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细菌群落对二氧化钛纳米颗粒的组成和功能响应随土壤异质性和暴露时间而变化。

Compositional and functional responses of bacterial community to titanium dioxide nanoparticles varied with soil heterogeneity and exposure duration.

机构信息

Institute of Environmental Sciences (CML), Leiden University, P.O. Box 9518, 2300 RA Leiden, the Netherlands.

Sanitary Engineering, Department of Water Management, Faculty of Civil Engineering and Geosciences, Delft University of Technology, P.O. Box 5048, 2600GA Delft, the Netherlands.

出版信息

Sci Total Environ. 2021 Jun 15;773:144895. doi: 10.1016/j.scitotenv.2020.144895. Epub 2021 Feb 4.

Abstract

Titanium dioxide nanoparticles (TiO NPs) are widely used as nano-agrochemicals. In this study we investigated the influence of soil heterogeneity on bacterial communities exposed to TiO NPs over time. Clay and sandy soils with low- and high-organic matter contents were exposed to environmentally relevant concentration of TiO NPs (1 mg/kg) and soil bacterial communities were sampled after short-term (15 days) and long-term exposure (60 days). After short-term TiO NPs exposure, significant effects regarding the enzyme activity, bacterial community structure and composition, and community functioning were observed in the clay soils with high organic matter (clay-HOM) but not in other soil groups. Response alterations were observed to taxa belonging to Acidobacteria and Verrucomicrobia, and functional pathways related to carbohydrates degradation. These results indicated that soil heterogeneity play more important roles in shaping the bacterial community in soil with low clay fraction and less organic matter, while TiO NPs selection was the main driver in inducing the compositional and functional impacts on the soil bacterial community in the presence of clay soil with high organic matter content. As exposure time increased, the bacterial community recovered after a long-term exposure of 60 days, suggesting that the bacterial evolution and adaptation could overcome the TiO NPs selection after long-term exposure. Our results highlighted the importance of soil heterogeneity including clay fraction and organic matter and exposure duration in assessing the impact of nanoparticle on soil bacterial activity, community and function. By comprehensively evaluating the risks of nanoparticles on soil ecosystem and explicitly and explicitly include spatial and temporal variations, the benefit of nano-agrochemical products has the potential to be promoted in future applications.

摘要

二氧化钛纳米粒子(TiO NPs)被广泛用作纳米农用化学品。本研究旨在探讨土壤非均质性对暴露于 TiO NPs 的细菌群落随时间变化的影响。低有机质和高有机质含量的黏土和沙土分别暴露于环境相关浓度的 TiO NPs(1 mg/kg),并在短期(15 天)和长期(60 天)暴露后采集土壤细菌群落样本。短期 TiO NPs 暴露后,高有机质黏土(clay-HOM)中的土壤酶活性、细菌群落结构和组成以及群落功能发生了显著变化,但其他土壤组则没有。属于 Acidobacteria 和 Verrucomicrobia 的分类群以及与碳水化合物降解相关的功能途径发生了响应变化。这些结果表明,土壤非均质性在低黏土含量和低有机质土壤中塑造细菌群落的过程中发挥着更为重要的作用,而 TiO NPs 的选择则是在高有机质黏土存在的情况下诱导土壤细菌群落组成和功能变化的主要驱动力。随着暴露时间的增加,细菌群落经过 60 天的长期暴露后得到了恢复,这表明在长期暴露后,细菌的进化和适应可以克服 TiO NPs 的选择作用。本研究结果强调了土壤非均质性(包括黏土含量和有机质)和暴露时间在评估纳米颗粒对土壤细菌活性、群落和功能影响方面的重要性。通过综合评估纳米颗粒对土壤生态系统的风险,并明确包括空间和时间变化,未来应用中纳米农用化学品产品的潜在益处有望得到推广。

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