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Iron oxide nanoparticle phytotoxicity to the aquatic plant Lemna minor: effect on reactive oxygen species (ROS) production and chlorophyll a/chlorophyll b ratio

机译:氧化铁纳米粒子植物植物植物植物植物植物Lemna次要:对反应性氧(ROS)产生的影响和叶绿素A /叶绿素B比

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摘要

Although iron oxide occurs naturally in the environment, iron oxide nanoparticles have distinct mobility, reactivity, and toxicity, which can harm the human health and nature. This scenario has motivated the investigation of the toxic effects of iron oxide nanoparticles (akaganeite predominance + hematite) on the aquatic plant Lemna minor. First, nanoparticles were synthesized and characterized; then, different iron oxide NP concentrations were added to Lemna minor culture. After 7days, all the Lemna minor leaves died, irrespective of the added NP concentration. The iron oxide NP impact on the plant was evaluated based on malondialdehyde (MDA) production from thiobarbituric acid reactive substances (TBARS), which was dose-dependent; i.e., lipid peroxidation in the plant increased with rising iron oxide NP concentration. The chlorophyll content decreased at high iron oxide NP concentrations, which disrupted the light absorption mechanism. Fe accumulation in Lemna minor roots also occurred, which can harm nutrient uptake. Therefore, the iron oxide NP toxic impact on plants and related ecosystems requires further studies in order to prevent environmental damage.
机译:虽然氧化铁在环境中自然发生,但氧化铁纳米颗粒具有不同的迁移率,反应性和毒性,这可能会损害人类健康和性质。这种情况有动力调查氧化铁纳米粒子(Akaganeite Priminance +赤铁矿)对水生植物植物lemna的毒性作用。首先,合成纳米颗粒并表征;然后,将不同的氧化铁NP浓度加入到LEMNA轻微的培养物中。 7天后,无论添加的NP浓度如何,所有lemna轻微叶子都死了。基于来自硫氨酰脲酸反应性物质(TBARS)的丙二醛(MDA)产生,评估对植物对植物的氧化铁NP撞击,这是依赖于剂量的;即,植物中的脂质过氧化随着氧化铁NP浓度的上升而增加。叶绿素含量在高氧化铁NP浓度下降低,溶于光吸收机理。 lemna轻微根中的Fe积累也发生,这可能会损害营养吸收。因此,对植物和相关生态系统的氧化铁NP有毒影响需要进一步研究以防止环境损害。

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