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Effects of Zerovalent Iron Nanoparticles on Photosynthesis and Biochemical Adaptation of Soil-Grown Arabidopsis thaliana

机译:零价铁纳米颗粒对土壤生长拟南芥光合作用及生化适应的影响

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摘要

Nanoscale zerovalent iron (nZVI) is the most widely used nanomaterial for environmental remediation. The impacts of nZVI on terrestrial organisms have been recently reported, and in particular, plant growth was promoted by nZVI treatment in various concentrations. Therefore, it is necessary to investigate the detailed physiological and biochemical responses of plants toward nZVI treatment for agricultural application. Here, the effects of nZVI on photosynthesis and related biochemical adaptation of soil-grown were examined. After treatment with 500 mg nZVI/kg soil, the plant biomass increased by 38% through enhanced photosynthesis, which was confirmed by the gas-exchange system, carbon isotope ratio and chlorophyll content analysis. Besides, the iron uptake of the plant increased in roots and leaves. The magnetic property measurements and transmission electron microscopy showed that the transformed particles were accumulated in parts of the plant tissues. The accumulation of carbohydrates such as glucose, sucrose and starch increased by the enhanced photosynthesis, and photosynthetic-related inorganic nutrients such as phosphorus, manganese and zinc maintained homeostasis, according to the increased iron uptake. These findings suggest that nZVI has additional or alternative benefits as a nano-fertilizer and a promoter of CO uptake in plants.
机译:纳米级零价铁(nZVI)是用于环境修复的最广泛使用的纳米材料。最近已经报道了nZVI对陆地生物的影响,尤其是通过不同浓度的nZVI处理促进了植物的生长。因此,有必要研究植物对农业应用nZVI处理的详细生理和生化反应。在这里,研究了nZVI对土壤生长的光合作用和相关生化适应的影响。用500 mg nZVI / kg土壤处理后,通过增强的光合作用,植物生物量增加了38%,这已通过气体交换系统,碳同位素比和叶绿素含量分析得到了证实。此外,植物的铁吸收在根和叶中都增加了。磁性能测量和透射电子显微镜显示,转化的颗粒积累在植物组织的一部分中。随着铁的吸收增加,光合作用增强了葡萄糖,蔗糖和淀粉等碳水化合物的积累,而与磷,锰和锌等光合作用相关的无机养分则保持了体内稳态。这些发现表明,nZVI作为纳米肥料和植物中CO吸收的促进剂具有其他或替代的好处。

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