161
Magneto-Priming: A Novel Technique Towards Improved Seed Germinability
Efthimiadou, A., Katsenios, N., Karkanis, A., Papastylianou, P., Triantafyllidis, V., Travlos, I.,
& Bilalis, D. J., (2014). Effects of presowing pulsed electromagnetic treatment of tomato
seed on growth, yield, and lycopene content. Sci. World J., 2014, 369745.
El-Maarouf-Bouteau, H., & Bailly, C., (2008). Oxidative signaling in seed germination and
dormancy. Plant Signal Behav., 3(3), 175–182.
Eşitken, A., & Turan, M., (2004). Alternating magnetic field effects on yield and plant nutrient
element composition of strawberry (Fragaria x ananassa cv. Camarosa). Acta Agric.
Scand. B Soil Plant Sci., 54(3), 135–139.
Fay, T. P., Lindoy, L. P., Manolopoulos, D. E., & Hore, P., (2019). How quantum is radical pair
magnetoreception? Faraday Discuss, 221, 77–91.
Fischer, G., Tausz, M., Köck, M., & Grill, D., (2004). Effects of weak 16⅔ Hz magnetic fields
on growth parameters of young sunflower and wheat seedlings. Bio ELectromagn., 25(8),
638–641.
Florez, M., Alvarez, J., Martinez, E., & Carbonell, V., (2019). Stationary magnetic field
stimulates rice roots growth. Rom. Rep. Phys., 71, 713.
Foyer, C. H., & Noctor, G., (2005). Oxidant and antioxidant signaling in plants: A re
evaluation of the concept of oxidative stress in a physiological context. Plant Cell Environ.,
28(8), 1056–1071.
Haghighat, N., Abdolmaleki, P., Ghanati, F., Behmanesh, M., & Payez, A., (2014). Modification
of catalase and MAPK in Vicia faba cultivated in soil with high natural radioactivity and
treated with a static magnetic field. J. Plant Physiol., 171(5), 99–103.
Hasan, M. M., Alharby, H. F., Hajar, A. S., Hakeem, K. R., & Alzahrani, Y., (2019). The effect
of magnetized water on the growth and physiological conditions of Moringa spp. under
drought stress. Pol. J. Environ. Stud., 8, 1145–1155.
Hasenstein, K. H., John, S., Scherp, P., Povinelli, D., & Mopper, S., (2013). Analysis of
magnetic gradients to study gravitropism. Am. J. Bot., 100(1), 249–255.
Hilal, M., Shata, S., Abdel-Dayem, A., & Hilal, M., (2002). Application of magnetic
technologies in desert agriculture: III. effect of magnetized water on yield and uptake of
certain elements by citrus in relation to nutrients mobilization in soil. Egypt. J. Soil Sci.,
42, 43–56.
Hirota, N., Nakagawa, J., & Kitazawa, K., (1999). Effects of a magnetic field on the
germination of plants. J. Appl. Phys., 85(8), 5717–5719.
Hozayn, M., EL-Mahdy, A., & Zalama, M., (2018). Magneto-priming for improving
germination, seedling attributes and field performance of barley (Hordeum vulgare L.)
under salinity stress. Middle East J. Agric. Res., 7, 1006–1022.
Iimoto, M., Watanabe, K., & Fujiwara, K., (1996). Effects of magnetic flux density and
direction of the magnetic field on growth and CO2 exchange rate of potato plantlets in vitro.
In International Symposium on Plant Production in Closed Ecosystems, 440, 606–610.
Ijaz, B., Jatoi, S. A., Ahmad, D., Masood, M. S., & Siddiqui, S. U., (2012). Changes in
germination behavior of wheat seeds exposed to magnetic field and magnetically structured
water. Afr. J. Biotechnol., 11(15), 3575–3585.
Jamil, Y., & Ahmad, M. R., (2012). Effect of pre-sowing magnetic field treatment to garden pea
(Pisum Sativum L.) seed on germination and seedling growth. Pak. J. Bot., 44, 1851–1856.
Javed, N., Ashraf, M., Akram, N. A., & Al‐Qurainy, F., (2011). Alleviation of adverse effects
of drought stress on growth and some potential physiological attributes in maize (Zea mays
L.) by seed electromagnetic treatment. Photochem. Photobiol., 87(6), 1354–1362.