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The potential mitigation effect of ZnO nanoparticles on Abelmoschus esculentus L. Moench metabolism under salt stress conditions

机译:纳米氧化锌对黄秋葵的潜在缓解作用。盐胁迫条件下的代谢

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摘要

Salt stress is known to be momentous abiotic stress which treats agricultural lands and crop production throughout the world and effects the system of food security. The current study aims to investigate the effect of foliar application of 10 mg/l of zinc oxide (ZnO) as a bulk or as a green synthesized nanoparticle (ZnO-NPs) which were hexagonal and spherical in shape and at size 16–35 nm to alleviate the impact of salinity concentrations (0, 10, 25, 50, 75 and 100% SW) on Okra (Abelmoschus esculentus L. Moench cv. Hasawi) species. The results demonstrated a gradual decrease in the photosynthetic pigments (i.e., chlorophyll a and b with total chlorophylls and carotenoids) with the growth of salinity conc. However, the sea water levels between 0 and 75% will led to increase in proline, total soluble sugar and activity of the antioxidant enzymes i.e., superoxide dismutase (SOD) and catalase (CAT) and then decrease at 100% SW. The addition of bulk ZnO or ZnO-NPs enhances the contents of the photosynthetic pigments, activity of both SOD and CAT and then lowers the accumulation of proline and total soluble sugar when equated with controls. Plants treated with ZnO-NPs showed the greatest results when compared with other treatments. The results of current study showed ZnO-NPs as an appropriate eco-friendly and low-cost application for plant growth under salinity which has an ability to moderate the salt stress effect of plants.
机译:已知盐胁迫是在全世界治疗农业土地和作物产量的重症胁迫,并影响粮食安全系统。目前的研究旨在探讨叶面施加10mg / L氧化锌(ZnO)作为散装或作为绿色合成纳米颗粒(ZnO-NP)的叶片和球形的效果,其形状为16-35nm为了减轻盐度浓度(0,115,50,50,75和100%SW)对秋葵(Abelmoschus Esculentus L. Moench CV。Hasawi)物种的影响。结果表明,光合颜料(即叶绿素A和Bum,总叶绿素和类胡萝卜素的叶绿素A和B)逐渐减少,其盐度浓度的生长。然而,0至75%之间的海水水平将导致脯氨酸,总可溶性糖和抗氧化酶的活性增加,超氧化物歧化酶(SOD)和过氧化氢酶(猫),然后在100%SW下降低。添加散装ZnO或ZnO-NPS增强了光合颜料的内容,SOD和猫的活性,然后降低了当等同于对照时的脯氨酸和总可溶性糖的积累。用ZnO-NPS处理的植物与其他治疗相比,术语最大。目前研究的结果显示ZnO-NPS作为盐度下的植物生长的适当环保和低成本应用,具有中度植物的盐胁迫作用的能力。

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