Allakhverdiev SI, Sakamoto A, Nishiyama Y, Inaba M, Murata N ( 2000). Ionic and osmotic effects of NaCl-induced inactivation of photosystem I and II in Synechoccus spp. Plant Physiol 123, 1047–1056.
[11]
Arshi A, Abdin M, Iqbal M (2006). Effect of CaCl2 on growth performance, photosynthetic efficiency and nitrogen assimilation of Cichorium intybus L. grown under NaCl stress. Acta Physiologiae Plantarum 28(2), 137-147.
[12]
Badawi GH, Yamauchi Y, Shimada E, Sasaki R, Kawano N, Tanaka K, Tanaka K(2004). Enhanced tolerance to salt stress and water deficit by overexpressing superoxide dismutase in tobacco (Nicotiana tabacum)chloroplasts. Plant Sci. 166, 919-928.
[13]
Bonilla I, El-hamdaoui A, Bolanos L (2004). Boron and calcium increase Pisum sativum seed germination and seedling development under salt stress. Plant and Soil 267(1), 97-107.
[14]
Cramer GR (2002). Sodium-calcium interactions under salinity stress. In: L¨auchli, A., Luttge, U. (Eds.), Salinity. Environment-Plants-Molecules. Kluwer, Dordrecht, The Netherlands, pp. 205–227.
[15]
Hedden P, Graebe JE (1985). Inhibition of gibberellin biosynthesis by paclobutrazol in cell free homogenates of ucurbita maxima endosperm and Malus pumila Embryos. J Plant Growth Regul 4, 111–122.
[16]
Hepler PK (2005). Calcium: A Central Regulator of Plant Growth and Development. Plant Cell 17(8), 2142-2155.
[17]
Hirschi KD (2004). The calcium conundrum, both versatile nutrient and specific signal. Plant Physiol 136, 2438-2442.
[18]
Pandey AN, Thakrar NK (1997). Effect of chloride salinity on survival and growth of Prosopis chilensis seedlings. Trop Ecol 38, 145-148.
[19]
Rahman M, Kayani SA, Gul S (2000).Combined effects of temperature and salinity stress on corn cv. Sunahry, Pak J Biological Sci 9, 1459-1463.
[20]
Shabala SN, Shabala L, Van Volkenburgh E, Newman I (2005). Effect of divalent cations on ion fluxes and leaf photochemistry in salinised barley leaves. J. Exp. Bot. 56, 1369–1378.
[21]
Shirazi MU, Asif SM, Khanzada B, Khan MA. Moha mmol?L-1ad A (2001). Growth and ion accumulation in some wheat genotypes under NaCl stress. Pak J Biol Sci 4: 388-391
[22]
Tuna AL, Kaya C, Ashraf M, Altunlu H, Yokas I, Yagmur B (2007). The effects of calcium sulphate on growth, membrane stability and nutrient uptake of tomato plants grown under salt stress. Environ. Exp. Bot. 59, 173–178.
[23]
Tseng MJ, Liu CW, Yiu JC (2007). Enhanced tolerance to sulfur dioxide and salt stress of transgenic Chinese cabbage plants expressing both superoxide dismutase and catalase in chloroplasts. Plant Physiol Biochem 45, 822-833.
[24]
Wang Y, Wisniewski M, Meilan R, M Cui, Webb R, Fuchigami L (2005). Overexpression of cytosolic ascorbate peroxidase in tomato confers tolerance to chilling and salt stress. J Am Soc Hortic Sci 30, 167-173.