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COMPARISON OF THE EFFECTS OF ZNO NPS, MGO NPS AND IONIC ZINC AND MAGNESIUM ON WHEAT PLANTS

机译:ZNO NPS,MGO NPS和离子锌,镁对小麦的影响比较

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Due to special properties, ZnO and MgO nanoparticles (NPs) have wide applications in various fields and can be easily dispersed into air and soil. Plants contacts soil directly and are also an important source of food. Hence, studies on phototoxicity of ZnO NPs and MgO NPs to plants are needed. In this study, wheat plants were exposed to ZnO NPs, MgO NPs and ionic Zn, Mg at concentration of 50 and 200 mg/L dissolved in water. Growth parameters, Zn and Mg accumulation, total protein, soluble sugar and antioxidant system were determined after 4 days of treatment. Results showed that ionic Zn and Mg reduced the shoot and root length and also lead to increments of total proteins, soluble sugars and antioxidant enzyme activity. 200 mg/L Mg~(2+) increased chlorophyll contents by 29%. 200 mg/L Mg~(2+) and ZnO NPs also increased root activity. In other words, Zn and Mg oxide nanoparticles exhibited less physiology toxicity than ionic Zn and Mg of the same concentration.
机译:ZnO和MgO纳米颗粒(NPs)具有特殊的性能,在各个领域都有广泛的应用,并且很容易分散到空气和土壤中。植物直接接触土壤,也是重要的食物来源。因此,需要研究ZnO NP和MgO NP对植物的光毒性。在这项研究中,小麦植物暴露于浓度为50和200 mg / L的ZnO NPs,MgO NPs和离子型Zn,Mg。处理4天后,确定生长参数,锌和镁积累,总蛋白,可溶性糖和抗氧化剂系统。结果表明,离子型Zn和Mg减少了芽和根的长度,并导致总蛋白质,可溶性糖和抗氧化酶活性的增加。 200 mg / L Mg〜(2+)使叶绿素含量增加29%。 200 mg / L Mg〜(2+)和ZnO NPs也能增加根系活性。换句话说,与相同浓度的离子型Zn和Mg相比,Zn和Mg氧化物纳米颗粒表现出较小的生理毒性。

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