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Foliar Application of Low Concentrations of Titanium Dioxide and Zinc Oxide Nanoparticles to the Common Sunflower under Field Conditions

机译:叶片在现场条件下将低浓度二氧化钛和氧化锌纳米粒子和氧化锌纳米颗粒的应用

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摘要

Nano-fertilisers have only recently been introduced to intensify plant production, and there still remains inadequate scientific knowledge on their plant-related effects. This paper therefore compares the effects of two nano-fertilisers on common sunflower production under field conditions. The benefits arising from the foliar application of micronutrient-based zinc oxide fertiliser were compared with those from the titanium dioxide plant-growth enhancer. Both the zinc oxide (ZnO) and titanium dioxide (TiO ) were delivered by foliar application in nano-size at a concentration of 2.6 mg·L . The foliar-applied nanoparticles (NPs) had good crystallinity and a mean size distribution under 30 nm. There were significant differences between these two experimental treatments in the leaf surfaces’ trichomes diversity, ratio, width, and length at the flower-bud development stage. Somewhat surprisingly, our results established that the ZnO-NPs treatment induced generally better sunflower physiological responses, while the TiO -NPs primarily affected quantitative and nutritional parameters such as oil content and changed sunflower physiology to early maturation. There were no differences detected in titanium or zinc translocation or accumulation in the fully ripe sunflower seeds compared to the experimental controls, and our positive results therefore encourage further nano-fertiliser research.
机译:纳米肥料最近才引入加强植物生产,并且仍然存在对其植物相关效果的科学知识不足。因此,本文比较了两种纳米肥对现场条件下普通向日葵产量的影响。将微丁基氧化锌肥料的叶面应用产生的益处与来自二氧化钛植物生长增强剂的含量进行比较。氧化锌(ZnO)和二氧化钛(TiO)通过叶片施用以2.6mg·l的浓度为纳米尺寸施用。叶面施加的纳米颗粒(NPS)具有良好的结晶度和30nm以下的平均尺寸分​​布。在花蕾开发阶段的叶片表面的薄叶状物的多样性,比例,宽度和长度之间这两个实验处理之间存在显着差异。有些令人惊讶的是,我们的结果确定了ZnO-NPS治疗诱导致电较好的向日葵生理反应,而TIO-NPS主要影响诸如石油含量的定量和营养参数,并将向日葵生理学变为早期成熟。与实验对照相比,钛或锌易位或全成熟的向日葵种子中的锌易位或积累没有差异,因此我们的阳性结果促进了进一步的纳米肥料研究。

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