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Pretreatment of maize seeds with different magnesium nanoparticles improves the germinating performance and storability

机译:用不同镁纳米粒子的玉米种子的预处理改善了发芽性能和可储存性

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The objective of this study was to evaluate the effect of treatment with simple or coated nanoparticle and concentrations on storage time and the germination parameters in corn seeds.The treatments composed of three magnesium sources, magnesium oxide nanoparticles and nanoparticles in the form of (MgO NPs), magnesium carbon oxide core-shell nanoparticles (MgO@C NPs) and magnesium nitrate [Mg(NO3)2].Six concentrations 0 (control) 37.5, 75, 150, 300 and 600 mg.L-1 were applied.The treated seeds were submitted to germination tests, after different storage times: 0, 30, 60, 90 and 150 days and then the normal and abnormal seedlings were evaluated.The results indicate that the treatment process with simple or coated nanoparticles with optimal concentration value, between 75 and 150 mg.L-1 of Mg, can approximately increase 6% of normal seedlings in conjunction with the storage time (90-150 days).The exposure of the seeds to magnesium nitrate resulted in less normal plants, possibly due to the saline and toxic effect of this source.The best germination performance of seeds pretreated with simple or coated nanoparticles can be achieved at the concentration of 75 mg.L-1 and for the storage time of 150 days.There might be some negative effect for magnesium nitrate depending on concentration and storage time.
机译:本研究的目的是评估用简单或涂覆的纳米粒子处理和玉米种子的储存时间和萌发参数的效果。由三种镁源,氧化镁纳米粒子和纳米颗粒(MgO NPS的纳米粒子组成的处理),含碳镁氧化镁 - 壳纳米粒子(MgO @ C NP)和硝酸镁[Mg(NO 3)2] .Six浓度0(对照)37.5,75,150,300和600mg.L-1。在不同的贮藏时间后,将处理的种子提交给萌发试验:0,30,60,90和150天,然后评估正常和异常的幼苗。结果表明,用简单或涂覆的纳米颗粒具有最佳浓度值的处理方法,在75和150mg.L-1之间,Mg的1次,可以随着储存时间(90-150天)大致增加6%的常规幼苗。种子暴露于硝酸镁的植物导致较少的植物,可能是由于TH.盐水和本源的毒性效果。用简单或涂覆的纳米颗粒预处理的种子的最佳萌发性能可以以75mg.L-1的浓度和150天的储存时间来实现。可能会产生一些负面影响硝酸镁根据浓度和储存时间。

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