Impact of Salinity Stress on Photochemical Efficiency of Photosystem II, Chlorophyll Content and Nutrient Elements of Nitere Bush (Nitraria schoberi L.) Plants
Subject Areas : Eco-physiologyAbolfaz Ranjbar-Fordoei 1 , Reza Dehghani-Bidgoli 2
1 - Department of Desert Studies, Faculty of Natural Resources, University of Kashan
2 - Department of Rangeland and Watershed Management.
Faculty of Natural Sciences, University of Kashan
Keywords:
Abstract :
Aghaleh, M., Niknam, V., Ebrahimzadeh, H. and Razavi, K., 2009. Salt stress effects on growth, pigments, proteins and lipid peroxidation in Salicornia persica and S. europaea. Biologia Plantarum, 53(2): 243-248. (In Persian).
Allakhverdiev, S. I., Sakamoto, A., Nishiyama, Y., Inaba, M. and Murata, N., 2000. Ionic and osmotic effects of NaCl-induced inactivation of Photosystems I and II in Synechococcus sp. Jour. Plant Physiol. Rockvillel, 23(3): 1047-1056.
Baker, N. R., 2008. Chlorophyll Fluorescence: A probe of photosynthesis in vivo. Ann. Rev. of Plant Physiol. Boca Raton, 59: 89-113.
Björkman, O. and Demmig, B., 1987. Photon yield of O2 evolution and chlorophyll fluorescence characteristics at 77 K among vascular plants of diverse origins. Planta, 170: 489–504.
Belkheiri, O. and Mulas, M., 2013. The Effects of salt stress on growth, water relations and ion accumulation in two halophyte Atriplex species. Environ. Jour. Exp. Bot., 86: 17- 28.
Ben Salem, H., Norman, H. C., Nefzaoui A., Mayberry, D.E., Pearce K.L. and Revel D.K., 2010. Potential use of old man salt bush (Atriplex nummularia Lindle.) in sheep and goat feeding. Small Ruminant Res., 91:13-28.
Bo Guan, J. Y., Xuehong, W., Xingyan, K. Q. L., Yuqin, F., Guangxuan, H. and Zhaohua, L., 2011. Physiological Responses of Halophyte Suaeda salsa to Water Table and Salt Stresses in Coastal Wetland of Yellow River Delta, Clean Soil, Air, Water, 39(12): 1029–1035.
Boursier, P. and Läuchli, A., 1990. Growth responses and mineral nutrient relations of salt-stressed sorghum. Crop Sci., 30: 1226–1233.
Christian, R., 2005. Interactive effects of salinity and irradiance on photoprotection in acclimated seedlings of two sympatric mangroves. Trees-Structure Funct., 19: 596–606.
Esia, S., Hussain, S., Geissler, N. and Koyro, H., 2012. Effect of NaCl salinity on water relations, photosynthesis and chemical composition of Quinoa (Chenopodium quinoa Willd.) as a potential cash crop halophyte. Australian Jour. Crop Sci., 6(2): 357-368.
Furdi, F., Velicevici, G., Petolescu, C. and Popescu S., 2013. The effect of salt stress on chlorophyll content in several Romanian tomato varieties. Jour. Hort. Forestry and Biotech, 17(1): 363- 367.
Genty, B., Briantais, J. M. and Baker, N. R., 1989. The relationships between the quantum yield of photosynthetic electron transport and quenching of chlorophyll fluorescence. Biochim. Biophys. Acta., 990: 87-92.
Hao, Z., Kelin, W., Hao, H., Xiaobin, Z., Tongqing, S. and Fuping, Z., 2011. Detecting Suaeda salsa chlorophyll fluorescence response to salinity stress by using hyperspectral reflectance. Acta Plant Physiol., 34: 581–588.
Hatamnia, R., Abbaspour, A., Darvishzadeh, R., Rahmani, F. and Heidari, R., 2013. Effect of salt stress on growth, ion content and photosynthesis of two oriental Tobacco cultivars. Int. Jour. Agri. and Crop Sci., 6(11): 757-761. (In Persian).
Hazem, M. Kalaji, Govivndjee, Karolina, B., Janusz, K., and Krystyna, Z., 2011. Effects of salt stress on photosystem 2 efficiency and CO2 assimilation of two Syrian barley landraces. Environ. Exp. Bot., 73: 6-72.
Hua-Xin, C., Wei-Jun, L., Sha-Zhou, A. and Hui-Yuan, G., 2004. Characterization of Photosystem II photochemistry and thermostability in salt treated Rumex leaves. Jour. Plant Physiol., 161: 257-264.
Johnson, C.M. and Ulrich, A., 1959. Analytical methods for use in plant tissue analysis. Calif. Agric. Exp. Sta. Bull., 766: 25-78.
Khan, M.A., 2003. NaCl-inhibited chlorophyll synthesis and associated changes in ethylene evolution and antioxidative enzyme activities in wheat. Biologia Plantarum, 47(3): 437-440.
Kirk, J. T., Allen, R. L., 1965. Dependence of chloroplast pigment synthesis on protein synthesis: Effect of actidione. Int. Biochem. Biophys. Res., 27: 523-530.
Lichtenthaler, H. K., 1987. Chlorophylls and carotenoids pigments of photosynthetic Biomembranes, In: Colowick, S.P., Kaplan, N.O. (ed.): Methods in Enzymology, 148: 350-382. Academic Press, San Diego – New York – Berkeley – Boston – London – Sydney – Tokyo – Toronto.
Li, H., Zhang, Y. and Zhang, P., 2006. The research overview of plants of the genus Nitraria. Jour. Agric. Sci., 27: 61-64.
Li, G., Wan, S. W., Zhou, J., Yang, Z. Y. and Qin, P., 2010. Leaf chlorophyll fluorescence, hyperspectral reflectance, pigments content, malondialdehyde and proline accumulation responses of castor bean (Ricinus communis L.) seedlings to salt stress levels. Ind. Crop Prod., 31: 13–19.
Maria, A. C. G., Marina, S. S., Maura, C. and Cristiane, F.T., 2011. Effect of salt stress on nutrient concentration, photosynthetic pigments, proline and foliar morphology of Salvinia auriculata. Acta Limn. Braz., 23(2): 164-176.
Meloni, D. A., Oliva, M. A., Martinez, C. A. and Cambraia, J., 2003. Photosynthesis and activity of superoxide dismutase, peroxidase and gluthatione reductase in cotton under salt stress. Environ. exp. Bot., 49: 69-76.
Mitra, A. and Banerjee, K., 2010, Pigments of Heritiera fomes seedlings under different salinity conditions: perspective sea level rise. Mesopot. Jour. Mar. Sci. 25(1): 1 - 10.
Mojiri, A. and Jalalian, A., 2011. Relationship between growth of Nitraria schoberi and some soil properties. Jour. Animal and Plant Sci., 21(2): 246-250. (In Persian).
Mojiri, A., Jalalian, A. and Honarjoo, N., 2011. Comparison between Keys to Soil Taxonomy and WRB to classification of soils in Segzi plain (Iran). Jour. Appl. Sci., 11(3): 579-593. (In Persian).
Naidoo, G.R. and Rughunanan, R., 1990. Salt tolerance in the succulent halophyte, Sarcocornia natalensis. Jour. Exp. Bot., 41: 497-502.
Naumann, J. C., Young, D. R. and Anderson, J. E., 2007. Linking leaf chlorophyll fluorescence properties to physiological responses for detection of salt and drought stress in coastal plant species. Physiol. Plant, 13: 422–433.
Netchaeva, N. T., Vasilevskaya, V. K. and Antonova, K.G., 1973. Life Forms of Plants of the Karakum Desert, pp. 243. Nauka, Moscow.
Osman, A. E., Bahhady, F., Hassan, N., Ghassali, F. and Al-Ibrahim, T., 2006. Livestock production and economic implications from augmenting degraded rangeland with Atriplex halimus and Salsola vermiculata in northwest Syria. Jour. Arid Environ., 65: 474–490.
Qiu, N., L. u, Q. and Lu, C., 2003. Photosynthesis, photosystem II efficiency and the xanthophylls cycle in the salt adapted halophyte Atriplex centralasiatica. New Phytol., 159: 479-486.
Rahdari, P., Tavakoli, S. and Hosseini, S. M., 2012. Studying of salinity stress effect on germination, proline, sugar, protein, lipid and chlorophyll content in Portulaca oleraceae leaves. Jour. Stress Physiol. Bioch., 8(1): 182-193. (In Persian).
Ramani, B., Reeck, T., Debez, A., Stelzer, R., Huchzermejer, B., Schmidt, A. and Papenbrock, J., 2006. Aster tripolium and Sesuvium portulacastrum, two halophytes, two strategies to survive in saline habitats. Plant Physiol. Biochem., 44: 395-408.
Ranjbarfordoei, A., Samson, R. and Van Damme, P., 2006. Chlorophyll fluorescence performance of sweet almond (Prunus dulcis) in response to salinity stress induced by NaCl. Photosynthetica, 44(4): 513-522.
Shannon, M. C., 1998. Adaptation of plants to salinity, Adv. Agron., 60: 75–119.
Sharma, P. K., and Hall, D. O., 1991. Interaction of salt stress and photoinhibition on photosynthesis in barley and sorghum. Jour. Plant Physiol. 38(5): 614-619.
Singh, A.K. and Dubey, R. S., 1995. Changes in chlorophyll a and b contents and activities of photosystems I and II in rice seedlings induced by NaCl. Photosynthetica 31: 489-499.
Stirbet, A. and Govindjee, 2011. On the relation between the Kautsky effect (chlorophyll a fluorescence induction) and Photosystem II: basics and applications. Jour. Photochem. Photobiol., 104: 236-257.
Thaiz, L. and Zeiger, E., 2009. Fisiologia Vegetal. 4th ed. Porto Alegre: Editora ARTMED. 848 pp.
Turan, M.A., Elkarim, A.H.A., Taban, N. and Taban, S., 2009. Effects of salt stress on growth, stomatal resistance, proline and chlorophyll concentrations in maize plant. Afr. Jour. Agric. Res., 4: 893–897.
Turkyilmaz, B., Aktas, L. Y. and Guven, A., 2011. Salinity induced differences in growth and nutrient accumulation in five barley cultivars. Turk Jour. Field Crops, 16(1): 84-92.
Vladimir, I., Pyankov, Clanton C., Black, J. R., Elena, G., Artyusheva, Elena V. Voznesenskaya, Maurice, S.B. and Ku, Gerald, Edwards, E., 1999. Features of Photosynthesis in Haloxylon species of that are dominant plants in Central Asian Deserts. Plant Cell Physiol., 40(2): 125-134.
Wang, Li-Wen, Showalter, M. and Ungar, A., 1997. Effects of salinity on growth, ion content, and cell wall chemistry in Atriplex prosterata. American Jour. Botany., 8(9): 127-1255.
Wellburn, A. R., 1994. The spectral determination of chlorophylls a and b, as well as total carotenoids using various solvents with spectrophotometers of different resolution. Jour. Plant Physiol., 144: 307-313.
Wolf, B., 1982. A comprehensive system of leaf analyses and its use for diagnosing crop nutrient status. Commun, Soil Sci. Plant Analy., 13: 1035-1059.
Xu, X. M., Ye, H. C. and Li, G. F., 2000. Progress in research of plants tolerance to saline stress. Chines Jour. Appl. Environ. Biol., 6(4): 379-387.
Zhao, K. F., Fan, H. and Ungar, I. A., 2002. Survey of halophyte species in China. Plant Sci., 163: 491-498.
Zhu, J. K., 2002. Salt and drought stress signal transduction in plants. Annu. Rev. Plant Boil. 53: 247-273.
Zlatev, Z., 2009. Drought-induced changes in chlorophyll fluorescence of young wheat plants. Biotechnol. Biotechnol. EQ. 23: 38-441.