro-2-picolinic acid as a dead-end by-product, a potential pollutant. To date, no bacterium that degrades 5-chloro-2-picolinic acid has been reported. Strain f1, isolated from a soil polluted by 4-chloronitrobenzene, was able to co-metabolize 5-chloro-2-picolinic acid in the presence of ethanol or other appropriate carbon sources. The strain was identified as Achromobacter sp. based on its physiological, biochemical characteristics, and 16S rRNA gene sequence analysis. The organism completely degraded 50, 100 and 200 mg L-1 of 5-chloro-2-picolinic acid within 48, 60, and 72 h, respectively. During the degradation of 5-chloro-2-picolinic acid, Cl- was released. The initial metabolic product of 5-chloro-2-picolinic acid was identified as 6-hydroxy-5-chloro-2-picolinic acid by LC-MS and NMR. Using a mixed culture of Achromobacter sp. f1 and Cupriavidus sp. D4 for degradation of 4-chloronitrobenzen, 5-chloro-2-picolinic acid did not accumulate. Results infer that Achromobacter sp. f1 can be used for complete biodegradation of 4-chloronitrobenzene in remedial applications.
机译:已分离几种细菌来降解4-氯氮苯。 Cupriavidus SP降解4-氯氮苯苯。 D4产生5-氯-2-普罗萘酸作为死端副产物,潜在的污染物。迄今为止,没有报道没有降解5-氯-2-吡啶酸的细菌。与由4-氯氮苯乙烯污染的土壤分离的菌株F1能够在乙醇或其他适当的碳源存在下共代谢5-氯-2-菲素酸。将该菌株鉴定为achromobacter sp。基于其生理,生化特征和16S rRNA基因序列分析。生物体分别在48,60和72小时内完全降解50,100和200mg L-1的5-氯-2-脲丙酸。在5-氯-2-吡啶酸的降解期间,释放CL-。通过LC-MS和NMR鉴定为6-羟基-5-氯-2-氨氟吡啶酸的初始代谢产物。使用achromobacter sp的混合培养物。 F1和Cupriavidus sp。 D4用于降解4-氯硝基苯,5-氯-2-氨氯酸不会积聚。结果推断achromobacter sp。 F1可用于完全生物降解4-氯氮苯并在补救应用中。

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