Impact of MgONPs and its Effect on Chlorophyll, Carotene and Leaf Area of Soft Wheat Plant
Goal of this project is to synthesize MgO nanoparticles using environmentally friendly and low-cost ingredients. Plant extracts could be using to make oxide nanoparticles, which could be a cheaper alternative to established chemical methods. In this study examined the effects of four different MgO n...
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Veröffentlicht in: | NeuroQuantology 2022-03, Vol.20 (3), p.39-42 |
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Sprache: | eng |
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Zusammenfassung: | Goal of this project is to synthesize MgO nanoparticles using environmentally friendly and low-cost ingredients. Plant extracts could be using to make oxide nanoparticles, which could be a cheaper alternative to established chemical methods. In this study examined the effects of four different MgO nanoparticle concentrations (0,100,200 and 300 ppm) and 3 different methods (seed soak, foliar application also seed soak + foliar application together) on chlorophyll, carotene, and leaf area content in two different wheat plant types (abaa 95 also rasheed), When the wheat plant was subjected to MgO nanoparticles, the results revealed an increase in all important indicators compared to the control treatment, which produced the greatest results for seed soak also foliar application together treatment. In comparison controller treatment, which offered the greatest result content for spray application & seed soak, treatment, results revealed rise all indicators remembered previously after exposed to MgONPS as value (3.86 Chlorophyll a+b), (0.97 Carotien), (31.25 Leaf area) of the wheat plant abaa 95 in compar with rasheesd which have the lower value. Despite the fact that magnesium is essential for plants, this study discovered that when it is present in nanoparticle form, it behaves significantly better. |
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ISSN: | 1303-5150 1303-5150 |
DOI: | 10.14704/nq.2022.20.3.NQ22037 |