Effect of NaCl priming on seed germination of Tunisian fenugreek ( Trigonella foenum-graecum L.) under salinity conditions

Автор: Maher Souguir, Fraj Hassiba, Cherif Hannachi

Журнал: Журнал стресс-физиологии и биохимии @jspb

Статья в выпуске: 2 т.9, 2013 года.

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Salinity is one major problem of increasing production in crop growing areas throughout the world. The objective of this research was to evaluate the effect of NaCl priming on seed germination of Tunisian fenugreek ( Trigonella foenum-graecum L.) under salinity conditions. Seeds of fenugreek were primed with NaCl (4g/l) for 36 h in continuous 25°C. Experimental factors were included 2 priming treatments (NaCl and non-priming as control) and five salinity solution (4,6,8,10 and 12 gl -1). Results showed that seed priming increased final germination percentage, germination speed and radicle length over the non-primed treatment. At the lowest levels of salinity, there were no notable differences between primed and non-primed seeds, but with increasing salinity levels, primed seeds showed the better performance than non-primed seeds. These results indicated that NaCl priming significantly improved seed performance under salinity conditions.

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Fenugreek, nacl priming, salinity

Короткий адрес: https://sciup.org/14323755

IDR: 14323755

Список литературы Effect of NaCl priming on seed germination of Tunisian fenugreek ( Trigonella foenum-graecum L.) under salinity conditions

  • Almansouri M, Kinet JM, Lutts S (2001). Effect of salt and osmotic stresses on germination in durum wheat (Triticum durum Desf.). Plant and Soil, 231: 243-254.
  • Ashraf M (1994). Breeding for salinity tolerance in plants. Crit. Rev. Plant Sci. 13(1): 17-42.
  • Ashraf, M. and M.R. Foolad. (2005). Pre-sowing seed treatment -A shotgun approach to improve germination, growth and crop yield under saline and non-saline conditions. Advances in Agronomy 88: 223-271.
  • Barasa, S.M.A., M. Farooq and R. Tabassum, (2005). Physiological and biochemical aspects of seed vigor enhancement treatments in fine rice (Oryza sativa L.). Seed Science and Technology, 33: 623-628.
  • Basra, S.M.A., I. Afzal, A. Hameed and R.A. Rashid. (2005). Inducing salt tolerance in wheat by seed vigor enhancement techniques. International Journal of Agriculture and Biology 2(1): 173-179.
  • Bose, B. and T. Mishra. (1992). Response of wheat seed to presowing seed treatment with Mg(NO3)2. Ann. Agric. Res. 5: 11-16.
  • Botia P, Carvajal M, Cerda A, Martinez V. (1998). Response of eight Cucumis melo cultivars to salinity during germination and early vegetative growth. Agronomy, 18: 503-513.
  • Boursiac Y, Chen S, Luu DT, Sorieul M, Dries N, and Maurel C (2005).Early effects of salinity on water transport in Arabidopsis roots: molecular and cellular features of aquaporin expression. Plant Physiol, 139: 790-805.
  • Bradford, K.J., (1986). Manipulation of seed water relations via osmotic priming to improve germination under stress conditions. Hort Science, 21: 1105-1112.
  • Cano, E.A., M.C. Bolarin, F. Perez-Alfocea and M. Caro. (1991). Effect of NaCl priming on increased salt tolerance in tomato. Journal of Horticultural Science 66: 621-628.
  • Cayuela E., Perez-Alfocea F., Caro M. and Bolarin M.C. (1996). Priming of seeds with NaCl induces physiological changes in tomato plants grown under salt stress. Physiology Plant., 96: 231-236.
  • Cicek, N. and H. Cakirlar. (2002). The effect of salinity on some physiological parameters in two maize cultivars. Bulgarian J. Plant Physiol. 28: 66-74.
  • Demir, H. and K. Mavi, (2004). Seed priming of male sterile muskmelon (Cucumis melo L.) for low temperature germination. Seed Science and Technology, 23(4): 881-884
  • Drihem, K. and D.J. Pilbeam. (2002). Effects of salinity on accumulation of mineral nutrients in wheat grown with nitrate-nitrogen or mixed ammonium:nitrate-nitrogen. J. Plant Nut., 25: 2091-2113.
  • Ehsanfar, S., S.A. Modarres-Sanavy and R.Tavakkol-Afshari, (2006). Effects of osmopriming on seed germination of canola (Brassica napus L.) under salinity stress. Communications in agricultural and applied biological sciences, 71(2): 155-159.
  • Eidi, A., Eidi, M. and Sokhteh, M. (2007). Effect of fenugreek (Trigonella foenum-graecum L.) seeds on serum parameters in normal and streptozotocin-induced diabetic rats. Nutrition Research, 27: 728-733.
  • Esmaielpour, B., K. Ghassemi-Golezani, F.R. Khoei, V. Gregoorian, and M. Toorchi, (2006). The effect of NaCl priming on cucumber seedling growth under salinity stress. Journal of Food, Agriculture and Environment, 4(2): 347-349.
  • Farhoudi R, Sharifzadeh F, Poustini K, Makkizadeh MT, Kochakpor M (2007). The effects of NaCl priming on salt tolerance in canola(Brassica napus) seedlings grown under saline conditions. Seed Sci. Tech., 35: 754-759.
  • Farooq, M., S.M.A. Basra, B.A. Saleem, M. Nafees and S.A. Chishti. (2005). Enhancement of tomato seed germination and seedling vigour by osmopriming. Pak. J. Agric. Sci., 42(3-4): 36-41.
  • Foolad MR, Lin GY (1997). Genetic Potential for Salt Tolerance During Germination in Lycopersicon Species. Hort. Sci. 32: 296-300.
  • Gill, K. S. and O.S. Singh. (1985). Effect of salinity on carbohydrate metabolism during paddy (Oryzasativa L.) seed germination under salt stress condition. J. Exp. Biol. 23: 384-386.
  • Gill, P.K., Sharma, A.D., Singh, P. and Bhullar, S.S, (2003). Changes in germination, growth and soluble sugar contents of Sorghum bicolor (L.). Moench seeds under various abiotic stresses. Plant Growth Regulation, 40 (2), 157-162.
  • Hajlaoui H., Denden M., Bouslama M., (2007). Etude de la variabilité intraspécifique de tolérance au stress salin du pois chiche (Cicer arietinum L.) au stade germination. Tropicultura 25: 168-173.
  • Hopper NW, Overholt JR, Martin JR (1979). Effect of cultivar, temperature and seed size on the germination and emergence of soy beans (Glycine max (L.) Merr.). Ann. Bot. 44: 301-308.
  • Kathiresan, K., V. Kalyani and J.L. Gnanarethium. (1984). Effect of seed treatments on field emergence, early growth and some physiological processes of sunflower (Helianthus annuus L.). Field Crops Res. 9: 255-259.
  • Liu, Y., R.J. Bino, D. Van, W.J. Burg, S.P.C. Groot and H.W.M. Hilhorst. (1996). Effects of osmotic priming on dormancy and storability of tomato (Lycopersicon esculentum Mill.) seeds. Seed Science Research, 9: 49-55.
  • Marzougui N, Ferchichi A, Guasmi F, Beji M (2007). Morphological and chemical diversity among 38 Tunisian cultivars of Trigonella foenumgraecum L. J. Food Agric. Environ., 5: 245-250.
  • McDonald, M.B., (2000). Seed priming. In: Seed Technology and Biological Basis, Black, M and Bewley JD (Eds). Sheffield Academic Press. England. Chapter 9, pp 287-325.
  • Moosavi A, Tavakkol-Afshari R, Sharif-Zadeh F, Aynehband A (2009). Effect of seed priming on germination characteristics,polyphenoloxidase, and peroxidase activities of four amaranth cultivars. J. Food, Agr. Environ., 7(3&4): 353-358.
  • Moyer JR, Acharya SN, Mir Z, Doram RC (2003). Weed management in irrigated fenugreek grow for forage in rotation with other annual crops. Can. J. Plant Sci., 83: 181-188.
  • Neamatollahi, E., M. Bannayan, A. Souhani Darban and A. Ghanbari, (2009). Hydropriming and osmopriming effects on cumin (Cuminum Cyminum L.) seeds germination. World Academy of Science, Engineering and Technology, 57: 526-529.
  • Nonogaki H, Bassel, GW, and Bewley JD (2010). Germination-still a mystery. Plant Sci 179: 574-581.
  • Omami, E.N. (2005). Salt tolerance of amaranth as affected by seed priming. M.Sc. Thesis. University of Pretoria, South Africa.
  • Passam, H.C. and D. Kakouriotis. (1994). The effects of osmoconditioning on the germination, emergence and early plant growth of cucumber under saline conditions. Scientia Horticulturae 57: 233-240.
  • Petropoulos GA (2002). Fenugreek. In Petropoulos, G.A. (ed.). The genus Trigonella. Taylor and Francis, London and New York.
  • Pill, W.G., J.J. Fret and D.C. Morneau. (1991). Germination and seedling emergence of primed tomato and asparagus seeds under adverse conditions. HortScience 26: 1160-1162.
  • Prado, F., C. Boero, M. Gallardo, and J. González. (2000). Effect of germination, growth and soluble sugar content in Chenopodium quinoa Willd. seeds. Bot. Bull. Acad. Sinica, 41: 27-34.
  • Qureshi MI, Israr M, Abdin MZ, and Iqbal M, (2005) Responses of Artemisia annua L. to lead and salt-induced oxidative stress. Environment and Experimental Botany, 53: 185-193.
  • Rawat, J.S. and Banerjee, S.P, (1998). The influence of salinity on growth, biomass production and photosynthese of Eu. camaldulensis Dehnh et Dalbergia sissoo Roxb. Seedlings. Plant Soil 205, 163-169.
  • Sadeghzade AD, Kashi AK, Hassandokht MR, Amri A, Alizade K (2009). Assessment of drought tolerance in Iranian fenugreek landraces. Food, Agric. Environ., 7(3-4): 414-419.
  • Sharma AD, Thakur M, Rana M, Singh K (2004). Effect of Plant Growth Hormones and Abiotic Stresses on Germination, Growth and Phosphatase Activities in Sorghum bicolor (L.) Moench Seeds. Afr. J. Biotechnol., 3: 308-312.
  • Sivritepe, N., H.O. Sivritepe and A. Eris, (2003). The effects of NaCl priming on salt tolerance in melon seedlings grown under saline conditions. Scientia Horticulturaea, 97: 229-237.
  • Stofella, P.J., D.P. Lipucci, A. Pardossi and F. Toganoni. (1992). Seedling root morphology and shoot growth after seed priming or pre-emergence of bell pepper. Journal of the American Society for Horticultural Science 27: 214-215.
  • Welbaum, G.E., Z. Shen, M.O. Oluoch and L.W. Jett. (1998). The evolution and effects of priming vegetable seeds. Seed Technology 20: 209-235.
  • Zhu JK (2002). Salt and drought stress signal transduction in plants.Ann. Rev. Plant Biol. 53: 247-273.
  • Zid E, Grignon C (1991). Tests early selection for plant resistance to stress. Case of drought and salt stresses. In: Plant Breeding for Adaptation to Arid Environments. Ed AUPELF-UREF, John Libbey Eurotext, Paris, pp. 91-108.
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