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Phytotoxicity of Silver Nanoparticles on Tobacco Plants: Evaluation of Coating Effects on Photosynthetic Performance and Chloroplast Ultrastructure

机译:烟草植物中银纳米粒子的植物毒性:对光合性能和叶绿体超微结构的涂层影响评价

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摘要

Silver nanoparticles (AgNPs) are the most exploited nanomaterial in agriculture and food production, and their release into the environment raises concern about their impact on plants. Since AgNPs are prone to biotransformation, various surface coatings are used to enhance their stability, which may modulate AgNP-imposed toxic effects. In this study, the impact of AgNPs stabilized with different coatings (citrate, polyvinylpyrrolidone (PVP), and cetyltrimethylammonium bromide (CTAB)) and AgNO3 on photosynthesis of tobacco plants as well as AgNP stability in exposure medium have been investigated. Obtained results revealed that AgNP-citrate induced the least effects on chlorophyll a fluorescence parameters and pigment content, which could be ascribed to their fast agglomeration in the exposure medium and consequently weak uptake. The impact of AgNP-PVP and AgNP-CTAB was more severe, inducing a deterioration of photosynthetic activity along with reduced pigment content and alterations in chloroplast ultrastructure, which could be correlated to their higher stability, elevated Ag accumulation, and surface charge. In conclusion, intrinsic properties of AgNP coatings affect their stability and bioavailability in the biological medium, thereby indirectly contributing changes in the photosynthetic apparatus. Moreover, AgNP treatments exhibited more severe inhibitory effects compared to AgNO3, which indicates that the impact on photosynthesis is dependent on the form of Ag.
机译:银纳米颗粒(AgNP)是农业和粮食生产中最具利用的纳米材料,其进入环境中的释放引发了对植物的影响。由于AGNP易于生物转化,因此使用各种表面涂层来增强它们的稳定性,这可以调节AgNP施加的毒性作用。在该研究中,研究了用不同涂层(柠檬酸盐,聚乙烯吡咯烷酮(PVP)和十六烷基甲基溴化铵(CTAB))和AgNO3对烟草植物的光合作用的影响以及暴露培养基中的AgNO3的影响。得到的结果表明,AgNP-柠檬酸酯诱导对荧光参数和颜料含量的荧光参数和颜料含量的最小影响,这可以在暴露培养基中归因于它们的快速附聚并因此弱摄取。 AgNP-PVP和AGNP-CTAB的影响更严重,诱导光合活性的恶化以及降低的颜料含量和叶绿体超微结构中的改变,这可以与其更高的稳定性,升高的Ag累积和表面电荷相关。总之,AgNP涂层的内在性质影响了生物培养基中的稳定性和生物利用度,从而间接地促进了光合仪的变化。此外,与AgNO3相比,AGNP治疗表现出更严重的抑制作用,这表明对光合作用的影响取决于Ag的形式。

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