Effect of Zinc Nanoparticles on Seed Priming, Growth and Production of Cucumber

Samia Nisar, I. Hassan, Syed Zia ul Hasan, Ishrat Batool, A. Saleem, R. Bibi, Safia Naureen Malik, R. Rafique, A. Rehman
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Abstract

Cucumber (Cucumis sativus L.) is an important vegetable and its demand remains around the year. High quality and yield are desired quality for both grower and consumers. Therefore, influence of seed priming and foliar application of zinc nano particles was checked on yield and quality of cucumber. ZnO nano particles are non-toxic and recently listed as “Generally Recognized as Safe (GRAS)” safe material by food and drug administration and use as food additive. Due to interaction of nano particles with plant, many physiological and morphological changes take place depending on the characteristic of Nanoparticles. By the exploitation of new application of nanotechnology crop yield can be increased. In plants, nano particles as a zinc fertilizer with small size and large surface area are predicted to be an ideal material to use. Zinc is one of the vital nutrients required for plant growth Result indicate that zinc nano particles at 20 ppm concentration increased seed germination as well as physical parameters plant height, number of leaves, leaf area, number of flower, yield, fruit weight, fruit length, fruit diameter, average single fruit weight, fruit firmness and fruit color was increased. Furthermore, chemical parameters like total soluble solids, ascorbic acid and titratable acidity was increased at 20 ppm zinc nano particles as compared to control and other treatments. Present research proves that seed priming and foliar application of zinc nano particles are effective for improving fruit physical and chemical characteristics. The finding of this research work will be helpful in future research on utilization of nano particles for vegetable crops.
纳米锌对黄瓜种子萌发、生长和生产的影响
黄瓜(Cucumis sativus L.)是一种重要的蔬菜,其需求全年保持不变。高品质和高产量是种植者和消费者都想要的品质。为此,研究了锌纳米颗粒在黄瓜种子灌种和叶面施用对黄瓜产量和品质的影响。氧化锌纳米颗粒无毒,最近被食品药品监督管理局列为“GRAS”安全材料,并作为食品添加剂使用。由于纳米粒子与植物的相互作用,许多生理和形态的变化取决于纳米粒子的特性。通过开发纳米技术的新应用,可以提高作物产量。在植物中,纳米颗粒作为锌肥料具有体积小、表面积大的特点,有望成为一种理想的使用材料。锌是植物生长所需的重要营养物质之一。结果表明,20 ppm浓度的锌纳米颗粒提高了种子发芽率,提高了植株高、叶数、叶面积、花数、产量、果重、果长、果直径、平均单果重、果实硬度和果实颜色等物理参数。此外,与对照和其他处理相比,20 ppm锌纳米颗粒的化学参数如可溶性固形物总量、抗坏血酸和可滴定酸度均有所增加。目前的研究表明,锌纳米颗粒在种子灌浆和叶面施用中对改善果实理化特性是有效的。本研究结果将为今后纳米颗粒在蔬菜作物上的应用研究提供参考。
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