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Kinetics of Microbial Dehalogenation of Haloaromatic Substrates in Methanogenic Environments

机译:产甲烷环境中卤代芳烃基质微生物脱卤的动力学

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The kinetic parameters associated with the microbial dehalogenation of 3-chlorobenzoate, 3,5-dichlorobenzoate, and 4-amino-3,5-dichlorobenzoate were measured in anoxic sediment slurries and in an enriched methanogenic culture grown on 3-chlorobenzoate. The initial dehalogenation of the substrates exhibited Michaelis-Menten kinetics. The apparent Km values for the above substrates ranged from 30 to 67 μM. The pattern of degradation, however, was unusual. The enrichment culture accumulated partially dehalogenated intermediates to 72 and 98% of that possible when incubated with either 3,5-dichloro- or 4-amino-3,5-dichlorobenzoate, respectively, but did not accumulate significant amounts of benzoate when 3-chlorobenzoate was the sole carbon and energy source. The accumulated intermediates were rapidly metabolized only after the parent substrate concentrations were nearly depleted (Km and Vmax parameters for substrate and intermediate dehalogenations alone were insufficient to explain the transitory accumulation of intermediates. However, by inserting a competitive inhibition term, with the primary substrate as the inhibitor, the observed pattern of degradation was simulated. Apparently, the dichlorinated substrates competitively inhibit the dehalogenation of the monochlorinated substrates. Similar kinetic patterns were noted for sediments, although the rates were slower than in the enrichment culture.
机译:在缺氧沉积物淤浆和在3-氯苯甲酸酯上生长的富甲烷产菌培养物中,测量了与3-氯苯甲酸酯,3,5-二氯苯甲酸酯和4-氨基-3,5-二氯苯甲酸酯的微生物脱卤有关的动力学参数。底物的初始脱卤表现出Michaelis-Menten动力学。上述底物的表观Km值范围为30至67μM。然而,降解的模式是不寻常的。当分别与3,5-二氯-或4-氨基-3,5-二氯苯甲酸酯孵育时,富集培养物积累的部分脱卤中间体分别达到72%和98%,而当3-时不积累大量苯甲酸酯。氯苯甲酸酯是唯一的碳和能源。仅在母体底物浓度几乎耗尽后,累积的中间体才被快速代谢(仅底物和中间体脱卤的Km和Vmax参数不足以解释中间体的短暂累积),但是,通过插入竞争性抑制项,主要底物为显然,二氯底物竞争性地抑制了单氯底物的脱卤作用,尽管沉积速率比富集培养的速度慢,但沉积物也表现出相似的动力学模式。

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