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细菌群落对不同土壤中炼铅厂污染的响应。

Response of bacterial communities to Pb smelter pollution in contrasting soils.

机构信息

GEGENAA EA3795, SFR Condorcet FR CNRS3417, URCA, Université de Champagne, 2 Esplanade Roland Garros, 51100 Reims, France.

GEGENAA EA3795, SFR Condorcet FR CNRS3417, URCA, Université de Champagne, 2 Esplanade Roland Garros, 51100 Reims, France.

出版信息

Sci Total Environ. 2017 Dec 15;605-606:436-444. doi: 10.1016/j.scitotenv.2017.06.159. Epub 2017 Jun 30.

Abstract

Anthropogenic inputs of trace elements (TE) into soils constitute a major public and environmental health problem. Bioavailability of TE is strongly related to the soil physicochemical parameters and thus to the ecosystem type. In order to test whether soil parameters influence the response of the bacterial community to TE pollution, we collected soil samples across contrasting ecosystems (hardwood, coniferous and hydromorphic soils), which have been contaminated in TE and especially lead (Pb) over several decades due to nearby industrial smelting activities. Bacterial community composition was analysed using high throughput amplicon sequencing and compared to the soil physicochemical parameters. Multivariate analyses of the pedological and biological data revealed that the bacterial community composition was affected by ecosystem type in the first place. An influence of the contamination level was also evidenced within each ecosystem. Despite the important variability in bacterial community structure, we found that specific bacterial groups such as γ-Proteobacteria, Verrucomicrobia and Chlamydiae showed a consistent response to Pb content across contrasting ecosystems. Verrucomicrobia were less abundant at high contamination level whereas Chlamydiae and γ-Proteobacteria were more abundant. We conclude that such groups and ratio's thereof can be considered as relevant bioindicators of Pb contamination.

摘要

人为向土壤中输入微量元素(TE)是一个主要的公共和环境健康问题。TE 的生物有效性与土壤理化参数密切相关,因此也与生态系统类型有关。为了测试土壤参数是否会影响细菌群落对 TE 污染的响应,我们采集了来自不同生态系统(硬木林、针叶林和水成型土壤)的土壤样本,这些土壤样本几十年来因附近的工业冶炼活动而受到 TE 和特别是铅(Pb)的污染。我们使用高通量扩增子测序分析了细菌群落组成,并将其与土壤理化参数进行了比较。土壤学和生物学数据的多元分析表明,首先,细菌群落组成受生态系统类型的影响。在每个生态系统中,也证明了污染水平的影响。尽管细菌群落结构存在重要的可变性,但我们发现特定的细菌群,如γ-变形菌门、疣微菌门和衣原体,在不同的生态系统中对 Pb 含量表现出一致的响应。在高污染水平下,疣微菌门的丰度较低,而衣原体和γ-变形菌门的丰度较高。我们的结论是,这些菌群及其比例可以被视为 Pb 污染的相关生物标志物。

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