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首页> 外文期刊>Ecotoxicology and Environmental Safety >How does aquatic macrophyte Salvinia auriculata respond to nanoceria upon an increased CO_2 source? A Fourier transform-infrared photoacoustic spectroscopy and chlorophyll a fluorescence study
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How does aquatic macrophyte Salvinia auriculata respond to nanoceria upon an increased CO_2 source? A Fourier transform-infrared photoacoustic spectroscopy and chlorophyll a fluorescence study

机译:当CO_2来源增加时,水生大型植物Salvinia auriculata对纳米氧化铈有何反应?傅里叶变换红外光声光谱和叶绿素a荧光研究

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With the continued increase of technological uses of cerium oxide nanoparticles (CeO2 NPs or nanoceria) and their unregulated disposal, the accumulation of nanoceria in the environment is inevitable. Concomitantly, atmospheric carbon dioxide (CO2) levels continue to rise, increasing the concentrations of bicarbonate ions in aquatic ecosystems. This study investigates the influence of CeO2 NPs (from 0 to 100 mu gL(-1)) in the presence and absence of an elevated bicarbonate (HCO3-) ion concentration (1 mM), on vibrational biochemical parameters and photosystem II (PSII) activity in leaf discs of Salvinia auriculata. Fourier transform-infrared photoacoustic spectroscopy (FTIR-PAS) was capable of diagnostic use to understand biochemical and metabolic changes in leaves submitted to the CeO2 NPs and also detected interactive responses between CeO2 NPs and HCO3- exposure at the tissue level. The results showed that the higher CeO2 NPs levels in the presence of HCO3- increased the non-photochemical quenching (NPQ) and coefficient of photochemical quenching in dark (qPd) compared to the absence of HCO3. Moreover, the presence of HCO3- significantly decreased the NPQ at all levels of CeO2 NPs demonstrating that HCO3- exposure may change the non-radiative process involved in the operation of the photosynthetic apparatus. Overall, the results of this study are useful for providing baseline information on the interactive effects of CeO2 NPs and elevated HCO3- ion concentration on photosynthetic systems.
机译:随着二氧化铈纳米颗粒(CeO2 NPs或纳米氧化铈)的技术用途的不断增加以及其不受监管的处置,纳米氧化铈在环境中的积累是不可避免的。随之而来的是,大气中的二氧化碳(CO2)水平继续上升,从而增加了水生生态系统中碳酸氢根离子的浓度。这项研究调查了存在和不存在碳酸氢根(HCO3-)离子浓度(1 mM)升高的情况下CeO2 NPs(0至100μgL(-1))对振动生化参数和光系统II(PSII)的影响Salvinia auriculata叶盘中的活性。傅里叶变换红外光声光谱法(FTIR-PAS)具有诊断用途,能够了解提交给CeO2 NP的叶片的生化和代谢变化,并且还可以检测CeO2 NP与HCO3-暴露在组织水平上的相互作用。结果表明,与不存在HCO3相比,在存在HCO3-的情况下较高的CeO2 NPs水平增加了非光化学猝灭(NPQ)和在黑暗中的光化学猝灭系数(qPd)。此外,HCO3-的存在显着降低了CeO2 NPs在所有水平上的NPQ,表明HCO3-暴露可能会改变光合作用设备运行中涉及的非辐射过程。总体而言,这项研究的结果可用于提供有关CeO2 NP相互作用效应和HCO3-离子浓度升高对光合系统相互作用的基线信息。

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