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流体动力学改变自养生物膜群落对除草剂的耐受性。

Hydrodynamics Alter the Tolerance of Autotrophic Biofilm Communities Toward Herbicides.

作者信息

Polst Bastian H, Anlanger Christine, Risse-Buhl Ute, Larras Floriane, Hein Thomas, Weitere Markus, Schmitt-Jansen Mechthild

机构信息

Department of Bioanalytical Ecotoxicology, Helmholtz-Centre for Environmental Research - UFZ, Leipzig, Germany.

Institute of Hydrobiology and Aquatic Ecosystem Management, University of Natural Resources and Life Sciences, Vienna, Austria.

出版信息

Front Microbiol. 2018 Dec 4;9:2884. doi: 10.3389/fmicb.2018.02884. eCollection 2018.

Abstract

Multiple stressors pose potential risk to aquatic ecosystems and are the main reasons for failing ecological quality standards. However, mechanisms how multiple stressors act on aquatic community structure and functioning are poorly understood. This is especially true for two important stressors types, hydrodynamic alterations and toxicants. Here we perform a mesocosm experiment in hydraulic flumes connected as a bypass to a natural stream to test the interactive effects of both factors on natural (inoculated from streams water) biofilms. Biofilms, i.e., the community of autotrophic and heterotrophic microorganisms and their extracellular polymeric substances (EPS) in association with substratum, are key players in stream functioning. We hypothesized (i) that the tolerance of biofilms toward toxicants (the herbicide Prometryn) decreases with increasing hydraulic stress. As EPS is known as an absorber of chemicals, we hypothesize (ii) that the EPS to cell ratio correlates with both hydraulic stress and herbicide tolerance. Tolerance values were derived from concentration-response assays. Both, the herbicide tolerance and the biovolume of the EPS significantly correlated with the turbulent kinetic energy (TKE), while the diversity of diatoms (the dominant group within the stream biofilms) increased with flow velocity. This indicates that the positive effect of TKE on community tolerance was mediated by turbulence-induced changes in the EPS biovolume. This conclusion was supported by a second experiment, showing decreasing effects of the herbicide to a diatom biofilm () with increasing content of artificial EPS. We conclude that increasing hydrodynamic forces in streams result in an increasing tolerance of microbial communities toward chemical pollution by changes in EPS-mediated bioavailability of toxicants.

摘要

多种压力源对水生生态系统构成潜在风险,是生态质量标准未能达标的主要原因。然而,多种压力源如何作用于水生群落结构和功能的机制却鲜为人知。对于两种重要的压力源类型——水动力改变和有毒物质而言,情况尤其如此。在此,我们在与天然溪流相连作为旁路的水力水槽中进行了一项中宇宙实验,以测试这两种因素对天然(从溪流水接种)生物膜的交互作用。生物膜,即自养和异养微生物群落及其与基质相关的细胞外聚合物(EPS),是溪流功能的关键参与者。我们假设:(i)生物膜对有毒物质(除草剂扑草净)的耐受性会随着水力压力的增加而降低。由于已知EPS是化学物质的吸收剂,我们假设(ii)EPS与细胞的比率与水力压力和除草剂耐受性均相关。耐受性值来自浓度 - 反应测定。除草剂耐受性和EPS的生物体积均与湍动能(TKE)显著相关,而硅藻(溪流生物膜中的优势类群)的多样性随流速增加。这表明TKE对群落耐受性的积极影响是由湍流引起的EPS生物体积变化介导的。第二个实验支持了这一结论,该实验表明随着人工EPS含量的增加,除草剂对硅藻生物膜的影响减弱。我们得出结论,溪流中不断增加的水动力通过EPS介导的有毒物质生物可利用性变化,导致微生物群落对化学污染的耐受性增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be9/6288176/334dd50785e3/fmicb-09-02884-g001.jpg

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