- Ali, B. (2017). Practical applications of brassinosteroids in horticulture—some field perspectives. Scientia Horticulturae, 225, 15-21.
- Bajguz, A. & Tretyn, A. (2003). The chemical characteristic and distribution of brassinosteroids in plants. Phytochemistry, 62(7), 1027-1046.
- Dong, Y. J., Wang, W. W., Hu, G. Q., Chen, W. F., Zhuge, Y. P., Wang, Z. L. & He, M. R. (2017). Role of Exogenous 24-Epibrassinolide in Enhancing the Salt Tolerance of Wheat Seedlings. Journal of Soil Science and Plant Nutrition, 17(3), 554-569.
- Eleiwa, M. E., Bafeel, S. O. & Ibrahim, S. A. (2011). Influence of brassinosteroids on wheat plant (Triticum aestivum L.) production under salinity stress conditions I-growth parameters and photosynthetic pigments. Austria Journal of Basic Apply Science, 5(5), 58-65.
- El-Mashad, A. A. A. & Mohamed, H. I. (2012). Brassinolide alleviates salt stress and increases antioxidant activity of cowpea plants (Vigna sinensis). Protoplasma, 249(3), 625-635.
- Eshghi, S. Moharami, S. & Jamali, B. (2017). Effect of salicylic acid on growth, yield and fruit quality of strawberry cv. ʻParosʼ under salinity conditions. Greenhouse Culture Science and Technology, Isfahan University of Technology, 7(28), 163-173. (in Farsi)
- Fariduddin, Q., Ahmed, M., Mir, B. A., Yusuf, M. & Khan, T. A. (2015). 24-Epibrassinolide mitigates the adverse effects of manganese induced toxicity through improved antioxidant system and photosynthetic attributes in Brassica juncea. Environmental Science and Pollution Research, 22(15), 11349-11359.
- Fariduddin, Q., Yusuf, M., Hayat, S. & Ahmad, A. (2009). Effect of 28-homobrassinolide on antioxidant capacity and photosynthesis in Brassica juncea plants exposed to different levels of copper. Environmental and Experimental Botany, 66(3), 418-424.
- Feizi, M., Hajabassi, M. A. & Mostafazadeh-Fard, B. (2010). Saline irrigation water management strategies for better yield of safflower (Carthamus tinctorius L.) in an arid region. Astralian Journal of Crop Science, 4(6), 408-414.
- Gomes, M. D. M. A., Campostrini, E., Leal, N. R., Viana, A. P., Ferraz, T. M., do Nascimento Siqueira, L. & Zullo, M. A. T. (2006). Brassinosteroid analogue effects on the yield of yellow passion fruit plants (Passiflora edulis). Scientia Horticulturae, 110(3), 235-240.
- Jamalian, S., Tehranifar, A. Tafazoli, E. Eshghi, S. & Davarynejad, Gh.H. (2008). Paclobutrazol application ameliorates the negative effect of salt stress on reproductive growth, yield, and fruit quality of strawberry plants. Horticulture, Environment, and Biotechnology, 49(4), 1-6.
- Jamali, B., Eshghi, S. & Kholdebarin, B. (2014). Response of strawberry 'Selva' plants on foliar application of sodium nitroprusside (nitric oxide donor) under saline conditions. Journal of Horticultural Research, 22 (2), 139-150.
- Karlidag, H., Yildirim, E. & Turan, M. (2011). Role of 24-epibrassinolide in mitigating the adverse effects of salt stress on stomatal conductance, membrane permeability, and leaf water content, ionic composition in salt stressed strawberry (Fragaria× ananassa). Scientia Horticulturae, 130(1), 133-140.
- Kaya, C., H. Kirnak, D. Higgs & Saltati, K. (2002). Supplementary calcium enhances plant growth and fruit yield in strawberry cultivars grown at high (NaCl) salinity. Scientia Horticulturae, 93(1), 65-74.
- Keutgen, A. J. & Pawelzik, E. (2009). Impacts of NaCl stress on plant growth and mineral nutrient assimilation in two cultivars of strawberry. Environmental and experimental botany, 65(2), 170-176.
- Keutgen, A. & Pawelzik, E. (2007). Modifications of taste-relevant compounds in strawberry fruit under NaCl salinity. Food Chemistry, 105(4), 1487-1494.
- Mohammadrezakhani, S., Pakkish, Z. & Rafeii, S. (2016). Role of brassinosteroid on qualitative characteristics improvement of strawberry fruit cv. ʻParosʼ. Journal of Horticulture Science, 30(2), 316-326. (in Farsi)
- Ogweno, J. O., Song, X. S., Shi, K., Hu, W. H., Mao, W. H., Zhou, Y. H. & Nogués, S. (2008). Brassinosteroids alleviate heat-induced inhibition of photosynthesis by increasing carboxylation efficiency and enhancing antioxidant systems in Lycopersicon esculentum. Journal of Plant Growth Regulation, 27(1), 49-57.
- Orsini, F., Alnayef, M., Bona, S., Maggio, A. & Gianquinto, G. (2012). Low stomatal density and reduced transpiration facilitate strawberry adaptation to salinity. Environmental and Experimental Botany, 81, 1-10.
- Pereira-Netto, A. B., Cruz-Silva, C. T. A., Schaefer, S., Ramírez, J. A. & Galagovsky, L. R. (2006). Brassinosteroid-stimulated branch elongation in the marubakaido apple rootstock. Trees, 20(3), 286-291.
- Roghabadi, A. R. & Pakkish, Z. (2014). Role of brassinosteroid on yield, fruit quality and postharvest storage of ‘Tak Danehe Mashhad’ sweet cherry (Prunus avium L.). Agricultural Communications, 2(4), 49-56.
- Saadati, S. & Moallemi, N. (2011). A study of the effect of zinc foliar application on growth and yield of strawberry plant under saline conditions. Iranian Journal of Horticultural Science, 42(3), 267-275. (in Farsi)
- Saied, A. S., Keutgen, A. J. & Noga, G. (2005). The influence of NaCl salinity on growth, yield and fruit quality of strawberry cvs. ‘Elsanta’and ‘Korona’. Scientia Horticulturae, 103(3), 289-303.
- Samira, I. M. H., Bouthaina, D. M., Samia, B. M. G. & Mounir, D. (2012). 24-Epibrassinolide ameliorates the adverse effect of salt stress (NaCl) on pepper (Capsicum annuum L.). Journal of Stress Physiology & Biochemistry, 8(1), 229-238.
- Sun, Y., Niu, G., Wallace, R., Masabni, J. & Gu, M. (2015). Relative salt tolerance of seven strawberry cultivars. Horticulturae, 1(1), 27-43.
- Vardhini, B. V., Anuradha, S. & Rao, S. S. R. (2006). Brassinosteroids-New class of plant hormone with potential to improve crop productivity. Indian Journal of Plant Physiology, 11(1), 1-9.
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