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低剂量银纳米颗粒处理对淡水细菌生物膜结构和群落组成的影响。

Effects of low dose silver nanoparticle treatment on the structure and community composition of bacterial freshwater biofilms.

机构信息

Institute for Integrated Natural Sciences, University of Koblenz-Landau, Koblenz, Germany.

Institute for Environmental Sciences, Group of Environmental and Soil Chemistry, University of Koblenz-Landau, Landau, Germany.

出版信息

PLoS One. 2018 Jun 14;13(6):e0199132. doi: 10.1371/journal.pone.0199132. eCollection 2018.

Abstract

The application of engineered silver nanoparticles (AgNPs) in a considerable amount of registered commercial products inevitably will result in the continuous release of AgNPs into the natural aquatic environment. Therefore, native biofilms, as the prominent life form of microorganisms in almost all known ecosystems, will be subjected to AgNP exposure. Despite the exponentially growing research activities worldwide, it is still difficult to assess nanoparticle-mediated toxicity in natural environments. In order to obtain an ecotoxicologically relevant exposure scenario, we performed experiments with artificial stream mesocosm systems approaching low dose AgNP concentrations close to predicted environmental concentrations. Pregrown freshwater biofilms were exposed for 14 days to citrate-stabilized AgNPs at a concentration of 600 μg l-1 in two commonly used sizes (30 and 70 nm). Sublethal effects of AgNP treatment were assessed with regard to biofilm structure by gravimetric measurements (biofilm thickness and density) and by two biomass parameters, chlorophyll a and protein content. The composition of bacterial biofilm communities was characterized by t-RFLP fingerprinting combined with phylogenetic studies based on the 16S gene. After 14 days of treatment, the structural parameters of the biofilm such as thickness, density, and chlorophyll a and protein content were not statistically significantly changed by AgNP exposure. Furthermore, t-RFLP fingerprint analysis showed that the bacterial diversity was not diminished by AgNPs, as calculated by Shannon Wiener and evenness indices. Nevertheless, t-RFLP analysis also indicated that AgNPs led to an altered biofilm community composition as was shown by cluster analysis and multidimensional scaling (MDS) based on the Bray Curtis index. Sequence analysis of cloned 16S rRNA genes further revealed that changes in community composition were related with the displacement of putatively AgNP-sensitive bacterial taxa Actinobacteria, Chloroflexi, and Cyanobacteria by taxa known for their enhanced adaptability towards metal stress, such as Acidobacteria, Sphingomonadales, and Comamonadaceae. This measurable community shift, even after low dose AgNP treatment, causes serious concerns with respect to the broad application of AgNPs and their potentially adverse impact on the ecological function of lotic biofilms, such as biodegradation or biostabilization.

摘要

工程化银纳米粒子(AgNPs)在大量已注册的商业产品中的应用不可避免地会导致 AgNPs 持续释放到自然水生环境中。因此,作为几乎所有已知生态系统中微生物的主要生命形式的天然生物膜将受到 AgNP 的暴露。尽管全球范围内的研究活动呈指数级增长,但仍难以评估纳米颗粒在自然环境中的介导毒性。为了获得具有生态毒理学相关性的暴露情况,我们使用接近预测环境浓度的低剂量 AgNP 浓度的人工溪流中观系统进行了实验。预生长的淡水生物膜在两种常用尺寸(30 和 70nm)的柠檬酸稳定的 AgNPs 浓度为 600μg l-1 的情况下暴露 14 天。通过重量测量(生物膜厚度和密度)和两个生物量参数,叶绿素 a 和蛋白质含量,评估 AgNP 处理的亚致死效应。通过 t-RFLP 指纹图谱结合基于 16S 基因的系统发育研究,对细菌生物膜群落的组成进行了表征。处理 14 天后,AgNP 暴露并未使生物膜的结构参数(如厚度、密度以及叶绿素 a 和蛋白质含量)发生统计学上的显著变化。此外,t-RFLP 指纹分析表明,AgNPs 并未如香农威纳和均匀度指数所计算的那样减少细菌多样性。然而,t-RFLP 分析还表明,AgNPs 导致生物膜群落组成发生改变,这是通过聚类分析和基于 Bray Curtis 指数的多维尺度(MDS)显示的。克隆的 16S rRNA 基因的序列分析进一步表明,群落组成的变化与推定的 AgNP 敏感细菌类群放线菌、绿弯菌门和蓝藻被已知对金属胁迫具有更强适应性的类群(如酸杆菌门、鞘氨醇单胞菌目和根瘤菌科)取代有关。即使在低剂量 AgNP 处理后,这种可测量的群落转移引起了对 AgNPs 的广泛应用以及它们对流水生物膜生态功能(如生物降解或生物稳定化)的潜在不利影响的严重关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/108a/6002094/877bf86c128f/pone.0199132.g002.jpg

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