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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Titanium dioxide nanoparticles impaired both photochemical and non-photochemical phases of photosynthesis in wheat
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Titanium dioxide nanoparticles impaired both photochemical and non-photochemical phases of photosynthesis in wheat

机译:二氧化钛纳米颗粒在小麦中损害光合作用的光化学和非光化学阶段

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摘要

Titanium dioxide nanoparticles (TiO2-NP) are increasingly being proposed for nanoagriculture but their effect on photosynthesis is limited and contradictory, mostly regarding putative chronical effects associated to the exposure to the commercial P25 formulation (anatase:rutile). This research aims at evaluating how chronical exposure to P25-NP affect photosynthetic processes in Triticum aestivum. Wheat plants were exposed (from the germination stage) to 0, 5, 50, and 150mgL(-1) P25-NP for 20days. P25-NP impaired both light-dependent and -independent phases of photosynthesis, decreased chlorophyll a content, maximal and effective efficiency of PSII, net photosynthetic rate, transpiration rate, stomatal conductance, intercellular CO2 concentration, and starch content. On the other hand, no effects were observed in photochemical and in non-photochemical quenching values, on total soluble sugar (TSS) content or in RuBisCO activity. Our results support that the induced decay in chlorophyll a content compromised the electron transport through PSII and that stomatal limitations impaired CO2 assimilation. The decline of starch content seems to be a consequence of its degradation as a mechanism to maintain the TSS levels. Consequently, we propose that photosynthetic related endpoints are sensitive and valuable biomarkers to assess TiO2-NP toxicity.
机译:越来越多地提出二氧化钛纳米颗粒(TiO2-NP),用于纳米型培养,但它们对光合作用的影响是有限的和矛盾的,大多数关于暴露于商业P25配方(Anatase:金红石)相关的推定的慢性作用。本研究旨在评估P25-NP的时间慢性暴露如何影响小鼠Aestivum中的光合过程。将小麦植物暴露(从发芽阶段)至0,5,50和150mg1(-1)p25-np持续20天。 P25-NP损害光合作用的光依赖性和依赖性相,降低叶绿素的含量,最大和有效效率的PSII,净光合速率,蒸腾速率,气孔导电,细胞间CO 2浓度和淀粉含量。另一方面,在光化学和非光化学猝灭值中没有观察到完全可溶性糖(TSS)含量或RubisCo活性的任何效果。我们的研究结果支持,叶绿素中的诱导衰减内容通过PSII损害了电子传输,并且气孔限制受到二氧化碳同化损害。淀粉含量的下降似乎是其降解作为维持TSS水平的机制的结果。因此,我们提出光合相关终点是敏感的和有价值的生物标志物,以评估TiO2-NP毒性。

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