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Insight into the Modulation of Dissolved Organic Matter on Microbial Remediation of PAH-Contaminated Soils

机译:溶解有机物对PAH污染土壤微生物修复的调节作用的见解

摘要

Microorganisms play a key role in degradation of polycyclic aromatic hydrocarbons (PAHs) in environments. Dissolved organic matter (DOM) can enhance microbial degradation of PAHs in soils. However, it is not clear how will the soil microbial community respond to addition of DOM during bioremediation of PAH-contaminated soils. In this study, DOMs derived from various agricultural wastes were applied to remediate the aging PAH-contaminated soils in a 90-day microcosm experiment. Results showed that the addition of DOMs offered a more efficient and persistent elimination of soil PAHs compared to the control which had no DOM addition. PAH removal effects were different among treatments with various DOMs; the addition of DOMs with high proportion of hydrophobic fraction could remove PAHs more efficiently from the soil. Low-molecular-weight (LMW) PAHs were more easily eliminated than that with high-molecular-weight (HMW). Addition of DOMs significantly increased abundance of 16S ribosomal RNA (rRNA), pdo1, nah, and C12O genes and obviously changed community compositions of nah and C12O genes in different ways in the PAH-contaminated soil. Phylogenetic analyses of clone libraries exhibited that all of nah sequences and most of C12O sequences were affiliated into Gammaproteobacteria and Betaproteobacteria. These results suggested that external stimuli produced by DOMs could enhance the microbial degradation of PAHs in soils through not only solubilizing PAHs but also altering abundance and composition of indigenous microbial degraders. Our results reinforce the understanding of role of DOMs in mediating degradation of PAHs by microorganims in soils.
机译:微生物在环境中降解多环芳烃(PAH)中起着关键作用。溶解有机物(DOM)可以促进土壤中PAHs的微生物降解。然而,目前尚不清楚在PAH污染土壤的生物修复过程中,土壤微生物群落如何响应DOM的添加。在这项研究中,在90天的微观实验中,将源自各种农业废物的DOM用于修复老化的PAH污染的土壤。结果表明,与不添加DOM的对照相比,添加DOM可以更有效和持久地消除土壤中的PAHs。在使用各种DOM的治疗之间,PAH去除效果有所不同。添加具有高比例疏水成分的DOM可以更有效地从土壤中去除PAHs。与高分子量(HMW)相比,低分子量(LMW)PAH更容易消除。 DOM的添加显着增加了PAS污染土壤中16S核糖体RNA(rRNA),pdo1,nah和C12O基因的丰度,并且明显改变了nah和C120O基因的群落组成。克隆文库的系统进化分析表明,所有的nah序列和大多数C120序列都属于γ-变形细菌和β-变形细菌。这些结果表明,DOMs产生的外部刺激不仅可以通过溶解PAHs,而且可以通过改变土著微生物降解菌的丰度和组成来增强土壤中PAHs的微生物降解。我们的结果加强了对DOM在土壤微生物中介导PAHs降解作用中作用的认识。

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