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Differential Impacts of Willow and Mineral Fertilizer on Bacterial Communities and Biodegradation in Diesel Fuel Oil-Contaminated Soil

机译:柳树和矿物肥料对柴油燃料油污染土壤中细菌群落和生物降解的不同影响

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摘要

Despite decades of research there is limited understanding of how vegetation impacts the ability of microbial communities to process organic contaminants in soil. Using a combination of traditional and molecular assays, we examined how phytoremediation with willow and/or fertilization affected the microbial community present and active in the transformation of diesel contaminants. In a pot study, willow had a significant role in structuring the total bacterial community and resulted in significant decreases in diesel range organics (DRO). However, stable isotope probing (SIP) indicated that fertilizer drove the differences seen in community structure and function. Finally, analysis of the total variance in both pot and SIP experiments indicated an interactive effect between willow and fertilizer on the bacterial communities. This study clearly demonstrates that a willow native to Alaska accelerates DRO degradation, and together with fertilizer, increases aromatic degradation by shifting microbial community structure and the identity of active naphthalene degraders.
机译:尽管进行了数十年的研究,但对于植被如何影响微生物群落处理土壤有机污染物的能力的理解仍然有限。使用传统方法和分子方法的组合,我们研究了柳树和/或施肥对植物的修复如何影响目前存在的微生物群落并活跃于柴油污染物的转化中。在盆栽研究中,柳树在构造整个细菌群落中起着重要作用,并导致柴油范围有机物(DRO)的显着减少。然而,稳定的同位素探测(SIP)表明肥料推动了群落结构和功能上的差异。最后,在盆栽和SIP试验中对总方差的分析表明,柳树和肥料之间对细菌群落具有交互作用。这项研究清楚地表明,阿拉斯加本地的柳树会加速DRO降解,并与化肥一起通过改变微生物群落结构和活性萘降解物的身份来增加芳香剂的降解。

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