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Soil organic matter influences cerium translocation and physiological processes in kidney bean plants exposed to cerium oxide nanoparticles

机译:土壤有机质影响暴露于氧化铈纳米颗粒的芸豆植物中铈的转运和生理过程

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摘要

Soil organic matter plays a major role in determining the fate of the engineered nanomaterials (ENMs) in the soil matrix and effects on the residing plants. In this study, kidney bean plants were grown in soils varying in organic matter content and amended with 0-500 mg/kg cerium oxide nanoparticles (nano-CeO_2) under greenhouse condition. After 52 days of exposure, cerium accumulation in tissues, plant growth and physiological parameters including photosynthetic pigments (chlorophylls and carotenoids), net photosynthesis rate, transpiration rate, and stomatal conductance were recorded Additionally, catalase and ascorbate peroxidase activities were measured to evaluate oxidative stress in the tissues. The translocation factor of cerium in the nano-CeO_2 exposed plants grown in organic matter enriched soil (OMES) was twice as the plants grown in low organic matter soil (LOMS). Although the leaf cover area increased by 65-111% with increasing nano-CeO_2 concentration in LOMS, the effect on the physiological processes were inconsequential. In OMES leaves, exposure to 62.5-250 mg/kg nano-CeO_2 led to an enhancement in the transpiration rate and stomatal conductance, but to a simultaneous decrease in carotenoid contents by 25-28%. Chlorophyll a in the OMES leaves also decreased by 27 and 18% on exposure to 125 and 250 mg/kg nano-CeO_2. In addition, catalase activity increased in LOMS stems, and ascorbate peroxidase increased in OMES leaves of nano-CeO_2 exposed plants, with respect to control. Thus, this study provides clear evidence that the properties of the complex soil matrix play decisive roles in determining the fate, bio-availability, and biological transport of ENMs in the environment.
机译:土壤有机物在确定工程纳米材料在土壤基质中的命运以及对居住植物的影响方面起着重要作用。在这项研究中,芸豆植物生长在有机质含量不同的土壤中,并在温室条件下用0-500 mg / kg氧化铈纳米颗粒(nano-CeO_2)进行了改良。暴露52天后,记录了铈在组织中的积累,植物的生长和生理参数,包括光合色素(叶绿素和类胡萝卜素),净光合速率,蒸腾速率和气孔导度。此外,还测量了过氧化氢酶和抗坏血酸过氧化物酶活性以评估氧化应激。在组织中。在富含有机物土壤(OMES)中生长的纳米CeO_2暴露植物中铈的转运因子是在低有机质土壤(LOMS)中生长的植物的两倍。尽管随着LOMS中纳米CeO_2浓度的增加,叶子的覆盖面积增加了65-111%,但对生理过程的影响并不重要。在OMES叶片中,暴露于62.5-250 mg / kg纳米CeO_2可以提高蒸腾速率和气孔导度,但同时使类胡萝卜素含量降低25-28%。当暴露于125和250 mg / kg纳米CeO_2中时,OMES叶片中的叶绿素a也降低了27%和18%。此外,相对于对照,LOMS茎中过氧化氢酶活性增加,而纳米CeO_2暴露植物的OMES叶片中抗坏血酸过氧化物酶增加。因此,这项研究提供了明确的证据,表明复杂土壤基质的性质在确定环境中ENM的命运,生物利用度和生物运输方面起着决定性作用。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|201-211|共11页
  • 作者单位

    Department of Chemistry, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA,University of California Center for Environmental Implications of Nanotechnology (UC CEIN), El Paso, TX, USA;

    Department of Chemistry, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA,Environmental Science and Engineering Program, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA,University of California Center for Environmental Implications of Nanotechnology (UC CEIN), El Paso, TX, USA;

    Department of Chemistry, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA;

    Texas AgriLife Research Center at El Paso, Texas A&M University System, 1380 A & M Circle, El Paso, TX 79927, USA;

    Department of Chemistry, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA;

    Texas AgriLife Research Center at El Paso, Texas A&M University System, 1380 A & M Circle, El Paso, TX 79927, USA;

    Autonomous University of Ciudad Juarez, Departamento de Quimica y Biologia, Instituto de Ciencias Biomedicas, Anillo envolvente PRONAF y Estocolmo, Ciudad Juarez, Chihuahua 32310, Mexico;

    Department of Chemistry, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA,Environmental Science and Engineering Program, The University of Texas at El Paso, 500 West University Ave., El Paso, TX 79968, USA,University of California Center for Environmental Implications of Nanotechnology (UC CEIN), El Paso, TX, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil organic matter; Cerium oxide nanoparticles; Kidney bean; Gas exchange; Photosynthetic pigments; Phytotoxicity;

    机译:土壤有机质;氧化铈纳米颗粒;菜豆;气体交换;光合色素;植物毒性;

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