首页> 外文期刊>Canadian Journal of Soil Science >Barley (Hordeum vulgare) seedling growth declines with increasing exposure to silver nanoparticles in biosolid-amended soils
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Barley (Hordeum vulgare) seedling growth declines with increasing exposure to silver nanoparticles in biosolid-amended soils

机译:大麦(Howdeum Vulgare)幼苗生长随着生物含有修正的土壤中的银纳米粒子的越来越多的暴露而下降

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摘要

Silver nanoparticles (AgNPs), a component of many consumer products, are considered an environmental risk due to the broad-spectrum toxicity of Ag+ to non-target organisms. Most AgNPs released from consumer products will end up as biosolids in wastewater treatment plants, which are often applied as a fertilizer to agriculture. Land application of biosolids may add AgNPs to the soil-plant system, with unknown consequences. This study investigated the growth of Hordeum vulgare seedlings, Ag bioconcentration and distribution in shoot and root tissues of barley exposed to biosolid-amended Delacour and Organization for Economic Co-operation and Development (OECD) soils spiked with AgNPs (up to 366 mg Ag kg(-1) dry soil). In both soils, root and shoot growth declined linearly as the concentration of AgNPs increased. Barley had higher Ag bioconcentration values when grown in the OECD soil than in the Delacour soil. Silver bioavailability was greater in the OECD soil due to its physicochemical properties, such as low calcium concentration and acidic pH, relative to the Delacour soil. Barley seedlings exhibited morphological changes, including smaller shoots and shorter, thick roots after 14 d exposure to AgNPs. We conclude that plant structural responses, particularly changes in root biomass, could be an early diagnostic of seedling exposure to AgNPs in biosolid-amended soils.
机译:银纳米粒子(AgNPS)是许多消费产品的组成部分,由于Ag +对非靶生物的广谱毒性而被认为是环境风险。来自消费产品释放的大多数AGNP将最终成为废水处理厂的生物糖,其通常被用作农业的肥料。生物溶胶的土地施用可以增加土壤 - 植物系统的agnps,后果未知。本研究调查了大麦芽和根系组织的病原恒温幼苗的生长,大麦的芽和根部组织(暴露于生物糖)修正的德拉科姆和经济合作和发展组织(经合组织)土壤(高达366毫克AG KG) (-1)干燥土壤)。在土壤中,随着AGNP的浓度增加,根和芽的生长下降了线性下降。在经合组织的土壤中生长而不是在德拉克土壤中,大麦有更高的ag生物浓缩值。由于其物理化学性质,例如低钙浓度和酸性pH值,相对于醇酸土壤,银壤生物利用性更大。大麦幼苗表现出形态变化,包括较小的枝条和较短的根,在14℃暴露于agnps后。我们得出结论,植物结构应答,特别是根生物质的变化,可能是生物糖修正的土壤中幼苗暴露于幼苗暴露于AgNP的早期诊断。

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