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Amendment of Agricultural Soil with Metal Nanoparticles: Effects on Soil Enzyme Activity and Microbial Community Composition

机译:用金属纳米颗粒修正农业土壤:对土壤酶活性和微生物群落组成的影响

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摘要

Several types of engineered nanoparticles (ENPs) are being considered for direct application to soils to reduce the application and degradation of pesticides, provide micronutrients, control pathogens, and increase crop yields. This study examined the effects of different metal ENPs and their dissolved ions on the microbial community composition and enzyme activity of agricultural soil amended with biosolids. The activity of five extracellular nutrient-cycling enzymes was measured in biosolid-amended soils treated with different concentrations (1, 10, or 100 mg ENP/kg soil) of silver (nAg), zinc oxide (nZnO), copper oxide (nCuO), or titanium dioxide (nTiO_(2)) nanoparticles and their ions over a 30-day period. At 30 days, nZnO and nCuO either had no significant effect on soil enzyme activity or enhanced enzyme activity. In contrast, Ag inhibited selected enzymes when dosed in particulate or dissolved form (at 100 mg/kg). nTiO_(2) either had no significant effect or slightly decreased enzyme activity. Illumina MiSeq sequencing of microbial communities indicated a shift in soil microbial community composition upon exposure to high doses of metal ions or nAg and negligible shift in the presence of nTiO_(2). Some taxa responded differently to nAg and Ag~(+). This work shows how metal ENPs can impact soil enzyme activity and microbial community composition upon introduction into soils amended with biosolids, depending on their type, concentration, and dissolution behavior, hence providing much needed information for the sustainable application of nanotechnology in agriculture.
机译:正在考虑将几种类型的工程纳米颗粒(ENP)直接施用于土壤,以减少农药的施用和降解,提供微量营养素,控制病原体并增加农作物的产量。这项研究研究了不同的金属ENP及其溶解离子对生物固体改良的农业土壤微生物群落组成和酶活性的影响。在用不同浓度(1、10或100 mg ENP / kg土壤)的银(nAg),氧化锌(nZnO),氧化铜(nCuO)处理的生物固体改良土壤中测量了五种细胞外营养循环酶的活性或二氧化钛(nTiO_(2))纳米粒子及其离子在30天的时间内。在第30天,nZnO和nCuO要么对土壤酶活性没有明显影响,要么对酶活性没有增强。相反,当以颗粒或溶解形式(100 mg / kg)给药时,Ag会抑制所选的酶。 nTiO_(2)要么没有明显作用,要么酶活性略有下降。对微生物群落的Illumina MiSeq测序表明,暴露于高剂量的金属离子或nAg后,土壤微生物群落组成发生变化,而在存在nTiO_(2)的情况下发生的变化可忽略不计。一些分类单元对nAg和Ag〜(+)的反应不同。这项工作表明,金属ENPs引入土壤中后,如何根据其类型,浓度和溶解行为,对金属酶活性和微生物群落组成产生影响,这取决于其类型,浓度和溶解行为,因此为纳米技术在农业中的可持续应用提供了急需的信息。

著录项

  • 来源
    《Environmental Science & Technology》 |2018年第4期|1908-1918|共11页
  • 作者单位

    Department of Chemical Engineering, McGill University, Montreal, Quebec H3A 0C5, Canada;

    Department of Chemical Engineering, McGill University, Montreal, Quebec H3A 0C5, Canada;

    Department of Civil Engineering, McGill University, Montreal, Quebec H3A 0C3, Canada;

    Department of Chemical Engineering, McGill University, Montreal, Quebec H3A 0C5, Canada;

    Department of Civil Engineering, McGill University, Montreal, Quebec H3A 0C3, Canada;

    Department of Civil Engineering, McGill University, Montreal, Quebec H3A 0C3, Canada;

    Department of Chemical Engineering, McGill University, Montreal, Quebec H3A 0C5, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:56:36

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