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Influence of Iron, Zinc, and Copper Nanoparticles on Some Growth Indices of Pepper Plants

机译:铁,锌和铜纳米粒子对辣椒植物一些生长指标的影响

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摘要

This paper presents the results of studies on the effect of iron, zinc, and copper nanoparticles (NPs) introduced into a Murashige and Skoog (MS) nutrient medium instead of metal salts on the chlorophyll content in leaves and the length and activity of the roots of the Capsicum annuum pepper plants grown under aseptic conditions. It is shown that the length of the roots of plants grown on a nutrient medium with metal nanoparticles, depending on the dose of NPs and element, is 7?118% higher than in plants grown on a standard nutrient medium. The activity of the roots of the test plants is 18?98% higher than the activity of plant roots from the control group. The chlorophyll content in the leaves of pepper grown on a medium with iron and copper nanoparticles is 3?59% higher than the amount of chlorophyll in plants grown on a standard MS medium. The effective concentrations of iron NPs (3.0, 0.3, and 0.06 mg/L) introduced into the nutrient medium are 1.9, 18.7, and 93.3 times lower, respectively, than the concentration of iron in the ionic form (in terms of metal) contained in standard MS medium; the concentration of zinc NPs (0.4, 0.08, and 0.016 mg/L) is 4.9, 24.5, and 122.5 times less than the concentration of zinc ions in terms of metal in MS; and the concentration of copper NPs (0.004, 0.0008, and 0.00016 mg/L) is 1.6, 8.0, and 40.0 times less than the concentration of copper in terms of copper ions in the standard MS medium.
机译:本文介绍了铁,锌和铜纳米粒子(NPS)引入Murashige和Skoog(MS)营养培养基的研究结果,而不是金属盐对叶片的叶绿素含量和根部的长度和活性在无菌条件下种植的辣椒蛋白辣椒植物。结果表明,根据NPS和元素的剂量,在营养培养基上生长的植物根部的长度为7〜118%,比在标准营养培养基上生长的植物。测试植物根部的活性比对照组的植物根源高出98%。在铁和铜纳米粒子的介质上生长的胡椒叶中的叶绿素含量比标准MS培养基中生长的植物中的叶绿素量高3. 59%。引入营养培养基中的铁NPS(3.0,0,3和0.06mg / L)的有效浓度分别为1.9,18.7和93.3倍,分别比离子形式的铁浓度(在金属条件下)在标准MS培养基;锌NPS(0.4,0.08和0.016mg / L)的浓度为4.9,24.5和比MS中金属浓度小于锌离子的浓度;在标准MS培养基中的铜离子方面,铜NPS(0.004,0.0008和0.00016mg / L)的浓度为1.6,8.0和40.0倍。

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  • 来源
    《Nanotechnologies in Russia》 |2018年第4期|共7页
  • 作者单位

    Federal State Budgetary Institution of Science Emanuel Institute of Biochemical Physics Russian Academy of Sciences;

    Federal State Budgetary Institution of Science Tal’roze Institute of Energy Problems of Chemical Physics Russian Academy of Sciences;

    Federal State Budgetary Institution of Science Tal’roze Institute of Energy Problems of Chemical Physics Russian Academy of Sciences;

    Federal State Budgetary Institution of Science Tal’roze Institute of Energy Problems of Chemical Physics Russian Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 数理科学和化学;
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