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Effects of submicron ammonium sulfate particles on the growth and yield of komatsuna (Brassica rapa L. var. perviridis)

机译:亚微米硫酸铵颗粒对Komatsuna(Brassica rapa L. var。perviridis)生长和产量的影响

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The aim of this study was to determine the effects of submicron ammonium sulfate (AS) particles on komatsuna (Brassica rapa L. cv. Hakkei) plants. First, we optimized a leaf-washing method to measure the amount of AS particles deposited on the leaf surface of the plants. Then, we used this method to determine the retention time of particles deposited on the leaf surface of the plants. We also investigated the effects of AS particles on the growth and yield of the plants. Almost all the AS particles deposited on the leaf surface were removed within 1 min washing time with ultrapure water, and ion leaching from the leaf was relatively slow but continuous during the leaf-washing procedure. On the basis of these results, we determined that 1 min was a suitable washing time to remove most of the AS particles while minimizing the influence of ion leaching from the leaf. The amount of particulate SO42- deposited on the leaf surface decreased over time, probably because AS particles deposited on the leaf surface deliquesced, allowing ions such as SO42- in the deliquescence solution to be absorbed into the leaf. The plants were grown and exposed to AS particles for 16 days in naturally lit phytotrons. The daily mean increase in the concentration of SO42- in PM2.5 by the exposure to AS particles was 22.5 mu g m(-3) in the phytotrons. The growth and yield of the plants were significantly reduced by the exposure to AS particles. The exposure to AS particles did not affect the leaf concentrations of nitrogen and chlorophyll, but significantly reduced stomatal conductance. Therefore, stomatal closure is one of the reasons for the AS particle-induced reductions in the growth and yield of komatsuna plants. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是确定亚微米级硫酸铵(AS)颗粒对Komatsuna(Brassica rapa L. cv。Hakkei)植物的影响。首先,我们优化了洗叶方法,以测量植物叶片表面沉积的AS颗粒的量。然后,我们使用这种方法来确定沉积在植物叶片表面的颗粒的保留时间。我们还研究了AS颗粒对植物生长和产量的影响。用超纯水在1分钟的洗涤时间内几乎清除了沉积在叶片表面的所有AS颗粒,并且从叶片中浸出的离子相对较慢,但在叶片洗涤过程中是连续的。根据这些结果,我们确定1分钟是去除大部分AS颗粒,同时最大程度地减少离子从叶中浸出的影响的合适洗涤时间。沉积在叶片表面的微粒SO42-的量随时间而减少,这可能是因为沉积在叶片表面的AS微粒水化了,从而使潮解溶液中的离子(例如SO42-)被吸收到叶片中。使植物生长,并在自然光照的光电子加速器中暴露于AS颗粒16天。在光电子加速器中,通过暴露于AS颗粒,PM2.5中SO42-的每日平均增加量为22.5μg m(-3)。暴露于AS颗粒显着降低了植物的生长和产量。暴露于AS颗粒不会影响叶片中氮和叶绿素的浓度,但会显着降低气孔导度。因此,气孔关闭是AS颗粒诱导的Komatsuna植物生长和产量下降的原因之一。 (C)2017 Elsevier Ltd.保留所有权利。

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