首页> 外文期刊>Polish Journal of Environmental Studies >PCB Biodegradation and bphA1 Gene Expression Induced by Salicylic Acid and Biphenyl with Pseudomonas fluorescence P2W and Ralstonia eutropha H850
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PCB Biodegradation and bphA1 Gene Expression Induced by Salicylic Acid and Biphenyl with Pseudomonas fluorescence P2W and Ralstonia eutropha H850

机译:水杨酸和联苯与假单胞菌荧光P2W和富营养小球藻H850诱导的PCB降解及bphA1基因表达

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摘要

Organic carbon substrate amendments are promising bioremediation strategies to induce polychlorinat-ed biphenyls (PCB) aerobic degradation. However, their selective induction on PCB degraders has not been well studied. In this study, the substrate interaction effects of salicylic acid and biphenyl on PCB biodegradation were investigated with pure cultured isolates, including a newly isolated Pseudomonas fluorescence (P2W) and the veteran PCB degrader Ralstonia eutropha (H850). A significant biodegradation of lower-chlorinated PCB in H850 was induced by both salicylic acid and biphenyl amendments, while the biodegradation in P2W was induced only by salicylic acid. The binary substrates of salicylic acid and biphenyl resulted in a significantly inhibited effect on PCB removal in both strains. The expression of the functional gene bphA1 in the upper biphenyl degradation pathway was further investigated by quantitative reverse transcription PCR. Compared to H850, P2W had higher expression in the bphA1 gene induced mainly by salicylic acid rather than biphenyl. Particularly, the binary substrate induction led to an excessive expression of bphA1 gene in both strains, which was in good agreement with their biomass growth. These results suggested that the special induction of PCB biodegradation depends on the selection of organic carbon substrates and the acclimation of degrader strains.
机译:有机碳底物的修订是有前途的生物修复策略,以诱导多氯联苯(PCB)有氧降解。但是,尚未对它们对PCB降解剂的选择性诱导进行深入研究。在这项研究中,研究了水杨酸和联苯对PCB生物降解的底物相互作用的影响,采用纯培养分离株,包括新分离的Pseudomonas荧光(P2W)和老牌PCB降解菌Ralstonia eutropha(H850)。水杨酸和联苯修饰物均可诱导H850中低氯多氯联苯的明显生物降解,而仅水杨酸可诱导P2W中的生物降解。水杨酸和联苯的二元底物在两种菌株中均显着抑制了PCB去除。通过定量逆转录PCR进一步研究了功能基因bphA1在上联苯降解途径中的表达。与H850相比,P2W在主要由水杨酸而非联苯诱导的bphA1基因中表达更高。特别地,二元底物的诱导导致两个菌株中bphA1基因的过量表达,这与其生物量的增长非常吻合。这些结果表明,PCB生物降解的特殊诱导取决于有机碳底物的选择和降解菌株的适应性。

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