Title of article :
Effect of Magnetic Salinated Water on some Morphological and Biochemical Characteristics of Artichoke (Cynara scolymus L.) Leaves
Author/Authors :
Bagherifard, Aminallah Department of Horticultural Science - Faculty of plant production - Gorgan University, Gorgan , Iran , Ghasemnezhad, Azim Department of Horticultural Science - Faculty of plant production - Gorgan University, Gorgan , Iran
Abstract :
Plants for optimal growth requires absorb water and nutrients absorption from the soil. Magnetic Water
downward movement of minerals and makes it easy for plants to absorb nutrients and water. This study was
designed to investigate the effect of magnetic salt water on some quantity and quality characteristics of artichoke
leaves. The experiment was factorial based on completely randomized design with four levels of magnetic field
[0, 3000, 6000 and 10000 gauss] and four levels of salinity [0 , 3, 6 and 12 ds/m sodium chloride]. Results
showed that the magnified water affected plant growth parameters. Fresh and dry weight of leaves and roots of
plants increased as irrigated by magnified water. A significant interaction of salinity and magnetism was
observed on mentioned parameters.Salinity and electromagnetic had significant effects on the most measured
biochemical parameters. The highest amounts of phenolic and flavonoid contents were observed in the plants
treated with magnified and saline water at medium level. The maximum antioxidant activity was observed in
plant grown under 6 ds/m salinity. The highest and lowest amount s of chlorogenic acid was observed in plants
irrigated with 6 ds/m saline water in which magnified fewer than 3000 gauss. The highest amount of caffeic acid
[0/0044 mg/g] was recorded under 6 ds/m salinity and 3000 gauss electromagnetic conditions. Based on the
results, it can be stated that the magnification increases efficiency of salty water and improve the performance
and quality of the artichoke leaves.
Keywords :
Magnified water , Electromagnetic field , Gauss , Artichokes
Journal title :
Astroparticle Physics