Document Type : Original Article

Authors

1 Department of Agronomy, Shahr-e-Qods Branch, Islamic Azad University, Tehran, Iran

2 Seed and Plant Improvement Institute, Agricultural Research, Education and Extension Organization, Karaj, Iran

Abstract

Introduction
The importance of oil crops such as safflower has increased in recent years. Due to that safflower, can resistance in drought condition without reduction in yield, it can be a promising alternate crop in dryland agro-ecosystems. Plant have developed a wide variety of drought tolerance mechanisms in morphological and physiological levels. There are wide variations among the safflower genotypes with respect to seed and oil yields at drought stress condition.
Materials and methods
In order to investigate the effects of late-season drought stress on some morphophysiological characteristics of Iranian safflower varieties, an experiment was conducted in the research field of Karaj Seed and Plant Improvement Research Institute. This study included two irrigation levels; normal irrigation (control) and drought stress from grain filling stage (main plot), and five Iranian safflower varieties including Sofeh, Goldasht, Golmehr, Padideh and Parnian (sub-plot), which conducted as a split-plot experiment in a randomized complete block design with three replications during the 2016-17.
Results and discussion
The results showed that drought stress had a significant effect on morphophysiological traits and seed yield of safflower varieties and decreased plant height, heads per plant, head diameter, seeds per head, 1000-seed weight and seed yield. Moreover, drought stress reduced relative water content, leaf area index and increased canopy temperature of safflower varieties. Late season drought stress reduced the growth duration of safflower varieties by 6-days compared with normal irrigation (control). Plant height of safflower varieties decreased under drought stress by an average of 8.2 cm. The highest plant height was observed in Parian variety (140.6 cm) in normal irrigation treatment. In contrast, under drought stress conditions, the highest plant height was observed in Golmehr (128.3 cm). In the present study, late season drought stress increased three degrees Celsius at safflower canopy temperature. The highest and lowest canopy temperatures were observed in Goldasht and Parian varieties (34.1 and 30.6 °C, respectively). Also, late season drought stress reduced leaf area index (LAI) by 34% in safflower varieties. The highest and lowest leaf area index were observed in Parnian and Goldasht varieties (2.4 and 0.7, respectively). Under non-stress conditions, the highest relative leaf water content (RWC) was observed in Parnian variety. In addition, in drought stress treatment, Parnian and Padide varieties had the highest RWC (67.4% and 66.1%, respectively). Drought stress reduced seed yield and seed oil content by 14.9 and 2.7%, respectively. Due to the number of heads and 1000-seed weight, Parnian variety had the highest seed yield at both control and drought stress conditions by 2150 and 1773 kg.ha-1, respectively. The highest seed yield loss due to drought stress was observed in Sofeh variety by 24.8%.
Conclusion
Overall results of this study showed that Parnian variety was significantly superior to other varieties in terms of morphophysiological characteristics such as LAI, RWC and seed yield under late season drought stress. According to this, in terms of morphophysiological traits affecting drought tolerance, this variety performed better than other varieties.

Keywords

Main Subjects

Achhale, D. 2016. Screening of safflower (Carthamus tinctorius l.) Genotypes for drought tolerance. MSc dissertation. College of Agriculture, the Rajmata Vijayaraje Scindia Krishi Vishwa Vidyalaya, Gwalior, Indore (MP). 75 p.
Al-Barrak, Kh.M., 2006. Irrigation interval and nitrogen level effects on growth and yield of canola (Brassica napus L.). Science Journal of King Faisal University. 7(1), 87-102.
Akhzari, D., Pessarakli, M. Eftekhari Ahandani, S., 2015. Effects of grazing intensity on soil and vegetation properties in a Mediterranean rangeland. Communications in Soil Science and Plant Analysis. 46 (22), 2798-2806.
Anjum, S.A., Xie, X.Y., Wang, L.C., Saleem, M.F., Man, C., Lei, W., 2011. Morphological, physiological and biochemical responses of plants to drought stress. African Journal of Agricultural Research. 6(9), 2026-2032.
Bagheri, H., Andalibi, B., Azimi Moghaddam, M., 2013. Effect of atrazine anti-transpiration application on improving physiological traits, yield and yield components of safflower under rainfed condition. Journal of Crops Improvement. 14(2), 1-16. [In Persian with English Summary].
Bannayan, M., Sanjani, S., Alizadeh, A., Lotfabadi, S., Mohamadian, A., 2010. Association between climate indices, aridity index, and rainfed crop yield in northeast of Iran. Field Crops Research. 118,105-114
Bhatnagar-Mathur, P., Vadez, V., Jyostna Devi, M., 2009. Genetic engineering of chickpea (Cicer arietinum L.) with the P5CSF129A gene for osmoregulation with implications on drought tolerance. Molecular Breeding. 23, 591-606.
Bortolheiro, F.P.A.P., Silva, M.A., 2017. Physiological response and productivity of safflower lines under water deficit and rehydration. Anais da Academia Brasileira de Ciências. 89(4), 3051-3066.
Efatdoust, N., 2003. Effect of drought stress on different safflower genotypes. MSc dissertation. Islamic Azad University Ardabil Branch. Iran. [In Persian].
Emam, Y., Shekoofa, A., Salehi, F., Jalali, A.H., 2010. Water stress effects on two common bean cultivars with contrasting growth habits. American-Eurasian Journal of Agricultural and Environmental Sciences. 9(5), 495-499.
Eyshi Rezaei, E., Bannayan, M., 2012. Rainfed wheat yields under climate change in northeastern Iran. Meteorological Applications. 19, 346-354. 
Fanaei, H.R., Galavi, M., Kafi, M., Ghanbari Bonjar A., 2009. Amelioration of water stress by potassium fertilizer in two oilseed species. International Journal of Plant Production. 3(2), 41-45.
Farshidfar, E., Mohammadi, R., Sutca, J., 2002. Association between field and laboratory perdictors of drought tolerance in wheat disomic addition lines. Acta Agronomica Hungarica. 50, 377-381.
Fathian, S., Ehsan Zade, P., 2013. Association between some physiological characteristics and yield in spring safflower under two irrigation regimes. Iranian Journal of Field Crop Science. 43(4), 649-659. [In Persian with English Summary].

Fleta-Soriano,E., Munné-Bosch, S., 2016. Stress memory and the inevitable effects of drought: A Physiological Perspective. Frontiers in Plant Science. 7, 1-6.

Ghosh P.K., Majumder, M.K., Banerjee, S.P., 2013. Growth analysis studies and their possible use in selection work in Safflower (Carthamus tinctorius L.). International Journal of Farming and Allied Sciences. 2, 38-41.
Gupta, K., Kayam, G., Faigenboim-Doron, A., Clevenger, J., Ozias-Akins, P., Hovav, R., 2016. Gene expression profiling during seed-filling process in peanut with emphasis on oil biosynthesis networks. Plant Science. 248, 116-127.
Hussain, M.I., Lyra, D.A., Farooq, M., Nikoloudakis, N., Khalid, N., 2016. Salt and drought stresses in safflower: a review. Agronomy for Sustainable Development. 36(1), 4-13.
Jabbari, H., 2014. Idntification of water deficit tolerance mechanisams in vegetative and reproductive stages in rapeseed. Ph.D thesis. College of Aburaihan, University of Tehran, Iran. 200 p. [In Persian].
Karimizadeh, R., Mohammadi, M., 2011. Association of canopy temperature depression with yield of durum wheat genotypes under supplementary irrigated and rainfed conditions. Australian Journal of Crop Science. 5(2), 138.
Khakwani, A.A., Dennett, M.D., Munir, M., Abid, M., 2012. Growth and yield response of wheat varieties to water stress at booting and anthesis stages of development. Pakistan Journal of Botany. 44(3), 879-886.
Koutroubas, S.D., Papakosta, D.K., Doitsinis, A., 2004. Cultivar and seasonal effects on the contribution of pre-anthesis assimilates to safflower yield. Field Crops Research. 90, 263-274.
Medici, A., Laloi, M., Atanassova, R., 2014. Profiling of sugar transporter genes in grapevine coping with water deficit. FEBS Letters. 588, 3989–3997
Meerajipour, M., Movahhedi Dehnavi, M., Dehdari, A., Farajee, H., Meerajipour, M., 2013. Effect of drought stress on some physiological characteristics of four spring safflower (Carthamus tinctorius L.) cultivars in Yasouj. Environmental Stresses in Crop Sciences. 5(2), 125-134. [In Persian with English Summary].
Mirshekari, M., Majnoun, H.N., Amiri, R., Moslehi, A., Zandvakili, O.R., 2013. Effects of sowing date and irrigation treatment on safflower seed quality. African Journal of Agricultural Research. 8 (49), 6488-6498
Niknam, S.R., Ma, Q., Turner, W., 2003. Osmotic adjustment and seed yield of Brassica napus and B. juncea genotypes in a water-limited environmental in south Western Australia. Australian Journal of Experimental Agriculture. 43(9), 1127-1135.
Noori, A., Ashraf Mehrabi, A., Safari, H., 2017. Study of correlation and path coefficient analysis of agronomic traits and grain yield for Aegilops cylindrica accessions under non-stress and drought stress conditions in Ilam. Journal of Crop Breeding. 9 (23), 76-84. [In Persian with English Summary].
Nourmand Movayed, F. 2004. Comparison of photosynthetic contribution of safflower inflorescence and adjacent leaves in seed formation and production under different field moisture conditions. MSc dissertation. Faculty of agriculture, Isfahan University of Technology, Iran. [In Persian].
Pasban Eslam, B., 2011. Evaluation of physiological indices for improving water deficit tolerance in spring safflower. Journal of Agricultural Sciences and Technology. 13, 327-338. [In Persian with English Summary].
Pasban Eslam, B., Shakiba, M.R., Neyshabouri, M.R., Moghadam, M., Ahmadi, M.R., 2000. Evaluation of physiological indices as a screening technique for drought resistance in oilseed rape. Pakistan Academy of Sciences Journal. 37, 143-152.
Pasban Eslam, B., 2016. Stability of grain and oil yields and its components in Oilseed Rape (Brassica napus L.) under early and late season drought. Agricultural Science and Sustainable Production. 25 (4), 177-188.
Pascual-Villalobos, M.J., Albuquerque, N., 1996. Genetic variation of a safflower germplasm collection grown as a winter crop in southern Spain. Euphytica. 92, 327-332.
Patel, P.G. Patel, Z.Q. 1996. Effects of irrigation methods and levels on seed yield and quality of safflower. Journal of Oilseed Research. 13, 53-55.
Rahmani, F., 2018. Effect of zinc foliar application on some physiological characteristics and quantitative and qualitative yield of different safflower cultivars under drought stress. Ph.D thesis. Islamic Azad University Takestan Branch, Iran. [In Persian].
Safavi Fard, N., 2017. Study of drought stress and planting season effect on resources use efficiency in new cultivars and hybrids of canola. Ph.D thesis. Islamic Azad University Science and Research Branch, Iran. [In Persian].
Sedaghat, M., Tahmasebi-Sarvestani, Z., Emam, Y., Mokhtassi-Bidgoli, A., 2017. Physiological and antioxidant responses of winter wheat cultivars to strigolactone and salicylic acid in drought. Plant Physiology and Biochemistry. 119, 59-69.
Silva, M.D.A., Jifon, J.L., Santos, C.M.D., Jadoski, C.J., Silva, J.A.G.D., 2013. Photosynthetic capacity and water use efficiency in sugarcane genotypes subject to water deficit during early growth phase. Brazilian archives of Biology and Technology. 56(5), 735-748.
Sinaki, M.J., Majidi Heravan, E. Shirani-rad, A.H. Noormohamadi, G. Zarei, G.H., 2007. The effects of water deficit during growth stage of canola (Brassica napus L.). American-Eurasin Journal of Agricultural and Environmental Science. 2(4), 417-424.
Singh, D.P., Singh, P., Kumar, A., Sharma, H.C., 1985. Transpiration. Cooling as a screening technique for drought tolerance in oilseed Brassica. Annals of Botany. 56, 815-820.
Soleymani, A., Emami, S.A., Shahrajabian, M.H., Naranjani, L.E.I.L.A., 2011. Evaluation of suitable planting dates and autumn safflower cultivars under climatic condition of Isfahan, Iran. Research on Crops. 12(1), 155-162.

Sun, Y.W., He, Y., Zhang, R.P., Huang, J.W., Gu, M.C., 2013. Optimization of ultrasonic extraction conditions of safflower yellow from Carthamus tinctorius by response surface methodology. Zhong Yao Cai. 36(12),2018-2022.

Torabian, A., Maghsoudi, K., 2014. Study on relationship between yield and yield components of wheat under normal irrigation and drought stress conditions by path analysis method. Applied Field Crops Research. 27(104), 47-53. [In Persian with English Summary].
Zadehbagheri, M., Mojtaba, M., Javanmardi, S., Sharafzadeh, S., 2012. Effect of drought stress on yield and yield components, relative leaf water content, proline and potassium ion accumulation in different white bean (Phaseolus vulgaris L.) genotype. African Journal of Agricultural Research. 7(42), 5661-5670.