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Effect of sowing date and abscisic acid on sunflower growth, seed yield and germination

    Author

    • Mudhir I. Hwaidi

    Department of Field Crops- College of Agriculture-Tikrit University, Salah Al-Din, Iraq.

,

Document Type : Research Paper

10.58928/ku23.14109
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Abstract

Sunflower is an important field crop. However, heat stress decreases seed quality and productivity of it. The aim of this study was to enhance growth, seed yield and germination of the crop throgh applying different sowing dates and spraying abscisic acid. This work was carried out at Department of Field Crops Research Station- College of Agriculture- University of Tikrit. It included two factors, three sowing dates (1/3, 15/3 and 30/3) and four concentrations of abscisic acid (0, 50, 150 and 300 mg L-1). The experiment was applied using Randomized Complete Block Design (RCBD). Results showed a significant effect of the two factors and the interaction between factors on all the studied characteristics except the impact of sowing date on seed germination and speed. The highest values of means were at early planting and the highest concentration of abscisic acid. Early planting and application of abscisic acid under heat stress supports the growth, seed yield and germination of sunflower crop.  

Keywords

  • sunflower
  • sowing date
  • ABA
  • Growth
  • seed yield
  • germination

Main Subjects

  • Field Crops
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References
[1] Amanullah, Khan M. W (2011). "Interactive effect of potassium and phosphorus on grain quality and profitability of sunflower in northwest Pakistan." Pedosphere 21, 532–538.
[2] Van Der Merwe, R., M.T., Labuschagne,  L. Herselman, and A, Hugo (2015). "Effect of heat stress on seed yield components and oil composition in high- and mid-oleic sunflower hybrids." S Afr J Plant Soil 32:121–128.
[3] Moriondo, M., C. Giannakopoulos , M. Bindi (2011). "Climate change impact assessment: the role of climate extremes in crop yield simulation." Clim Change 104:679–701.
[4] Chimenti C.A., J.I. Hall (2001). "Grain number responses to temperature during floret differentiation in sunflower." Field Crops Res. 72:177–184.
[5] Hussain, S., M. F. Saleemb, J. Iqbala, M. Ibrahima, M. Ahmadd, S. M. Nadeeme, A. Alic and S. Attaa, 2015. "Abscisic acid mediated biochemical changes in sunflower (Helianthus annuus L.) growth under drought and well-watered field conditions. The Journal of Animal & Plant Sciences, 25(2): 406-416.
[6] Finkelstein, R. R., S. S. L. Gampala, and C. D. Rock (2002). "Abscisic acid signalling in seeds and seedlings." Plant Cell 14: 15–45.
[7] Pustovoitova, T. N., N. E. Zhdanova, and V. N. Zholkevich  (2004). "Changes in the levels of IAA and ABA in cucumber leaves under progressive soil drought." Plant Physiology(Russia) 51: 513–517.
[8] Hussain, s., A. Muhammad. A. Saeed. I. Javaid. S. Muhammad. N. Sajid Sagheer. and I.  Muhammad, (2013). "Improvement of Drought Tolerance in sunflower (Helianthus annuus L.) By Foliar Application of Abscisic Acid and Potassium Chloride." Pak. J. Nutr.12(4): 345-352.
 [9] Sharp, R.  E (2002). "Interaction with Ethylene: Changing views on the role of abscisic acid in root and shoot growth responses to water stress." Plant Cell and Environment. 25: 211-222.
[10 ]Wilmowicz, E., R. kesyj. and j. korpcewicz (2008). "Ethylene and ABA interactions in the regulation of flower induction in Pharbitis nil." J. Plant Physiol. (28):165:187-198.
[11] 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 Regul (26): 285–289.
[12] Travaglia, C., H., Reinoso, A., Cohen, C., Luna, E., Tommasino, C., Castillo, and R., Bottini (2010). "Exogenous ABA increases yield in field-grown wheat with moderate water restriction." Journal of Plant Growth Regulation, 29(3), pp.366-374.
[13] Travaglia, C., G., Balboa, G. Esposito, H. Reinoso (2012). "ABA action on the production and redistribution of field-grown maize carbohydrates in semiarid regions." Plant Growth Regul. 67: 27–34.
[14] Herna´ndez, F ., M. Poverene,  and A. Presotto,  (2018). "Heat stress effects on reproductive traits in cultivated and wild sunflower (Helianthus annuus L.): evidence for local adaptation within the wild germplasm." Euphytica, 214:Article Number: 146
[15] Zhang, J. and W.J. Davies (1991). Anti-transpiration activity in xylem sap of maize plants. J. Exp. Bot. 42: 317–321.
[16] Villalobos, F.J., A.J., Hall, J.T., Ritchie, F. Orgaz (1996). OILCROP-SUN: a development, growth, and yield model of the sunflower crop." Agronomy Journal 88: 403–415.
[17] Soleimanzadeh, H., D. Habibi, M.R. Ardakani, F. Paknejad and F. Rejali (2010). "Effect of Potassium Levels on Antioxidant Enzymes and Malondialehyde Content under Drought stress in Sunflower (Helianthus annuus L.)." American Journal of Agricultural and Biological Sciences. 5(1): 56-61.
[18] Martin, J. H. and W.H. Leonard (1949). "Crop Plants in Relation to Environment: In, Principals of Field Crops Production." The Macmillan Company. New Yor. Pp 15-50.
[19] Gholamhoseini, M. A., A. Ghalavand, E. Dolatabadian, A. Jamshidi and A. Khodaei-Joghan (2013). "Effects of arbuscular mycorrhizal inoculation on growth, yield, nutrient uptake and irrigation water productivity of sunflowers grown under drought stress." Agricultural Water Management.117 : 106–114.
[20] Rondanini, D., R. Savin, A.J. Hall (2003). "Dynamics of fruit growth and oil quality of sunflower (Helianthus annuus L.) exposed to brief intervals of high temperature during grain-filling." Field Crops Research83: 79–90.
[21] Dekkers, B.J.W., L. and Bentsink (2015). "Regulation of seed dormancy by bscisic acid and delay of germination." Seed Science Research 25; 2: 82- 98.
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Kirkuk University Journal for Agricultural Sciences (KUJAS)
Volume 14, Issue 1
March 2023
Page 106-116
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  • Article View: 1,651
  • PDF Download: 272

APA

Hwaidi, M. (2023). Effect of sowing date and abscisic acid on sunflower growth, seed yield and germination. Kirkuk University Journal for Agricultural Sciences (KUJAS), 14(1), 106-116. doi: 10.58928/ku23.14109

MLA

Mudhir I. Hwaidi. "Effect of sowing date and abscisic acid on sunflower growth, seed yield and germination". Kirkuk University Journal for Agricultural Sciences (KUJAS), 14, 1, 2023, 106-116. doi: 10.58928/ku23.14109

HARVARD

Hwaidi, M. (2023). 'Effect of sowing date and abscisic acid on sunflower growth, seed yield and germination', Kirkuk University Journal for Agricultural Sciences (KUJAS), 14(1), pp. 106-116. doi: 10.58928/ku23.14109

VANCOUVER

Hwaidi, M. Effect of sowing date and abscisic acid on sunflower growth, seed yield and germination. Kirkuk University Journal for Agricultural Sciences (KUJAS), 2023; 14(1): 106-116. doi: 10.58928/ku23.14109

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