109
EMFs and Environmental Stresses in Plants
Radhakrishnan, R., Leelapriya, T., Ranjitha, B.D. and Kumari, D. (2012) Effects of pulsed magnetic feld
treatment of soybean seeds on calli growth, cell damage and biochemical changes under salt stress.
Bioelectromagnetics 33:670–681.
Rizk, M.A. (2003) Possible control of sugarbeet pathogen Sclerotium rolfsii Sacc. by ELF amplitude modulated waves. Pakistan J Biol Sci 6(1):80–85.
Ruzic, R. and Jerman, I. (2002) Weak magnetic feld decreases heat stress in cress seedlings. Electromagn
Biol Med 21:69–80.
Ruzic, R., Vodnik, D. and Jerman, I. (2000) Infuence of aluminum in biology effects of ELF magnetic feld
stimulation. Electro Magnetobiol 19(1):57–68.
Sen, A. and Alikamanoglu, S. (2016) Interactive effect of static magnetic feld and abiotic stressors on growth
and biochemical parameters of germinating wheat cultivars. IUFS J Biol 75(1):19–38.
Shao, H.B., Chu, L.Y., Jaleel, C.A. and Zhao, C.X. (2008) Water-defcit stress-induced anatomical changes in
higher plants. C. R. Biol. 331:215–225.
Shine, M. and Guruprasad, K. (2012) Impact of pre-sowing magnetic feld exposure of seeds to stationary
magnetic feld on growth, reactive oxygen species and photosynthesis of maize under feld conditions.
Acta Physiol Plant 34:255–265.
Shine, M., Guruprasad, K. and Anand, A. (2012). Effect of stationary magnetic feld strengths of 150 and 200
mT on reactive oxygen species production in soybean. Bioelectromagnetics 33:428–437.
Strauss, S.Y. and Zangerl, A.R. (2002) Plant–insect interactions in terrestrial ecosystems. In Herrera, C.M.
and Pellmyr, O. (eds), Plant–Animal Interactions: An Evolutionary Approach (pp. 77–106), Oxford:
Blackwell Science.
Suzuki, N., Rivero, R.M., Shulaev, V., Blumwald, E. and Mittler, R. (2014) Abiotic and biotic stress combinations. New Phytol 203:32–43.
Swarbrick, P.J., Schulze-Lefert, P. and Scholes, J.D. (2006) Metabolic consequences of susceptibility and
resistance in barley leaves challenged with powdery mildew. Plant Cell Environ 29:1061–1076.
Trebbi, G., Borghini, F., Lazzarato, L., Torrigiani, P., Calzoni, G.L. and Betti, L. (2007) Extremely low frequency weak magnetic felds enhance resistance of NN tobacco plants to tobacco mosaic virus and elicit
stress-related biochemical activities. Bioelectromagnetics 28:214–223.
Verma, S., Nizam, S. and Verma, P.K. (2013) Biotic and abiotic stress signalling in plants. Stress Signaling
Plants Genomics Proteomics Perspect 1:25–49.
Wang, W., Vinocur, B. and Altman, A. (2003) Plant responses to drought; salinity and extreme temperatures:
Towards genetic engineering for stress tolerance. Planta 218:1–14.
Yinan, Y., Yuanm, L., Yongqing, Y. and Chunyang, L. (2005) Effect of seed pretreatment by magnetic feld
on the sensitivity of cucumber (Cucumis sativus) seedlings to ultraviolet-B radiation. Environ Exper
Botany 54:286–294.
Ziska, L.H., Tomecek, M.B. and Gealy, D.R. (2010) Evaluation of competitive ability between cultivated and
red weedy rice as a function of recent and projected increases in atmospheric CO 2 . Agron J 102:118–123.
EMFs and Environmental Stresses in Plants
Radhakrishnan, R., Leelapriya, T., Ranjitha, B.D. and Kumari, D. (2012) Effects of pulsed magnetic feld
treatment of soybean seeds on calli growth, cell damage and biochemical changes under salt stress.
Bioelectromagnetics 33:670–681.
Rizk, M.A. (2003) Possible control of sugarbeet pathogen Sclerotium rolfsii Sacc. by ELF amplitude modulated waves. Pakistan J Biol Sci 6(1):80–85.
Ruzic, R. and Jerman, I. (2002) Weak magnetic feld decreases heat stress in cress seedlings. Electromagn
Biol Med 21:69–80.
Ruzic, R., Vodnik, D. and Jerman, I. (2000) Infuence of aluminum in biology effects of ELF magnetic feld
stimulation. Electro Magnetobiol 19(1):57–68.
Sen, A. and Alikamanoglu, S. (2016) Interactive effect of static magnetic feld and abiotic stressors on growth
and biochemical parameters of germinating wheat cultivars. IUFS J Biol 75(1):19–38.
Shao, H.B., Chu, L.Y., Jaleel, C.A. and Zhao, C.X. (2008) Water-defcit stress-induced anatomical changes in
higher plants. C. R. Biol. 331:215–225.
Shine, M. and Guruprasad, K. (2012) Impact of pre-sowing magnetic feld exposure of seeds to stationary
magnetic feld on growth, reactive oxygen species and photosynthesis of maize under feld conditions.
Acta Physiol Plant 34:255–265.
Shine, M., Guruprasad, K. and Anand, A. (2012). Effect of stationary magnetic feld strengths of 150 and 200
mT on reactive oxygen species production in soybean. Bioelectromagnetics 33:428–437.
Strauss, S.Y. and Zangerl, A.R. (2002) Plant–insect interactions in terrestrial ecosystems. In Herrera, C.M.
and Pellmyr, O. (eds), Plant–Animal Interactions: An Evolutionary Approach (pp. 77–106), Oxford:
Blackwell Science.
Suzuki, N., Rivero, R.M., Shulaev, V., Blumwald, E. and Mittler, R. (2014) Abiotic and biotic stress combinations. New Phytol 203:32–43.
Swarbrick, P.J., Schulze-Lefert, P. and Scholes, J.D. (2006) Metabolic consequences of susceptibility and
resistance in barley leaves challenged with powdery mildew. Plant Cell Environ 29:1061–1076.
Trebbi, G., Borghini, F., Lazzarato, L., Torrigiani, P., Calzoni, G.L. and Betti, L. (2007) Extremely low frequency weak magnetic felds enhance resistance of NN tobacco plants to tobacco mosaic virus and elicit
stress-related biochemical activities. Bioelectromagnetics 28:214–223.
Verma, S., Nizam, S. and Verma, P.K. (2013) Biotic and abiotic stress signalling in plants. Stress Signaling
Plants Genomics Proteomics Perspect 1:25–49.
Wang, W., Vinocur, B. and Altman, A. (2003) Plant responses to drought; salinity and extreme temperatures:
Towards genetic engineering for stress tolerance. Planta 218:1–14.
Yinan, Y., Yuanm, L., Yongqing, Y. and Chunyang, L. (2005) Effect of seed pretreatment by magnetic feld
on the sensitivity of cucumber (Cucumis sativus) seedlings to ultraviolet-B radiation. Environ Exper
Botany 54:286–294.
Ziska, L.H., Tomecek, M.B. and Gealy, D.R. (2010) Evaluation of competitive ability between cultivated and
red weedy rice as a function of recent and projected increases in atmospheric CO 2 . Agron J 102:118–123.
