Does exogenous application of kinetin and spermine mitigate the effect of seawater on yield attributes and biochemical aspects of grains?

Автор: Aldesuquy Heshmat S, Baka Zakaria A., Mickky Bardees M.

Журнал: Журнал стресс-физиологии и биохимии @jspb

Статья в выпуске: 2 т.9, 2013 года.

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A pot experiment was conducted to evaluate the effect of grain presoaking in kinetin (0.1 mM), spermine (0.3 mM) and their interaction on yield components and biochemical aspects of yielded grains of wheat plants irrigated with 25% seawater. Seawater induced marked reduction in biochemical aspects of yielded grains especially carbohydrates content, nitrogenous constituents, total protein and nucleic acids contents as well as proline and organic acids (citric and keto acids) contents. Conversely, seawater stress increased phosphorus and ions (Na +, K + and Cl -) contents. Application of kinetin or spermine appeared to mitigate the effect of seawater stress on wheat yield and the biochemical aspects of yielded grains. The effect was more pronounced with kinetin + spermine treatment.

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Kinetin, wheat, seawater stress, spermine, yield

Короткий адрес: https://sciup.org/14323739

IDR: 14323739

Список литературы Does exogenous application of kinetin and spermine mitigate the effect of seawater on yield attributes and biochemical aspects of grains?

  • Abdullah, Z., Khan, M.A. and Flowers, T.Z. (2001) Causes of sterility in seed set of rice under salinity stress. J.Agron. and Crop Sci., 167: 25-32.
  • Ahmad, A.H.H., Harb, E.M., Higazy, M.A. and Morgan, S.H. (2008) Effect of silicon and boron foliar applications on wheat plants grown under saline soil conditions. Inter. J. Agric. Res., 3: 1-26.
  • Alcázar, R., Marco, F., Cuevas, J.C., Patron, M., Ferrando, A., Carrasco, P., Tiburcio, A.F. and Altabella, T. (2006) Involvement of polyamines in plant response to abiotic stress. Biotechnol. Letters, 28: 1867-1876.
  • Aldesuquy, H.S., Ibrahim,. A.H. (2001) Water relations, abscisic acid and yield of wheat plants in relation to the interactive effect of seawater and growth bioregulators. J. Agron. and Crop Sci., 187: 97-104.
  • Aldesuquy, H.S., Abo-Hamed, S.A., Abbas, M.A., Elhakem, A.H. (2009) Effect of glycine betaine and salicylic acid on growth and productivity of droughted wheat cultivars: 1-Osmolytes in relation to osmotic adjustment and grain yield. J. Environ. Sci. Mans. Univ., 37: 13-33.
  • Aldesuquy, H.S., Haroun, S.A., Abo-Hamed, S.A. and El-Saied, AA A.A. (2005) Ameliorating effect of kinetin on pigments, photosynthetic characteristics, carbohydrate contents and productivity of cadmium treated Sorghum bicolor plants. Acta. Bot. Hung., 46: 1-21.
  • Angrish, R., Kumar, B. and Datta, K.S. (2001). Effect of gibberellic acid and kinetin on nitrogen content and nitrate reductase activity in wheat under saline conditions. Indian J. Plant Physiol., 6: 172-177.
  • Barker, J., Mapson, L.W. (1964) Studies on the respiratory and carbohydrate metabolism of plant tissues. J. Exp. Bot.,15: 272-283.
  • Beadle, C.L. (1993) Growth analysis. In: Photosynthesis and production in a changing environment. A field and laboratory manual, eds. DC Hall, JMO Scurlock, H R Bolhar -Nordenkampf, R C Leegod, S P Long, Chapman and Hall, London, 36-46.
  • Bradford, M.M. (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein dye-binding. Analytical Biochem., 72: 248-251.
  • Chapman, H.D. and Pratt, P.F. (1978) Methods of analysis for soils, plants and waters. Univ. California, Div. Agric. Sci. Priced pud. 3034.
  • Chinbal, A.C., Rees, M.W. and Williams, E.F. (1943) The total nitrogen content of egg albumin and other proteins. Biochem. J., 37: 354-357.
  • Davies, P.J. (1995) Plant Hormones: Physiology and Biochemistry and Biology P. 159Kluwer Academic Publishers, London.
  • Delory, M. (1949) Colorimetric estimation of ammonia. In: Inorganic chemistry. H.J. Vogel, ed, Longman, London, 126-132.
  • Dixit, P, Rodriguez, D.D. and Chen, D. (2004) Spatial pattern of the effect of soil salinity on crop physiological parameters, soil water content and yield of wheat. 3rd Australian New Zealand Soils Conference, 5-9 December 2004, University of Sydney, Australia.
  • Ehdaie, B. and Waines, G. (1993) Variation in water use efficiency and its components in wheat: Ι. Well-watered pot experiment. Crop Sci., 33: 294-299.
  • El-Bassiouny, H.M., Mostafa, H.A., El-Khawas, S.A., Hassanein, R.A., Khalil, S.I. and Abd El-Monem, A.A. (2008) Physiological responses of wheat plant to foliar treatments with arginine or putrescine. Aust. J. Basic and Appl. Sci., 2: 1390-1403.
  • Elhakem, A.H. (2008) Control of growth and productivity of droughted wheat cultivars by glycine betaine and salicylic acid. Ph D Thesis, Fac Sci Mans Univ Egypt.
  • Farida, M.S., Sakhabutdinova, A.R., Bezrukova, M.V., Fatkhutdinova, R.A. and Fatkhutdinova, D.R. (2003) Changes in the hormonal status of wheat seedlings induced by salicylic acid and salinity. Plant Sci., 164: 317-322.
  • Feteris, A.W. (1965) A serum glucose method without protein precipitation. American J. Medical Technol., 31: 17-21.
  • Friedemann, T.E. and Haugen, G.E. (1943) Pyruvic acid. ΙΙ. The determination of keto acids in blood and urine. J. Biol. Chem, 147: 415-442.
  • Handel, E.V. (1968) Direct microdeterminations of sucrose. Analytical Biochem, 22: 280-283.
  • Hansen, E.M. and Munns, D.N. (1988) Effect of CaSO4 and NaCl on mineral content of Leucaena leucocephala. Plant and Soil, 107: 101-105.
  • Hasamuzzaman, M., Fujita, M., Islam, M.N., Ahamed, K.U. and Nahar, K. (2009) Performance of four irrigated rice varieties under different levels of salinity stress. Inter. J. Integrative.Biol., 6: 85-90.
  • Humphries, E.C. (1956) Mineral components and ash analysis. In:Modern Method of Plant Analysis,vol.1, K Pesch and MV Tracey, Ed, Springer -Verlag Berlin, 468.
  • Husain, S., Munns, R A., Condon, G. (2003) Effect of sodium exclusion trait on chlorophyll retention and growth of durum wheat in saline soil. Aust. J.Agric. Res., 54: 589-597.
  • Hussein, M.M., EL-Gereadly, N.H.M., EL-Desuki, M. (2006) Role of putrescine in resistance to salinity of pea plants (Pisum sativum L.). J.Appl. Sci. Res., 2: 598-604.
  • Iqbal, M., Ashraf, M. and Jamil, A. (2006) Seed enhancement with cytokinins: Changes in growth and grain yield in salt-stressed wheat plants. Plant Growth Reg., 50: 29-39.
  • Islam, M.Z., Baset-Mia, M.A., Islam, M.R. and Akter, A. (2007) Effect of different saline levels on growth and yield attributes of mutant rice. J. Soil and Nat., 1: 18-22.
  • Kasinathan, V. and Wingler, A. (2004) Effect of reduced arginine decarboxylase activity on salt tolerance and on polyamine formation during salt stress in Arabidopsis thaliana. Physiol. Plant., 121: 101-107.
  • Khozaei, M., Soleimani, A., Shirani, A.H., Najafi, P. and Feizi, M. (2006) Effect of cropping methods and salinity stress on wheat agronomic characteristics. Pakistan J. Biol. Sci., 9: 2667-2671.
  • Kuiper, D., Schuit, J. and Kuiper, P.J.C. (1990) Actual cytokinins concentrations in plant tissue as an indicator for salt resistance in cereals. Plant and Soil, 123: 243-250.
  • Kuttner, T. and Lichtenstein, L. (1932) Micro-colorimetric studies: III. Estimation of organically bound phosphorus. A system of analysis of phosphorus compounds in blood. J. Biol. Chem., 95: 661-670.
  • Liu, J.H., Nada, K., Honda, C., Kitashiba, H., Wen, X.P., Pang, X.M. and Moriguchi, T. (2006) Polyamine biosynthesis of apple callus under salt stress: Importance of the arginine decarboxylase pathway in stress response. J. Exp. Bot., 57: 2589-2599.
  • Munns, R. (2002) Comparative physiology of salt and water stress. Plant and Cell Physiol., 25: 239-250.
  • Munns, R., James, R.A. and Läuchli, A. (2006) Approaches to increasing the salt tolerance of wheat and other cereals. J. Exp. Bot., 57: 1025-1043.
  • Muting, D. and Kaiser, E. (1963) Spectrophotometric method of determination of α-amino-N in biological material by means of the ninhydrin reaction. Hoppe Seylers Z. Physiol. Chem., 332: 276-289.
  • Nesiem, M.R.A. and Ghallab, A.M. (1999) Interactive effects of ABA and salinity on growth and yield of two wheat cultivars (Triticum aestivum). Proceedings of Sixth Egyptian Botanical Conference, Nov. 24-26, Cairo Univ, Giza, 133-154.
  • Ouda, S.A (2006) Predicting the effect of water and salinity stresses on wheat yield and water needs. J. Appl. Sci. Res., 2: 746-750.
  • Pirie, N.W. (1955) Proteins. In: Modern methods of plant analysis. (K Peack and M V Tracey, eds, IV, 23, Springer Verlage, Berlin.
  • Ray, S. and Choudhuri, M.A (1980) Regulation of flag leaf senescence in rice by nutrients and its impact on yield. RISO., 29: 9-14.
  • Reggiani, R., Bozo, S. and Bertani, A. (1994) Changes in polyamine metabolism in seedlings of three wheat (Triticum aestivum L.) cultivars differing in salt sensitivity. Plant Sci., 102: 121-126.
  • Rezzoug, W., Gabrielle, B., Suleiman, A. and Benabdeli, K. (2008) Application and evaluation of the DSSAT-wheat in the Tiaret region of Algeria. African J. Agric.Res., 3: 284-296.
  • Shah, S.H. (2004) Morphophysiological response of black cumin (Nigella sativa) to nitrogen, gibberellic acid and kinetin application. PhD Thesis, Aligarh Muslim University, Aligarh, India.
  • Sharma, S.K. (1995) Studies on growth, water relations and distribution of Na+, K+ and other ions in wheat under short term exposure to salinity. Indian J.Plant Physiol., 38: 233-235.
  • Singh, A.K. and Dubey, R.S. (1995) Changes in chlorophyll a and b contents and activities of photosystems 1 and 2 in rice seedlings induced by NaCl. Photosynthetica, 31: 489-499.
  • Snedecor, G.W., Cochran, W.G. (1976) Statistical Methods. 6th Ed. Oxoford IBH Publishing Co. New. Delhi.
  • Snell, F.D, Snell, C.T (1949) Colorimetric methods of analysis. Volume ΙΙ. New York, Van Nostrand.
  • Snell, F.D. and Snell, C.T. (1954) Colorimetric methods of analysis. Volume IV. New York. Van Nostrand.
  • Stanhill, G. (1987) Water use efficiency. Advances in Agron., 39: 53-85.
  • Suleiman, S., Wilson, C. and Grieve, C.M. (2002) Effect of salinity and exogenously applied polyamines on growth and ion relations in spinach. J. Plant Nutrition, 25: 2705-2717.
  • Thayermanavan, V. and Sadasivam, S. (1984) Qual Plant Foods Hum Nutr., 34, 53-257. Quoted from Biochemical Methods. S Sadasivam and A Manickam, eds 2nd ed, 11-12. New ag. Inter. Limit. Publ. New Delhi, India.
  • Verma, S. and Mishra, S.N. (2005) Putrescine alleviation of growth in salt stressed Brassica juncea by inducing antioxidative defense system. Plant Physiol., 162: 669-677.
  • Yemm E.W. and Willis, A.J. (1954) The estimation of carbohydrates by anthrone. Biochem. J., 57: 508-514.
  • Yemm, E.W. and Willis, A.J. (1956) The respiration of barely plants. IX. The metabolism of roots during the assimilation of nitrogen. New Phytol., 55: 229-252.
  • Younis, M.E., El-Shahaby, O.A., Nemat Alla, M.M. and El-Bastawisy, Z.M. (2003) Kinetin alleviates the influence of waterlogging and salinity on growth and affects the production of plant growth regulators in Vigna sinensis and Zea mays. Agron., 23: 277-285.
  • Zeid, I.M. (2004) Response of bean (Phaseolus vulgaris) to exogenous putrescine treatment under salinity stress. Pakistan J. Biol. Sci., 7: 219-225.
  • Zeng, L. and Shannon, M.C. (2000) Effects of salinity on grain yield and yield components of rice at different seeding densities. Agron, 92: 418-442.
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