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十溴联苯醚(BDE-209)和铜(Cu)对土壤酶活性和微生物群落结构的联合影响。

The combined effect of decabromodiphenyl ether (BDE-209) and copper (Cu) on soil enzyme activities and microbial community structure.

机构信息

State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, Shanghai Key Laboratory of Functional Materials Chemistry, East China University of Science and Technology, Shanghai 200237, PR China; School of Resource and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, PR China.

State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, Shanghai Key Laboratory of Functional Materials Chemistry, East China University of Science and Technology, Shanghai 200237, PR China; School of Resource and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, PR China.

出版信息

Environ Toxicol Pharmacol. 2012 Sep;34(2):358-369. doi: 10.1016/j.etap.2012.05.009. Epub 2012 Jun 5.

Abstract

Waste electrical and electronic equipment (e-waste) is now the fastest growing waste stream in the world. It is reported that polybrominated diphenyl ethers (PBDEs) and heavy metals were main contaminants in e-waste recycling site. Among these contaminants BDE-209 and Cu were widespread, yet their combined effect on soil enzyme activities and microbial community structure are not well understood. In this study, the ecotoxicological effects of both combined and single pollution of BDE-209 and Cu at different concentration levels were studied under laboratory conditions. The activities of soil catalase, urease and saccharase were sensitive to BDE-209 and Cu pollution. Although the enzyme activities varied over time, the concentration effects were obvious. Statistical analyses revealed that, at the same incubation time, as the concentration of BDE-209 or Cu increased, the enzyme activities were decreased. Combined effects of both BDE-209 and Cu were different from that of BDE-209 or Cu alone. Enzyme activities data were essentially based on the multiple regression technique. The results showed that the action and interaction between BDE-209 and Cu were strongly dependent on the exposure time, as the combined effects of BDE-209 and Cu were either synergistic or antagonistic at different incubation times. Soil catalase and saccharase were more comfortable used as indicators of BDE-209 and Cu combined pollution, as the variation trends were similar to the single contaminant treatments, and the responses were quick and significant. Denaturing Gradient Gel Electrophoresis (DGGE) analysis of bacterial 16S rDNA gene showed that BDE-209 and Cu pollution altered the bacterial community structure by promoting changes in species composition and species richness. The existence of BDE-209 and Cu in soils reduced the microbial diversity, and the concentration effects were obvious. Overall, microbial diversity in the combined treatments were lower than the single ones, and when the concentration of BDE-209 and Cu increased, and the Shannon-Weaver index decreased, which indicated the combined effect of BDE-209 and Cu on the microbial community structure was synergistic. Our results further the understanding of the toxic effects of BDE-209 and Cu on soil enzyme activities and microbial community structure, and suggest the need for more in-depth analysis to increase progressively the understanding of the toxicological mechanisms involved.

摘要

电子废物(WEEE)现在是世界上增长最快的废物。据报道,多溴联苯醚(PBDEs)和重金属是电子废物回收场所的主要污染物。在这些污染物中,BDE-209 和 Cu 广泛存在,但它们对土壤酶活性和微生物群落结构的联合影响尚未得到很好的理解。在本研究中,在实验室条件下研究了 BDE-209 和 Cu 在不同浓度水平下的单独和联合污染对生态毒理学的影响。土壤过氧化氢酶、脲酶和蔗糖酶的活性对 BDE-209 和 Cu 污染敏感。尽管酶活性随时间变化,但浓度效应明显。统计分析表明,在相同的培养时间内,随着 BDE-209 或 Cu 浓度的增加,酶活性降低。BDE-209 和 Cu 的联合效应与 BDE-209 或 Cu 单独作用不同。酶活性数据主要基于多元回归技术。结果表明,BDE-209 和 Cu 之间的作用和相互作用强烈依赖于暴露时间,因为 BDE-209 和 Cu 的联合效应在不同的培养时间表现为协同或拮抗。土壤过氧化氢酶和蔗糖酶更适合作为 BDE-209 和 Cu 联合污染的指标,因为其变化趋势与单一污染物处理相似,反应迅速且显著。细菌 16S rDNA 基因的变性梯度凝胶电泳(DGGE)分析表明,BDE-209 和 Cu 污染通过促进物种组成和物种丰富度的变化改变了细菌群落结构。BDE-209 和 Cu 在土壤中的存在降低了微生物多样性,浓度效应明显。总体而言,联合处理的微生物多样性低于单一处理,当 BDE-209 和 Cu 浓度增加时,Shannon-Weaver 指数降低,这表明 BDE-209 和 Cu 对微生物群落结构的联合效应是协同的。我们的研究结果进一步了解了 BDE-209 和 Cu 对土壤酶活性和微生物群落结构的毒性影响,并表明需要更深入的分析来逐步增加对相关毒性机制的理解。

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