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宏转录组学揭示河流生物膜群落对离子态和纳米氧化锌暴露的响应

Metatranscriptomic Insights Into the Response of River Biofilm Communities to Ionic and Nano-Zinc Oxide Exposures.

作者信息

Bergsveinson Jordyn, Roy Julie, Maynard Christine, Sanschagrin Sylvie, Freeman Claire N, Swerhone George D W, Dynes James J, Tremblay Julien, Greer Charles W, Korber Darren R, Lawrence John R

机构信息

Environment and Climate Change Canada, Saskatoon, SK, Canada.

Energy, Mining and Environment Research Centre, National Research Council Canada, Montreal, QC, Canada.

出版信息

Front Microbiol. 2020 Feb 26;11:267. doi: 10.3389/fmicb.2020.00267. eCollection 2020.

Abstract

Manufactured Zn oxide nanoparticle (ZnO-NP) are extensively used world-wide in personal care and industrial products and are important contaminants of aquatic environments. To understand the overall impact of ZnO-NP contamination on aquatic ecosystems, investigation of their toxicity on aquatic biofilms is of particular consequence, given biofilms are known sinks for NP contaminants. In order to assess alterations in the functional activity of river microbial biofilm communities as a result of environmentally-relevant ZnO-NP exposure, biofilms were exposed to ionic zinc salt or ZnOPs that were uncoated (hydrophilic), coated with silane (hydrophobic) or stearic acid (lipophilic), at a total concentration of 188 μg l Zn. ICP-MS analyses of biofilms indicated ZnO-NP concentrated in the biofilms, with hydrophilic, hydrophobic, and lipophilic treatments reaching 0.310, 0.250, and 0.220 μg Zn cm of biofilm, respectively, while scanning transmission X-ray microspectroscopy (STXM) analyses of biofilms confirmed that Zn was extensively- and differentially-sorbed to biofilm material. Microbial community composition, based on taxonomic affiliation of mRNA sequences and enumeration of protozoa and micrometazoa, was not affected by these treatments, and the total transcriptional response of biofilms to all experimental exposures was not indicative of a global toxic-response, as cellular processes involved in general cell maintenance and housekeeping were abundantly transcribed. Transcripts related to major biological processes, including photosynthesis, energy metabolism, nitrogen metabolism, lipid metabolism, membrane transport, antibiotic resistance and xenobiotic degradation, were differentially expressed in Zn-exposures relative to controls. Notably, transcripts involved in nitrogen fixation and photosynthesis were decreased in abundance in response to Zn-exposure, while transcripts related to lipid degradation and motility-chemotaxis were increased, suggesting a potential role of Zn in biofilm dissolution. ZnO-NP and ionic Zn exposures elicited generally overlapping transcriptional responses, however hydrophilic and hydrophobic ZnO-NPs induced a more distinct effect than that of lipophilic ZnO-NPs, which had an effect similar to that of low ionic Zn exposure. While the physical coating of ZnO-NP may not induce specific toxicity observable at a community level, alteration of ecologically important processes of photosynthesis and nitrogen cycling are an important potential consequence of exposure to ionic Zn and Zn oxides.

摘要

人工合成的氧化锌纳米颗粒(ZnO-NP)在全球范围内广泛应用于个人护理和工业产品中,是水环境的重要污染物。鉴于生物膜是纳米颗粒污染物的已知汇集地,为了解ZnO-NP污染对水生生态系统的总体影响,研究其对水生生物膜的毒性尤为重要。为了评估与环境相关的ZnO-NP暴露对河流微生物生物膜群落功能活性的影响,将生物膜暴露于离子锌盐或未包覆(亲水性)、包覆硅烷(疏水性)或硬脂酸(亲脂性)的ZnO颗粒中,总锌浓度为188 μg l。生物膜的电感耦合等离子体质谱(ICP-MS)分析表明,ZnO-NP在生物膜中富集,亲水性、疏水性和亲脂性处理的生物膜中锌含量分别达到0.310、0.250和0.220 μg Zn cm,而生物膜的扫描透射X射线显微光谱(STXM)分析证实,锌被广泛且不同程度地吸附到生物膜材料上。基于mRNA序列的分类归属以及原生动物和微型后生动物的计数,微生物群落组成不受这些处理的影响,并且生物膜对所有实验暴露的总转录反应并不表明存在全局毒性反应,因为参与一般细胞维持和日常活动的细胞过程大量转录。与主要生物过程相关的转录本,包括光合作用、能量代谢、氮代谢、脂质代谢、膜转运、抗生素抗性和异源生物降解,在锌暴露组相对于对照组中差异表达。值得注意的是,响应锌暴露,参与固氮和光合作用的转录本丰度降低,而与脂质降解和运动趋化性相关的转录本增加,表明锌在生物膜溶解中可能发挥作用。ZnO-NP和离子锌暴露引发的转录反应总体上重叠,然而亲水性和疏水性ZnO-NP比亲脂性ZnO-NP诱导的效应更明显,亲脂性ZnO-NP的效应与低离子锌暴露相似。虽然ZnO-NP的物理包覆可能不会在群落水平上诱导可观察到的特定毒性,但光合作用和氮循环等生态重要过程的改变是暴露于离子锌和氧化锌的一个重要潜在后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/791a/7055177/ebda9e252d1a/fmicb-11-00267-g001.jpg

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