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Complete Biodegradation of 4-Fluorocinnamic Acid by a Consortium Comprising Arthrobacter sp. Strain G1 and Ralstonia sp. Strain H1

机译:包含节杆菌属的财团对4-氟尿酸进行完全生物降解。菌株G1和Ralstonia sp。 H1株

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A consortium of the newly isolated bacterial strains Arthrobacter sp. strain G1 and Ralstonia sp. strain H1 utilized 4-fluorocinnamic acid for growth under aerobic conditions. Strain G1 converted 4-fluorocinnamic acid into 4-fluorobenzoic acid and used the two-carbon side chain for growth, with some formation of 4-fluoroacetophenone as a dead-end side product. In the presence of strain H1, complete mineralization of 4-fluorocinnamic acid and release of fluoride were obtained. Degradation of 4-fluorocinnamic acid by strain G1 occurred through a β-oxidation mechanism and started with the formation of 4-fluorocinnamoyl-coenzyme A (CoA), as indicated by the presence of 4-fluorocinnamoyl-CoA ligase. Enzymes for further transformation were detected in cell extract, i.e., 4-fluorocinnamoyl-CoA hydratase, 4-fluorophenyl-β-hydroxy propionyl-CoA dehydrogenase, and 4-fluorophenyl-β-keto propionyl-CoA thiolase. Degradation of 4-fluorobenzoic acid by strain H1 proceeded via 4-fluorocatechol, which was converted by an ortho -cleavage pathway.
机译:新分离的细菌菌株节杆菌属的一个财团。菌株G1和Ralstonia sp。 H1菌株利用4-氟肉桂酸在有氧条件下生长。菌株G1将4-氟肉桂酸转化为4-氟苯甲酸,并利用二碳侧链进行生长,并且形成了4-氟苯乙酮作为末端副产物。在菌株H1存在下,获得了4-氟肉桂酸的完全矿化和氟化物的释放。菌株G1通过β-氧化机制降解了4-氟肉桂酸,并从4-氟肉桂酰辅酶A(CoA)的形成开始,这表明存在4-氟肉桂酰辅酶A连接酶。在细胞提取物中检测到用于进一步转化的酶,即4-氟肉桂酰基-CoA水合酶,4-氟苯基-β-羟基丙酰基-CoA脱氢酶和4-氟苯基-β-酮丙酰基-CoA硫解酶。菌株H1通过4-氟邻苯二酚降解4-氟苯甲酸,其通过邻位裂解途径转化。

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