Simonin Marie, Cantarel Amélie A M, Crouzet Armelle, Gervaix Jonathan, Martins Jean M F, Richaume Agnès
Université de Lyon, Lyon, France.
Université Claude Bernard Lyon 1, Villeurbanne, France.
Front Microbiol. 2018 Dec 13;9:3102. doi: 10.3389/fmicb.2018.03102. eCollection 2018.
Metal-oxide nanoparticles (NPs) such as copper oxide (CuO) NPs offer promising perspectives for the development of novel agro-chemical formulations of pesticides and fertilizers. However, their potential impact on agro-ecosystem functioning still remains to be investigated. Here, we assessed the impact of CuO-NPs (0.1, 1, and 100 mg/kg dry soil) on soil microbial activities involved in the carbon and nitrogen cycles in five contrasting agricultural soils in a microcosm experiment over 90 days. Additionally, in a pot experiment, we evaluated the influence of plant presence on the toxicity of CuO-NPs on soil microbial activities. CuO-NPs caused significant reductions of the three microbial activities measured (denitrification, nitrification, and soil respiration) at 100 mg/kg dry soil, but the low concentrations (0.1 and 1 mg/kg) had limited effects. We observed that denitrification was the most sensitive microbial activity to CuO-NPs in most soil types, while soil respiration and nitrification were mainly impacted in coarse soils with low organic matter content. Additionally, large decreases in heterotrophic microbial activities were observed in soils planted with wheat, even at 1 mg/kg for soil substrate-induced respiration, indicating that plant presence did not mitigate or compensate CuO-NP toxicity for microorganisms. These two experiments show that CuO-NPs can have detrimental effects on microbial activities in soils with contrasting physicochemical properties and previously exposed to various agricultural practices. Moreover, we observed that the negative effects of CuO-NPs increased over time, indicating that short-term studies (hours, days) may underestimate the risks posed by these contaminants in soils.
金属氧化物纳米颗粒(NPs),如氧化铜(CuO)纳米颗粒,为开发新型农药和肥料的农业化学制剂提供了广阔前景。然而,它们对农业生态系统功能的潜在影响仍有待研究。在此,我们在一个微观实验中,评估了CuO纳米颗粒(0.1、1和100毫克/千克干土)对五种不同农业土壤中参与碳和氮循环的土壤微生物活动的影响,实验为期90天。此外,在一个盆栽实验中,我们评估了植物的存在对CuO纳米颗粒对土壤微生物活动毒性的影响。在100毫克/千克干土时,CuO纳米颗粒导致所测的三种微生物活动(反硝化作用、硝化作用和土壤呼吸)显著降低,但低浓度(0.1和1毫克/千克)的影响有限。我们观察到,在大多数土壤类型中,反硝化作用是对CuO纳米颗粒最敏感的微生物活动,而土壤呼吸和硝化作用主要在低有机质含量的粗质土壤中受到影响。此外,即使在土壤底物诱导呼吸为1毫克/千克的情况下,种植小麦的土壤中异养微生物活动也大幅下降,这表明植物的存在并未减轻或补偿CuO纳米颗粒对微生物的毒性。这两个实验表明,CuO纳米颗粒可能对具有不同理化性质且先前经历过各种农业实践的土壤中的微生物活动产生有害影响。此外,我们观察到CuO纳米颗粒的负面影响随时间增加,这表明短期研究(数小时、数天)可能低估了这些污染物在土壤中造成的风险。