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Direct micro-electric stimulation alters phenanthrene-degrading metabolic activities of Pseudomonas sp. strain DGYH-12 in modified bioelectrochemical system

机译:直接微电刺激改变了假鼠SP的菲利的代谢活性。 改性生物电化学系统中的应变DGYH-12

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Bioelectrochemical systems (BESs) have great potential for treating wastewater containing polycyclic aromatic hydrocarbons (PAHs); however, detailed data on cell physiological activities in PAH biodegradation pathways stimulated by BESs are still lacking. In this paper, a novel BES device was assembled to promote the growth of Pseudomonas sp. DGYH-12 in phenanthrene (PHE) degradation. The results showed that in the micro-electric field (0.2 V), cell growth rate and PHE degradation efficiency were 22% and 27.2% higher than biological control without electric stimulation (BC), respectively. The extracellular polymeric substance (EPS) concentration in BES (39.38 mg L-1) was higher than control (33.36 mg L-1); moreover, the membrane permeability and ATPase activities were also enhanced and there existing phthalic acid and salicylic acid metabolic pathways in the strain. The degradation genes nahAc, pcaH, and xylE expression levels were upregulated by micro-electric stimulation. This is the first study to analyze the physiological and metabolic effect of micro-electric stimulation on a PHE-degrading strain in detail and systematically.
机译:生物电化学系统(BESS)具有治疗含有多环芳烃(PAH)的废水的潜力。然而,仍然缺乏PAH生物降解途径的细胞生理活性的详细数据。在本文中,组装了一种新型BES装置,以促进假单胞菌SP的生长。 DGYH-12在菲苯乙烯(PHE)降解中。结果表明,在微电场(0.2V)中,细胞生长速率和PHE降解效率分别比没有电刺激(BC)的生物控制高出22%和27.2%。 BES(39.38mg L-1)中的细胞外聚合物物质(EPS)浓度高于对照(33.36mg L-1);此外,还增强了膜渗透性和ATP酶活性,并且存在菌株中存在的邻苯二甲酸和水杨酸代谢途径。通过微电刺激来上调降解基因NaHC,PCAH和XYLE表达水平。这是第一次研究微电刺激对PHE降解应变的生理和代谢作用的研究详细和系统。

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