Assess Effect of Abscisic/Salicylic Acid Mixing Ratio Application at Different Growth Stages on Quantitative and Qualitative Traits of Cowpea (Vigna unguiculata L.) under Ahvaz Climatic Conditions
Subject Areas : Journal of Crop Nutrition ScienceSara Najarnasab 1 , Tayeb Sakinejad 2
1 - Msc. Graduated, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
2 - Assistant professor, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
Keywords:
Abstract :
Arfan, M., H. A. Athar. and M. Ashraf. 2007. Does exogenous application of salicylic acid through the rooting medium modulate growth and photosynthetic capacity in two differently adapted spring wheat cultivars under salt stress Plant Physiol. 164: 685-694.
Azarnia, M. 2011. The effects of priming chickpea seeds with gibberellin and abscisic acid on improving the physiological quality of chickpea seeds and seedlings in dry and irrigated farming conditions. Thesis on agriculture and plant breeding. Univ. Lorestan. Iran. (Abstract in English)
Bayatian, N., S. Eslami. and Z. Alizadeh. 2015. Investigating the effect of abscisic acid pre-treatment on the germination characteristics of Kosha variety pinto beans under drought stress conditions, the first scientific research congress for the development and promotion of agricultural sciences, natural resources and environment of Iran, Tehran, Association for the Development and Promotion of Basic Sciences and Technologies.
Bideshki, A. and M. Arvin. 2010. Effect of salicylic acid (SA) and drought stress on growth, bulb yield and allicin content of garlic (Allium sativum L.) in field. Plant Ecophysiol. 2: 73-79.
Bremer, M. L. and N. Cheikh. 1995. The role of hormones in photosynthetic partitioning and seed filling. In: Davies P.J. (eds.), Plant Hormones. Kluwer Academic Publishers, the Netherlands, pp. 649–670.
Davies, W. J. and J. Zhang. 1991. Root signals and the regulation of growth and development of plants in drying soil. Annual Review of Plant Physiol. Plant Molecular Biol. 42: 55-76.
El-Tayeb, M. A. 2005. Response of barley grains to the interactive effect of salinity and salicylic acid. Plant Growth Regulation. 45: 215-225.
Eradatmand Asli, D. and H. Mehrpanah. 2009. Cultivation of legumes and nitrogen Fixation. Islamic Azad University Publications, Saveh Branch. Iran.
Fahimi, H. 1997. Plant growth regulators. Tehran Univ. Press. 172p.
Farooq, M., S. M. A. Basra, H. Rehman. and B. A. Saleem. 2008. Seed priming enhances the performance of late sown wheat (Triticum aestivum L.) by improving the chilling tolerance. J. Agron. Crop Sci. 194: 55-60.
Grieve, C. M., S. M. Lesch, L. E. Francois. and E. V. Maas. 1992. Analysis of main-spike yield components in salt-stressed wheat. Crop Sci. 32: 697-703.
Hashemi, S. E., Y. Emam. and H. Pirasteh Anosheh. 2015. The effect of time and type of salicylic acid application on growth trend, yield and yield components of barley (Hordeum vulgare L.) under salinity tension conditions. Crop Physiol. J. 6(24): 5-18.
Hayat, Q., S. Hayat, M. Irfan. and A. Ahmad. 2010. Effect of exogenous salicylic acid under changing environment. Environmental Exp. Bot. 68: 14-25.
Jaillais, Y. and J. Chory. 2010. Unraveling the paradoxes of plant hormone signaling integration. Nature structural Molecular Biol. 17: 642-645.
Janda, T., G. Szalai, K. Rios-Gonzalez, O. Veisz. and E. Paldi. 2003. Comparative study of frost tolerance and antioxidant activity in cereals. Plant Sci. 164(2): 301-306.
Joseph, B., D. Jini. and S. Sujatha. 2010. Insight into the role of exogenoussalicylic acid on plants grown under salt environment. Asian J. Crop Sci. 2: 226-235.
Keikha, M., M. Noori. and A. Keshtehgar. 2017. Effect of salicylic acid and gibberellin on yield and yield components of Mungbean (Vigna radiata). Iranian J. Pulses Res. 7(2): 138-151.
Khan, N. A., S. Shabian, A. Masood, A. Nazar. and N. Iqbal. 2010. Application of salicylic acid increases contents of nutrients and antioxidative metabolism in mungbean and alleviates adverse effects of salinity stress. Intl. J. Plant Biol. 1: 1-8.
Khan, W., B. Prithiviraj. and D. Smith. 2003. Photosynthetic responses of corn and soybean to foliar application of salicylates. J. Plant Physiol. 160: 485-492.
Klessig, D. F., J. Durner, R. Noad, D. A. Navarre, D. Wendeh- enne, D. Kumar, J. M. Zhou, J. Shah, S. Zhang, P. Kachroo, Y. Trifa, D. Pontier, E. Lam. and H. Silva. 2000. Nitricoxide and salicylic acid signaling in plant defense. Proc. The National Academy Sci. USA. 97: 8849-8855.
Kothule, V. G., R. K. Bhalerao. and T. H. Rathod. 2003. Effect of growth regulators and yield attributes, yield and correlations coefficients in soybean. Annual Plant Physiol. 17: 140-142.
Krishna, S., K. Surinder, S. K. Thind. and K. Gurpreet. 2004. Interactive effects of phenolics and light intensity on vegetative parameters and yield in soybean (Glycine max L. Merrill). Environmental Ecol. 22: 390-394.
Kumar, P., D. Dube. and V. S. Chauhan. 1999. Effect of salicylic acid on growth, development and biochemical aspects of soybean (G. max L. Merrill). Indian J. Plant Physiol. 4: 327-330.
Lee, H., J. León. and I. Raskin. 1995. Biosynthesis and metabolism of salicylic acid. Proc. The Natl. Acad. Sci. USA. 92: 4076-4079.
Lenoble, M. E., W. G. Spollen. and R. E. Sharp. 2004. Maintenance of shoot growth by endogenous ABA: genetic assessment of involvement of ethylene suppression. J. Exp. Bot. 55: 237-254.
Linn, J. G. and N. P. Martin. 1999. Forage quality tests and interpretation. The College Agri. Food Environ. Sci. Univ. Minnesota Press. USA.
Moradi, P. 2016. Key plant products and common mechanisms utilized by plants in water deficit stress responses. Botanial Sci. 94: 1-15.
Pirasteh Anoosheh, H. and Y. Emam. 2012. Yield and yield component responses of bread and durum wheat to PGRs under drought stress conditions in field and greenhouse. Environmental Stresess in Crop Sci. 5(1)1: 1-17.
Pospisilova, J., M. Vagner, J. Malbeck, A. Travnickova. and P. Batkova. 2005. Interactions between abscisic acid and cytokinin during water stress and subsequent rehydration. Biologia Planta. 49: 533-540.
Raskin I. 1992. Role of salicylic acid in plants. Annual review of plant physiol. and Plant Mol. Biol. 43: 439-463.
Ruggiero, B., H. Koiwa, Y. Manabe, T. M. Quist, G. Inan, F. Saccardo, R. J. Joly, P. M. Hasegawa, R. A. Bressan. and A. Maggio. 2004. Uncoupling the effects of abscisic acid on plant growth and water relations. Analysis of sto1/nced3, an abscisic acid but salt stress-tolerant mutant in Arabidopsis. Plant Physiol. 136: 3134-3147.
Sadeghi, S., F. Shekari, R. Fotovat. and A. Zangani. 2010. The effect of priming with salicylic acid rapeseed vigor and seedling growth under water deficit conditions. J. Plant Biol. 2(6): 55-70.
Saeidi, M., F. Moradi, A. Ahmadi, K. Poostini. and G. Najafian. 2006. Effect of exogenous application of ABA and CK at different stage of grain development on physiological aspects of source and sink relationship in two bread wheat cultivars. Iranian J. Crop Sci. 8(3): 268-282.
Sajedi, N. A. and M. Norouzi. 2020. Effect of Salicylic acid and Selenium application at different growth stages on some physiological traits of chickpea under rainfed conditions. Iranian J. Pulses Res. 10(2)2: 36-48.
Sakhabutidnova A. R, D. R. Fatkhutdinova, M. V. Bezrukova. and F. M. Shakirova. 2003. Salicylic acid prevents the damage action of stress factors on wheat plants. Plant Physiol. Special Issue. (5): 314-319.
Salehi, M., R. Akbari. and M. B. Khorshidi. 2008. Effect yield and its components of red beans cultivars to the delay in sowing in Miyaneh Region. J. Sci. Natural Res. 43: 115-105.
Sedaghat, M. E. and Y. Emam. 2016. Effect of three growth regulators on grain Yield of Wheat cultivars under different moisture regimes. J. Crop Prod. Proc. 6(21): 15-33.
Shinozaki, K. and Y. K. Shinozaki. 2000. Molecular responses to dehydration and low temperature: differences and cross-talk between two stress signaling pathways. Curr. Opin. Plant Biol. 3: 217-223.
Shoaa, M. and H. R. Miri. 2012. Reduce detrimental effects of salt stress on morphophysiological traits of wheat by salicylic acid. J. Crop Prod. 5(1): 71-88.
Shuting, D., G. Rongqi, H. Changltao, W. Qunying. and W. Koogjun. 1997. Study photosynthesis properties and high yield potential after anthesis in Maize. Acta Agron. Sci. 23(3): 318-25.
Singh, G. 1980. Effect of growth regulators on podding and yield of mung bean (Vigna radiate L. Wilczek). Indian J. Plant Physiol. 23: 366-370.
Singh, B. and K. Usha. 2003. Salicylic acid induced physiological and biochemical changes in wheat seedlings under water stress. Plant Growth Regulation 39: 137-141.
Singh, P. K. and S. Gautam. 2013. Role of salicylic acid on physiological and biochemical mechanism of salinity stress tolerance in plants. Acta Physiologia Plantarum. 35: 2345-2353.
Summart, J., P. Thanonkeo, S. Panichajakul, P. Prathepha. and M. T. McManus. 2010. Effect of salt stress on growth, inorganic ion and proline accumulation in Thai aromatic rice, Khao Dawk Mali 105, callus culture. Afr. J. Biotech. 9:145-152.
Szalai, G., S. Horgosi, V. Soós, I. Majláth, E. Balázs. and T. Janda. 2011. Salicylic acid treatment of pea seeds induces its de novo synthesis. J. Plant Physiol. 168: 213-219.
Travaglia C., A. Cohen, H. Reinoso, C. Castillo. and R. Bottini. 2007. Exogenous abscisic acid increases carbohydrate accumulation and redistribution to the grains in wheat grown under field conditions of soil water restriction. J. Plant Growth Regulation. 26: 285-289.
Vicente‚ M. R. and J. Plasencia. 2011. Salicylic acid beyond defense: its role in plant growth and development. J. Exp. Bot. 62: 1-18.
Wang, L., Zh. Wang, Y. Xu, S. H. Joo, S. K. Kim, Zh. Xue, Zh. Xu, Zh. Wang. and K. Chong. 2009. OsGSR1 is involved in crosstalk between gibberellins and brassino steroids in rice. Plant J. 57(3): 498-510.
Xie, Z., D. Jiang, T. Dai. and W. Cao. 2004. Effect of ABA and cytokinin on leaf photosynthesis and grain protein accumulation in wheat ears cultured in vitro. Plant Growth Reg. 44: 25-32.
Yang, J., J. Zhang, Z. Wang. and Q. Zhu. 2003. Hormones in the grains in relation to sink strength and post anthesis development of spikelet’s in rice. Plant Growth Regulation. 41: 185-195.
Yang, J., J. Zhang, Z. Wang, Q. Zhu. and L. Liu. 2002. Abscisic acid and cytokinins in the root exudates and leaves and their relationship to senescence and remobilization of carbon reserves in rice subjected to water stress at grain filling. Planta. 215: 645-652.
Zaki‚ R. N. and T. E. Radwan. 2011. Improving wheat grain yield and its quality under salinity conditions at a newly reclaimed soil by using different organic sources as soil or foliar applications. J. Appl. Sci. Res. 7: 42-55.
Zhang, X., T. Wang. and C. Li. 2005. Different responses of two contrasting wheat genotypes to abscisic acid application. Biologia Planta. 49: 613-616.
Zhou, X., A. Mackeuzie, C. Madramootoo. and D. Smith. 1999. Effect of injected growth regulators with or without sucrose on grain production, biomass and photosynthetic activity of field grown corn plants. J. Agron. Crop Sci. 183: 103-10.