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首页> 外文期刊>Environmental Science and Pollution Research >PCBs attenuation and abundance of Dehalococcoides spp., bphC, CheA, and flic genes in typical polychlorinated biphenyl-polluted soil under floody and dry soil conditions
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PCBs attenuation and abundance of Dehalococcoides spp., bphC, CheA, and flic genes in typical polychlorinated biphenyl-polluted soil under floody and dry soil conditions

机译:在多水和干燥土壤条件下,典型的多氯联苯污染土壤中多氯联苯对Dehalococcoides spp。,bphC,CheA和flic基因的衰减和丰度

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摘要

This study investigates PCBs attenuation and the abundance of active polychlorinated-degrading Dehalococcoides spp. biphenyl dioxygenase (bphC), chemotaxis (CheA), and flagellum (flic) genes in floody and dry soil conditions polluted with polychlorinated biphenyls. The results revealed that total PCBs, high chlorinated PCBs (> 4 cl), and less chlorinated PCBs (< 4 cl) decreased with the passage of time in floody and dry soil conditions. The reduction of total PCBs (13.87 %) and less chlorinated PCBs (15.39 %) was more in dry soil than floody soil, while high chlorinated PCBs showed more reduction in floody soil (8.06 %) than dry soil. Dehaloccoides spp., bphC, CheA, and flic genes indicated temporal dynamics in abundance in floody and dry soil conditions. The highest abundance was 1.6 x 10(9), 3.7 x 10(4), and 3.6 x 10(2) copies in floody and 1.6 x 10(4) copies in dry soil for Dehalococcoides spp., bphC, CheA, and flic, respectively. Multivariate statistics (RDA) revealed that Dehaloccoides spp. were positively influenced by the higher chlorinated PCBs and soil physical properties, CheA gene with floody soil, flic gene with total PCBs and less chlorinated PCBs, and bphC gene was affected with moisture contents and less chlorinated PCBs. This study provides new insight in the attenuation of PCBs and the abundance of active Dehalococcoides spp. and genes in PCBs polluted soil under floody and dry soil conditions.
机译:这项研究调查了多氯联苯的衰减和活性多氯化降解Dehalococcoides spp的丰度。多氯联苯污染的洪水和干旱土壤条件下的联苯双加氧酶(bphC),趋化性(CheA)和鞭毛(flic)基因。结果表明,随着时间的流逝,在潮湿和干燥的土壤条件下,多氯联苯,高氯化多氯联苯(> 4 cl)和较少的氯化多氯联苯(<4 cl)减少。在干燥土壤中,总PCB的减少量(13.87%)和较少的氯化PCB的减少量(15.39%)比淹水土壤多,而高氯化PCB的减少量在淹水土壤中的减少量(8.06%)比干燥土壤多。 Dehaloccoides spp。,bphC,CheA和flic基因表明在洪水和干旱土壤条件下,丰富的时间动态。对于Dehalococcoides spp。,bphC,CheA和flic,最高的丰度在水淹中为1.6 x 10(9),3.7 x 10(4)和3.6 x 10(2)副本,在干燥土壤中为1.6 x 10(4)副本。 , 分别。多元统计(RDA)显示Dehaloccoides spp。较高的氯化多氯联苯和土壤物理特性,水淹的CheA基因,总的多氯联苯和较少的氯化多氯联苯对flic基因有积极的影响,而水分含量和较少的氯化多氯联苯对bphC基因有积极的影响。这项研究为PCB的衰减和活性Dehalococcoides spp的丰度提供了新的见识。多水和干旱土壤条件下多氯联苯污染土壤中的基因和基因。

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