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Microbial community analysis of switchgrass planted and unplanted soil microcosms displaying PCB dechlorination

机译:显示多氯联苯脱氯的柳枝plant已种植和未种植土壤微生物群落的微生物群落分析

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摘要

Polychlorinated biphenyls (PCBs) pose potential risks to human and environmental health because they are carcinogenic, persistent and bioaccumulative. In this study we investigated bacterial communities in soil microcosms spiked with PCB 52, 77 and 153. Switchgrass (Panicum virgatum) was employed to improve overall PCB removal and redox cycling (i.e. sequential periods of flooding followed by periods of no flooding) was performed in an effort to promote PCB dechlorination. Lesser chlorinated PCB transformation products were detected in all microcosms, indicating the occurrence of PCB dechlorination. Terminal restriction fragment length polymorphism (T-RFLP) and clone library analysis showed that PCB spiking, switchgrass planting and redox cycling affected the microbial community structure. Putative organohalide-respiring Chloroflexi populations, which were not found in unflooded microcosms, were enriched after two weeks of flooding in the redox-cycled microcosms. Sequences classified as Geobacter sp. were detected in all microcosms, and were most abundant in the switchgrass-planted microcosm spiked with PCB congeners. The presence of possible organohalide-respiring bacteria in these soil microcosms suggests they play a role in PCB dechlorination therein.
机译:多氯联苯(PCBs)具有致癌性,持久性和生物蓄积性,对人体和环境健康构成潜在风险。在这项研究中,我们调查了掺有PCB 52、77和153的土壤微观世界中的细菌群落。柳枝((Panicum virgatum)被用于改善整体PCB去除和氧化还原循环(即连续的水淹期然后不进行水淹)。努力促进PCB脱氯。在所有微观世界中都检测到较少的氯化PCB转化产物,表明发生了PCB脱氯。末端限制性片段长度多态性(T-RFLP)和克隆文库分析表明,PCB加标,柳枝switch种植和氧化还原循环影响微生物群落结构。在未淹没的微观世界中未发现的假定的可吸入有机卤化物的氯氟甲烷种群在经过氧化还原循环的微观世界中淹没两周后得以富集。分类为Geobacter sp。的序列。在所有微观世界中都检测到了这种现象,并且在掺有PCB同系物的柳枝-种植的微观世界中含量最高。这些土壤微观世界中可能存在可吸入有机卤化物的细菌,这表明它们在其中的PCB脱氯中发挥了作用。

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