The effect of the non ionizing radiation on cultivated plants of Arabidopsis thaliana (Col.)

Citation:

Stefi AL, Margaritis LH, Christodoulakis NS. The effect of the non ionizing radiation on cultivated plants of Arabidopsis thaliana (Col.). Flora: Morphology, Distribution, Functional Ecology of Plants [Internet]. 2016;223:114 - 120.

Abstract:

A series of experiments was carried out to investigate any structural or biochemical alterations on Arabidopsis thaliana (Col.) plants after a long term exposure to non ionizing radiation emitted from the base unit of a cordless DECT system. Exposed plants, compared to their control counterparts, seem to be affected concerning their biomass and leaf structure. Their leaves are thinner and possess fewer chloroplasts. SEM observations of the exposed leaves reveal that the only feature affected is the pubescence which almost disappears while TEM investigation revealed minor structural effects in the chloroplasts. The reduction in the number of chloroplasts as well as the decrease of stroma thylakoids and photosynthetic pigments are probably the main reasons for a weak photosynthetic potential and a consequent reduction of the biomass production. © 2016 Elsevier GmbH.

Notes:

Cited By :2Export Date: 7 February 2017CODEN: FLRABCorrespondence Address: Christodoulakis, N.S.; Department of Botany, Faculty of Biology, National and Kapodistrian University of AthensGreece; email: nchristo@biol.uoa.grReferences: Akbal, A., Kiran, Y., Sahin, A., Turgut-Balik, D., Balik, H.H., Effects of electromagnetic waves emitted by mobile phones on germination, root growth and root tip cell mitotic division of Lens culinaris (2012) Pol. J. Environ. Stud., 21, pp. 23-29;Christodoulakis, N.S., Fasseas, C., Air pollution effects on the leaf structure of Laurus nobilis, an injury resistant species (1990) Bull. Environ. Contam. Toxicol., 44, pp. 276-281; Christodoulakis, N.S., Lampri, P.-N., Fasseas, C., Structural and Cytochemical Investigation on the leaf of silverleaf nightshade (Solanum elaeagnifolium), a draught resistant alien weed of the Greek flora (2009) Austr. J. Bot., 57, pp. 432-438; Christodoulakis, N.S., Kogia, D., Mavroeidi, D., Fasseas, C., Anatomical and cytochemical investigation on the leaf of Teucrium polium L., a pharmaceutical shrub of the Greek phryganic formations (2010) J. Biol. Res., 14, pp. 199-209; Esnault, M.-A., Legue, F., Chenal, C., Ionizing radiation: advances in plant response (2010) Environ. Exp. Bot., 68, pp. 231-237; Gechev, T., A simple and powerful approach for isolation of arabidopsis mutants with increased tolerance to H2O2 (2013) Induced Cell Death Methods in Enzymology, 527, pp. 11-18. , Elsevier Inc; Gustavino, B., Giovanni, C., Roberto, P., Paoluzzi, G., Santovetti, E., Rizzoni, M., Exposure to 915 MHz radiation induces micronuclei in Vicia faba root tips (2015) Mutagenesis, pp. 1-6. , (10.1093/mutage/gev071); Haggerty, K., Adverse influence of radio frequency background on trembling aspen seedlings: preliminary observations (2010) Int. J. For. Res., p. 7. , (Article ID 836278); Hollósy, F., Effects of ultraviolet radiation on plant cells (2002) Micron, 33, pp. 179-197; Guidelines for limiting exposure to time-varying electric, magnetic and electromagnetic fields (up to 300 GHz) (1998) Health Phys., 74, pp. 494-522; Kovács, E., Keresztes, A., Effect of gamma and UV-B/C radiation on plant cells (2002) Micron, 33, pp. 199-210; Kumar, A., Pal Singh, H., Batish, D.R., Kaur1, S., Kumar-Kohli, R., EMF radiations (1800 MHz)-inhibited early seedling growth of maize (Zea mays) involves alterations in starch and sucrose metabolism (2015) Protoplasma; Ledoigt, G., Electromagnetic fields (900 MHz) evoke consistent molecular responses in tomato plants (2006) Physiol. Plant., 128, pp. 283-288; Lianopoulou, V., Patakas, A., Bosabalidis, A.M., Seasonal dimorphism and winter chilling stress in Thymus sibthorpii (2015) Biol. Plant., 58, pp. 139-146; Manta, A.K., Stravopodis, D.J., Papassideri, I.S., Margaritis, L.H., Reactive oxygen species elevation and recovery in Drosophila bodies and ovaries following short-term and long-term exposure to DECT base EMF (2014) Electromagn. Biol. Med., 33, pp. 118-131; Margaritis, L., Manta, A.K., Kokkaliaris, K.D., Schiza, D., Alimisis, K., Barkas, G., Georgiou, E., Ziomas, K., Drosophila oogenesis as a bio-marker responding to EMF sources (2014) Electromagn. Biol. Med., pp. 165-189; McCormick, J.F., Platt, R.B., Effects of ionizing radiation on a natural plant community (1962) Radiat. Bot., 2, pp. 161-188; Pietruszewski, S., Muszyñski, S., Dziwulska, A., Electromagnetic fields and electromagnetic radiation as non-invasive external stimulants for seeds (selected methods and responses) (2007) Int. Agrophys., 21, pp. 95-100; Psaras, G.K., Christodoulakis, N.S., Air Pollution Effects on the Ultrastructure of Phlomis fruticosa mesophyll cells (1987) Bull. Environ. Contam. Toxicol., 38, pp. 610-617; Reynolds, E., The use of lead citrate at high pH as an electron-opaque stain in electron microscopy (1963) J. Cell Biol., 17, pp. 19-58; Roux, D., Vian, A., Girard, S., Bonnet, P., Paladian, F., Davies, E., Electromagnetic fields (900 MHz) evoke consistent molecular responses in tomato plants (2006) Physiol. Plant., 128, pp. 283-288; Shao, R.X., Xin, L.F., Zheng, H.F., Li, L.L., Ran, W.L., Mao, J., Yang, Q.H., Changes in chloroplast ultrastructure in leaves of drought-stressed maize inbred lines (2016) Photosynthetica, 54, pp. 74-80; Sharma, S., Parihar, L., Effect of mobile phone radiation on nodule formation in the leguminous plants (2014) Curr. World Environ., 9, pp. 145-155; Sheridan, S., Kalkstein, L., Kalkstein, A., Greene, S., Heat-related Mortality and Heat Watch-warning Systems in the United States: Recent Developments (2010), Abstracts from the ISEE 22nd Annual Conference, Seoul, Korea, 28 August -1 September 2010, Climate change and environmental health, O-29A1-1, EpidemiologyWellburn, A.R., Majernick, O., Wellburn, F.M., Effects of SO2 and NO2 polluted air upon the ultrastructure of chloroplasts (1972) Environ. Pollut., 3, pp. 37-49; Wi, S.-G., Chung, B.Y., Kim, J.-S., Kim, J.-H., Baek, M.-H., Lee, J.-W., Kim, Y.-S., Effects of gamma irradiation on morphological changes and biological responses in plants (2007) Micron, 38, pp. 553-564; Zhang, D.-W., Yuan, S., Xu, F., Zhu, F., Yuan, M., Ye, H.-X., Guo, H.-Q., Lin, H.-H., Light intensity affects chlorophyll synthesis during greening process by metabolite signal from mitochondrial alternative oxidase in Arabidopsis (2016) Plant Cell Environ., 39, pp. 12-25

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