Assessment of Salicylic Acid Application in Enhancing Quantitative and Qualitative Improvement of Wheat (Tiriticum aestivum L.) under End-Season Moisture Stress Conditions
محورهای موضوعی : Journal of Crop Nutrition ScienceTayeb Sakinejad 1 , Nilofar Maheri 2 , Adel Modhej 3 , Mani Mojadam 4 , Reza Dadnia 5
1 - Assistant Professor, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
2 - PhD. Student, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
3 - Associate Professor, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
4 - Associate Professor, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
5 - Assistant Professor, Department of Agronomy, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.
کلید واژه: Chlorophyll, Growth regulator, Protein, Proline, Gluten,
چکیده مقاله :
BACKGROUND: In drought stress conditions, the use of plant growth regulators such as salicylic acid can be considered as a strategy to mitigate the adverse effects of drought stress on plants. OBJECTIVES: This study aims to investigate the biochemical effect of growth regulator on the quantitative and qualitative yield of two wheat varieties, bread and rainfed, in Khuzestan province under end-of-season drought stress conditions. METHODS: Current research was done via factorial experiment according complete randomized block design with three replications in the greenhouse of Islamic Azad University, Ahvaz branch, in 2018. The treatment included two levels of salicylic acid [control (zero application) and 1 mM foliar spray], two irrigation regimes [watering until the end of the season and cessation of watering at the seed filling stage (Zadox stage 69)]; and two drought-resistant wheat varieties: Chamran 2 and Karkheh. RESULT: The results showed that end-season drought stress significantly affected the studied traits. The cessation of irrigation at the seed filling stage led to a significant increase in catalase, proline, protein, remobilization, and a decrease in chlorophyll index and stomatal conductance. However, the application of salicylic acid regulated these traits and positively influenced both the quantity (seed yield) and quality (gluten) of the seed, increasing them by 7.30% and 8.05%, respectively. CONCLUSION: The findings of this study suggest that salicylic acid application can mitigate the adverse effects of drought stress and enhance growth and yield under favorable conditions while reducing decline under stress conditions. Therefore, the use of salicylic acid as a growth regulator is recommended in the Chamran 2 variety.
BACKGROUND: In drought stress conditions, the use of plant growth regulators such as salicylic acid can be considered as a strategy to mitigate the adverse effects of drought stress on plants. OBJECTIVES: This study aims to investigate the biochemical effect of growth regulator on the quantitative and qualitative yield of two wheat varieties, bread and rainfed, in Khuzestan province under end-of-season drought stress conditions. METHODS: Current research was done via factorial experiment according complete randomized block design with three replications in the greenhouse of Islamic Azad University, Ahvaz branch, in 2018. The treatment included two levels of salicylic acid [control (zero application) and 1 mM foliar spray], two irrigation regimes [watering until the end of the season and cessation of watering at the seed filling stage (Zadox stage 69)]; and two drought-resistant wheat varieties: Chamran 2 and Karkheh. RESULT: The results showed that end-season drought stress significantly affected the studied traits. The cessation of irrigation at the seed filling stage led to a significant increase in catalase, proline, protein, remobilization, and a decrease in chlorophyll index and stomatal conductance. However, the application of salicylic acid regulated these traits and positively influenced both the quantity (seed yield) and quality (gluten) of the seed, increasing them by 7.30% and 8.05%, respectively. CONCLUSION: The findings of this study suggest that salicylic acid application can mitigate the adverse effects of drought stress and enhance growth and yield under favorable conditions while reducing decline under stress conditions. Therefore, the use of salicylic acid as a growth regulator is recommended in the Chamran 2 variety.
Agarwal, S. K. R., G. C. Sairam, T. Srivastava, C. R. Aruna. and Meena, R. 2005. Role of ABA, salicylic acid, calcium and hydrogen peroxide on antioxidant enzyme induction in wheat seedlings. Plant Sci. 169: 559-570.
Anjum, S. A., L. C. Wang, M. Farooq, M. Hussain, L. L. Xue. and C. M. Zou. 2011. Brassinolide application improves the drought tolerance in maize through modulation of en-zymatic antioxidants and leaf gas exchange. J. Agron. Crop Sci 197: 177-185.
Azmat, A., H. Yasmin, M. N. Hassan, A. Nosheen, R. Naz, M. Sajjad. and M. N. Akhtar. 2020. Co-application of bio-fertilizer and salicylic acid improves growth, photosynthetic pig-ments and stress tolerance in wheat under drought stress. Peer J. (Plant Biol.). 2-23.
Bates, L. S., R. P. Waldren. and I. D. Teare. 1973. Rapid determination of free proline for water-stress studies. Plant and Soil. 39(1): 205-207.
Behdad, M., F. Paknejad, A. M. Mahdavi Damghani, S. Vazan. and M. Moarrefi. 2022. Effects of drought stress on agronomical traits of wheat (Triticum aestivum L.): A meta-analysis. Environmental Stresses in Crop Sci. 15(1): 53-65.
Boominathan, R. and P. M. Doran. 2002. Ni induced oxidative stress in roots of the Ni hy-peraccumulator, Alyssum bertolonii. New Phytologist. 156: 205-215.
Charlang Badil, F., Kh. Azizi, H. R. Eisvand, A. H. Nasrollahi. and A. Ismaili. 2023. Ef-fect of fertilizer nutrition and salicylic acid on yield and some biochemical traits of wheat un-der drought stress. Crop Sci. Res. in Arid Region. 5(1)9: 253-270.
Daniel, C. and E. Triboi. 2008. Changes in wheat protein aggregation during seed develop-ment: effects of temperature and water stress. European. J. Agron. 16: 1-12.
Enteshari, Sh. and T. Jafari. 2013. The effects of methyl jasmonate and salinity on germina-tion and seedling growth in (Ocimum basilicum L.) stress. Iranian J. Plant Physiol. 3: 749-756.
FAO. 2020. FAOSTAT. Statistical Databases. Food and Agriculture Organization of the United Nations. http:/ www.fao.org.
Gudarzian, M., S. Mansourifar. and M. Saidi. 2018. Investigating some physiological traits of different air hybrids of corn under drought stress conditions in vegetative and reproductive periods, 12th Congress of Agricultural Sciences and Plant Breeding of Iran. Islamic Azad University, Karaj branch. https://doi.org/10.7717/peerj.9960
Jiriaie, M, E. Fateh. and A. Ayenehband. 2014. Evaluation of mycorrhiza and Azospirillum effect on some characteristics of Wheat cultivars in establishment stages. Electronic J. Crop Prod. 7(1):45-62.
Karimzadeh Soureshjani, H., Y, Emam. and S. Moori. 2012. Effect of post-anthesis drought stress on yield, yield components and canopy temperature of bread wheat cultivars. J. Plant Process and Function. (1): 38-56.
Khatiwada, A., I. Neupane, B. Sharma, N. Bhetwal. and B. Pandey. 2020. Effects of drought stress on yield and yield attributing characters of Wheat: A Review. Agri Ways. 8 (2): 115-121.
Madadi, E. and S. Fallah. 2018. The effect of Proline and Salicylic acid on the physiological parameters and yield of silage Maize under different moisture regimes. J. Crop Prod. Proc. 8(1): 15-28.
Maleki, A., A. H. Haghiabi. and H. R. Haghiabi. 2007. The effect of deficit irrigation on Doreadom Karkheh variety wheat yield in Khorramabad region. 7(4): 99-108.
Mehraban, A., A. Tobe, A. Gholipouri, E. Amiri, A. Ghafari. and M. Rostaii. 2019. The effects of drought stress on yield, yield components, and yield stability at different growth stages in Bread Wheat cultivar (Triticum aestivum L.). Polish J. Environmental Studies. 28(2): 739-746.
Mirzadeh, H. A. and Y. Emam. 2007. Effects of drought stress conditions on leaf area in-dex, plant height, photosynthesis rate and stomatal conductance of four dryland wheat culti-vars. J. Crop Eco-Physiol. 2(2): 105-110.
Modhej, A., Y. Emam. and A. Aynehband. 2011. Effect of Nitrogen levels on source re-striction and the pattern of assimilate redistribution to seeds in Wheat genotypes under post-anthesis heat stress conditions. Iranian J. Field Crops Res. 9(3): 23: 474-485.
Mollasadeghi, V. and A. Dadbakhsh. 2011. Evaluation of some yield components in wheat genotypes under the influence of drought stress after flowering. Aust. J. Basic and Appl. Sci. 5: 1137-1142.
Mousavi Ouri, M., S. J. Godehkahriz, M. Modarresi, Gh. Permon, A. Ebadi. and M. A. Kohanmii. 2021. Effect plant growth regulator (salicylic acid and Jasmonic acid) on yield and components yield of Milk thistle (Silybum marianum L.) under heat stress conditions. 34(4): 1061-1075.
Mujtaba, M. M. J. and S. Al-Badrawi Alabdulla. 2021. Effects of foliar spraying of sali-cylic acid with tryptophan on yield and quality parameters in wheat. Plant Archives. 21(1): 854-857.
Nasehi, B. 2015. Study of physicochemical characteristics of wheat produced in Khuzestan province. Electronic J. Food Processing and Preservation. 7(2): 119-130.
Papakosta, D. K. and A. A. Gayianas. 1991. Nitrogen and dry matter accumulation, remo-bilization and losses for Mediterranean wheat during seed filling. Agronomy J. 83: 864-870.
Popova, L. P., L. T. Maslenkova, R. Y. Yordanova, A. P. Ivanova, A. P. Krantev, G. Szalai. and T. Janda. 2009. Exogenous treatment with salicylic acid attenuates cadmium toxicity in pea seedlings. Plant Physiol. Biochem. 47: 224-231.
Qaseem, M. F., R. Qureshi. and H. Shaheen. 2019. Effects of pre-anthesis drought, heat and their combination on the growth, yield and physiology of diverse Wheat (Triticum aes-tivum L.) genotypes varying in sensitivity to heat and drought stress. Scientific Reports. 9: 6955. https://doi.org/10.1038/s41598-019-43477-z.
Rivas-San Vicente, M. and J. Plasencia. 2011. Salicylic acid beyond defense: its role in plant growth and development. J. Exp. Bot. 62(10): 3321-38.
Sajedi, N. 2017. Evaluation of selenium and salicylic acid effect on physiological and qualita-tive characteristics of dry-land wheat cultivars. Iran Agri. Res. 36(2): 91-100.
Siadat, S. A., A. Modhej. and A. Esfahani. 2020. Cereal Crops. Agricultural Science and Natural Resources University of Khuzestan.
Vahabi, N., Y. Emam. and H. Pirasteh-Anosheh. 2017. Improving Wheat growth and yield using Chlormequat chloride, salicylic acid and Jasmonic acid under water stress. Iranian J. Field Crops Res. 15(1) 45: 124-135.
Wang, J., L. Song, X. Gong, J. Xu. and M. Li. 2020. Functions of Jasmonic acid in plant regulation and response to abiotic stress. Intl. J. Molecular Sci. 21(1446): 1-17.
Xu, Z. Z., Z. W. Yn. and D. Wang. 2006. Nitrogen translocation in wheat plants under soil water deficit. Plant and Soil. 280: 291-303.