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Research Articles

The impact of foliar applied zinc and iron on quality of soybean

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Pages 2977-2989 | Received 08 Jan 2021, Accepted 05 Oct 2022, Published online: 26 Dec 2022

References

  • Aytac, S., C. Cirak, and H. Ozcelik. 2007. Foliar zinc application on yield and quality characters of soybean. Asian Journal of Chemistry. 19 (3):2410–8.
  • Babaeian, M., A. Tavassoli, A. Ghanbari, Y. Esmaeilian, and M. Fahimifard. 2011. Effects of foliar micronutrient application on osmotic adjustments, grain yield and yield components in sunflower (Alstar cultivar) under water stress at three stages. African Journal of Agricultural Research 6 (5):1204–8.
  • Caliskan, S., I. Ozkaya, M. E. Caliskan, and M. Arslan. 2008. The effects of nitrogen and iron fertilization on growth, yield and fertilizer use efficiency of soybean in a Mediterranean-type soil. Field Crops Research 108 (2):126–32. doi: 10.1016/j.fcr.2008.04.005.
  • Chhonkar, A. K., and A. S. Chandel. 1991. Effect of iron and molybdenum on nitrogenase activity and nitrogen fixation in soybean (Glycine max L.) grown in Alluval soils of North India. Indian Journal of Agronomy. 36 (Suppl):124–8.
  • FAO. 2022. Food and Agriculture Organization of the United Nations. Accessed August 3, 2022. http://www.fao.org/faostat/en/#data
  • Galavi, M., K. Yosefi, and M. Ramrodi. 2011. Effect of biophosphate and chemical phosphorus fertilizer accompanied with foliar application of micronutrients on yield, quality and phosphorus and zinc concentration of maize. The Journal of Agricultural Science 3 (4):22–30.
  • Ghassemi-Golezani, K., and S. Farhangi-Abriz. 2018. Changes in oil accumulation and fatty acid composition of soybean seeds under salt stress in response to salicylic acid and jasmonic acid. Russian Journal of Plant Physiology 65 (2):229–36. doi: 10.1134/S1021443718020115.
  • Goos, R. J., and B. E. Johnson. 2000. A comparison of three methods for reducing ıron-deficiency chlorosis in soybean. Agronomy Journal. 92 (6):1135–9. doi: 10.2134/agronj2000.9261135x.
  • Güneş, A., M. Alpaslan, and A. İnal. 2007. Plant nutrition and fertilization. Ankara, Turkey: Lesson Book: 504. (Turkish).
  • Heitholt, J. J., J. J. Sloan, C. T. MacKown, and R. I. Cabrera. 2003. Soybean growth on calcareous soil as affected by three ıron sources. Journal of Plant Nutrition. 26 (4):935–48. doi: 10.1081/PLN-120018575.
  • Ivanov, D. S., J. D. Levic, and S. A. Sredanovic. 2010. Fatty acid composition of various soybean products. Food and Feed Research 37 (2):65–70.
  • Kinaci, E., and N. Gulmezoglu. 2007. Grain yield and yield components of triticale upon application of different foliar fertilizers. Interciencia 32 (9):624–8.
  • Lindsay, L. W. 1972. Microelements in soils and plant nutrition. Advances in Agronomy 24:147–86.
  • Ma, J. F., and H.-Q. Ling. 2009. Iron for plant and humans. Plant and Soil 325 (1-2):1–3. doi: 10.1007/s11104-009-0203-y.
  • Malakooti, S. H., M. Majidian, S. M. Ehteshami, and M. Rabiee. 2017. Evaluation of ıron and zinc foliar and soil application on quantitative and qualitative characteristics of two soybean cultivars. IIOABJ 8 (3):1–7.
  • Moghadam, R. N., M. H. Saberi, and M. H. Sayyari. 2013. Effect of soil application of ıron and manganese sulfate on quantitative and qualitative characteristics of forage maize hybrid single cross 704. Journal of Crops Improvement (Journal of Agriculture) 15 (2):75–86. doi: 10.22059/JCI.2013.36100.
  • Mohammadi, K. 2015. Grain oil and fatty acids composition of soybean affected by nano-ironchelate, chemical fertilizers and farmyard manure. Archives of Agronomy and Soil Science. 61 (11):1–8. doi: 10.1080/03650340.2015.1025763.
  • Moreira, A., L. A. C. Moraes, and A. R. Reis. 2018. The molecular genetics of zinc uptake and utilization efficiency in crop plants. In Plant micronutrient use efficiency: Molecular and genomic perspectives in crop plants, eds. M. A. Hossain, T. Kamiya, D. J. Burrit, L. S. P. Tran, T. Fujiwara, 87–108. London, UK: Elsevier/Academic Press. doi: 10.1016/B978-0-12-812104-7.00006-X.
  • Patil, A. G., M. D. Oak, S. P. Taware, S. A. Tamhankar, and V. S. Rao. 2010. Nondestructive estimation of fatty acid composition in soybean [Glycine max(L.) Merrill] seeds using Near-Infrared Transmittance Spectroscopy. Food Chemistry. 120 (4):1210–7. doi: 10.1016/j.foodchem.2009.11.066.
  • Pejuhan, J., and B. Çomaklı. 2018. The effects of ıron, zinc and bio-fertilizers on yield and some properties of soybean (Glycine max (L) Merril) in calcareous soil conditions. Alinteri Journal of Agriculture Sciences 33 (2):153–63. doi: 10.28955/alinterizbd.405065.(In Turkish
  • Rajcan, I., G. Hou, and A. D. Weir. 2005. Advances in breeding of seed-quality traits in soybean. Journal of Crop Improvement 14 (1-2):145–74. doi: 10.1300/J411v14n01_07.
  • Ramadan, A. A. E.-M., H. M. S. El-Bassiou, B. A. Bakry, M. M. S. Abdallah, and M. A. M. El-Enany. 2020. Growth, yield and biochemical changes of soybean plant in response to ıron and magnesium oxide nanoparticles. Pakistan Journal of Biological Sciences 23 (3):406–17. doi: 10.3923/pjbs.2020.406.417.
  • Reid, R. J., J. D. Brookes, M. A. Tester, and F. A. Smith. 1996. The mechanism of zinc uptake in plants. Planta 198 (1):39–45. doi: 10.1007/BF00197584.
  • Roomizadch, S., and N. Karimian. 1996. Manganase-ıron relationship in soybean grown in calcareous soils. Journal of Plant Nutrition. 19 (2):397–406. doi: 10.1080/01904169609365130.
  • Sahin, C. B., and N. Isler. 2021. Foliar applied zinc and ıron effects on yield and yield components of soybean: determination by PCA analysis. Commun Soil Sci Plan 52 (3):212–21. doi: 10.1080/00103624.2020.1854297.
  • Sedghi, M., M. Hadi, and S. G. Toluie. 2013. Effect of nano zinc oxide on the germination parameters of soybean seeds under drought stress. Annals of West University of Timişoara, ser. Biology 16 (2):73–8.
  • Seyed Sharifi, R. 2016. Application of biofertilizers and zinc increases yield, nodulation and unsaturated fatty acids of soybean. Zemdirbyste-Agriculture 103 (3):251–8. doi: 10.13080/z-a.2016.103.032.
  • Sheykhbaglou, R., M. Sedghi, and B. Fathi-Achachlouie. 2018. The effect of ferrous nano-oxide particles on physiological traits and nutritional compounds of soybean (Glycine max L.) seed. Anais Da Academia Brasileira De Ciencias 90 (1):485–94.
  • Sheykhbaglou, R., M. Sedghi, M. T. Shishevan, and R. S. Sharifi. 2010. Effects of nano-iron oxide particles on agronomic traits of soybean. Notulae Scientia Biologicae 2 (2):112–3. doi: 10.15835/nsb224667.
  • Sohrabi, Y., A. Habibi, K. Mohammadi, M. Sohrabi, G. Heidari, S. Khalesro, and M. Khalvandi. 2012. Effect of nitrogen (N) fertilizer and foliar-applied iron (Fe) fertilizer at various reproductive stages on yield, yield component and chemical composition of soybean (Glycine max L. Merr.) seed. The African Journal of Biotechnology 11 (40):9599–605.
  • Staton, M. 2012. Managing soil pH for optimal soybean production. Michigan State University Extension. Accessed November 2, 2020. https://www.canr.msu.edu
  • Sutradhar, A. K., D. E. Kaiser, and L. M. Behnken. 2017. Soybean response to broadcast application of boron, chlorine, manganese and zinc. Agronomy Journal 109 (3):1048–59. doi: 10.2134/agronj2016.07.0389.
  • Terry, R. E., and V. D. Jolley. 1994. Nitrogenase activity is required for activation of iron stress response in iron inefficient T203 soybean. Journal of Plant Nutrition. 17 (8):1417–28. doi: 10.1080/01904169409364816.
  • Turan, M., and A. Horuz. 2012. The plant nutrition (Editor: Mehmet Rüştü Karaman). In: Major principles of plant nutrition. Ankara, Turkey: Dumat Ofset.
  • Wiersma, J. V. 2005. High rates of Fe-EDDHA and seed iron concentration suggest partial solutions to iron deficiency in soybean. Agronomy Journal. 97 (3):924–34. doi: 10.2134/agronj2004.0309.
  • Yadavi, A., R. S. Aboueshaghi, M. M. Dehnavi, and H. Balouchi. 2014. Effect of micronutrıents foliar application on grain qualitative characteristics and some physiological traits of bean (Phaseolus vulgaris L.) under drought stress. Indian Journal of Fundamental and Applied Life Sciences 4:124–31.
  • Zayed, B. A., A. K. M. Salem, and H. M. El Sharkawy. 2011. Effect of different micronutrient treatments on rice (Oriza sativa L.) growth and yield under saline soil conditions. World Journal of Agricultural Sciences 7 (2):179–84.

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