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Year 2025, Volume: 14 Issue: 1, 58 - 66, 01.01.2025
https://doi.org/10.18393/ejss.1577652

Abstract

References

  • Alimbekova, N., Issabekov, B., Orazbayev, S., Yertayeva, Z., Yessengeldiyeva, L., 2022. Morphophysiological response of young Frantoio olive tree under different fertilizer types in sierozem with surface drip irrigation. Eurasian Journal of Soil Science 11(1): 86-92.
  • Barak, P., Jobe, B.O., Krueger, A.R., Peterson, L.A., Laird, D.A., 1997. Effects of long-term soil acidification due to nitrogen fertilizer inputs in Wisconsin. Plant and Soil 197(1): 61-69.
  • Branlard, G., Dardevet, M., Saccomano, R., Lagoutte, F., Gourdon, J., 2001. Genetic diversity of wheat storage proteins and bread wheat quality. Euphytica 119: 59-67.
  • Carciochi, W.D., Salvagiotti, F., Pagani, A., Calvo, N.I.R., Eyherabide, M., Rozas, H.R.S., Ciampitti, I.A., 2020. Nitrogen and sulfur interaction on nutrient use efficiencies and diagnostic tools in maize. European Journal of Agronomy 116: 126045.
  • Choudhary, O.P., Ghuman, B.S., Bijay-Singh, Thuy, N., Buresh, R.J., 2011. Effects of long-term use of sodic water irrigation, amendments and crop residues on soil properties and crop yields in rice–wheat cropping system in a calcareous soil. Field Crops Research 121(3): 363-372.
  • Fuentes, J.P., Flury, M., Huggins, D.R., Bezdicek, D.F., 2003. Soil water and nitrogen dynamics in dryland cropping systems of Washington State, USA. Soil and Tillage Research 71(1): 33-47.
  • Garrido-Lestache, E., López-Bellido, R.J., López-Bellido, L., 2005. Durum wheat quality under Mediterranean conditions as affected by nitrogen rate, timing, and splitting, and by sulfur fertilization. European Journal of Agronomy 23(3): 265-278.
  • Ghafoor, I., Habib-ur-Rahman, M., Ali, M., Afzal, M., Ahmed, W., Gaiser, T., Ghaffar, A., 2021. Slow-release nitrogen fertilizers enhance growth, yield, NUE in wheat crop and reduce nitrogen losses under an arid environment. Environmental Science and Pollution Research 28: 43528-43543.
  • Gupta, R., Meghwal, M., Prabhakar, P.K., 2021. Bioactive compounds of pigmented wheat (Triticum aestivum): Potential benefits in human health. Trends in Food Science & Technology 110: 240-252.
  • Haneklaus, S., Paulsen, H.M., Gupta, A.K., Bloem, E., Schnug, E., 1999. Influence of sulfur fertilization on yield and quality of oilseed rape and mustard. Proceedings of the 10th International Rapeseed Congress, 1999; pp 26−29. Proc. 10th Int. Rapeseed Congress. 26-29 September 1999, Canberra, Australia.
  • Hell, R., 1997. Molecular physiology of plant sulfur metabolism. Planta 202(2): 138-148.
  • İslamzade, R., Hasanova, G., Asadova, S., 2023. Impact of varied NPK fertilizer application rates and seed quantities on barley yield and soil nutrient availability in chestnut soil of Azerbaijan. Eurasian Journal of Soil Science 12(4): 371 - 381.
  • İslamzade, R., Islamzade, T., Hasanova, G., Huseynova, S.,2024. Babayeva, T.Effect of NPK fertilization and seed rate on barley (Hordeum vulgare) yield, yield component and nitrogen dynamics in semi-arid conditions. Journal of Agriculture Faculty of Ege University 61(3): 307–319.
  • Jones, J.B., 2001. Laboratory guide for conducting soil tests and plant analyses. CRC Press, New York, USA. 363p.
  • Kaliyeva, S., Suleimenov , B., Rvaidarova, G., Konysbekov, K., Muminova, S., Raimbekova , B., 2024. Effect of fertilizer treatments on sugar beet cultivars: A comprehensive study on crop yield and nutrient contents of soil and plant in chestnut soil of Kazakhstan. Eurasian Journal of Soil Science 13(3): 247-253.
  • Khalofah, A., Khan, M.I., Arif, M., Hussain, A., Ullah, R., Irfan, M., Mahpara, S., Shah, R.U., Ansari, M.J., Kintl, A., Brtnicky, M., Danish, S., Datta, R., 2021. Deep placement of nitrogen fertilizer improves yield, nitrogen use efficiency and economic returns of transplanted fine rice. PLoS One 16: e0247529.
  • Khandkar, U.R., Shinde, D.A., 1991. Phosphorus nutrition of black gram as influenced by P and S Application. Journal of the Indian Society of Soil Science 39: 583−585.
  • Liimatainen, A., Sairanen, A., Jaakkola, S., Kokkonen, T., Kuoppala, K., Jokiniemi, T., Mäkelä, P.S.A., 2022. Yield, quality and nitrogen use of forage maize under different nitrogen application rates in two boreal locations. Agronomy 12: 887.
  • Panhwar, Q.A., Ali, A., Naher, U.A., Memon, M.Y., 2019. Fertilizer management strategies for enhancing nutrient use efficiency and sustainable wheat production. In: Organic Farming: Global Perspectives and Methods. Chandran, S., Unni, M.R., Thomas, S. (Eds.). Elsevier pp. 17-39.
  • Ragab, G., Saad-Allah, K., 2021. Seed priming with greenly synthesized sulfur nanoparticles enhances antioxidative defense machinery and restricts oxidative injury under manganese stress in Helianthus annuus (L.) seedlings. Journal of Plant Growth Regulation 40: 1894-1902.
  • Rowell, D.L., 1996. Soil Science: methods and applications. Longman, UK. 350p.
  • Shewry, P.R., 2009. Wheat. Journal of Experimental Botany 60(6): 1537-1553.
  • Shiferaw, B., Smale, M., Braun, H.J., Duveiller, E., Reynolds, M., Muricho, G., 2013. Crops that feed the world 10. Past successes and future challenges to the role played by wheat in global food security. Food Security 5: 291-317.
  • Šiaudinis, G., Lazauskas, S., 2005. The effect of nitrogen and sulphur fertilization on tiller formation and grain yield of spring wheat. Research for Rural Development: International Scientific Conference Proceedings, Jelgava, Latvia, 19−22 May 2005. pp 15−18.
  • Souza, E.J., Martin, J.M., Guttieri, M.J., O’Brien, K.M., Habernicht, D.K., Lanning, S.P., McLean, R., Carlson, G.R., Talbert, L.E., 2004. Influence of genotype, environment, and nitrogen management on spring wheat quality. Crop Science 44(2): 425-432.
  • Wang, Q., Zhang, Y., Wu, H., Xu, N., Li, A., 2021. Effects of sulfur limitation on nitrogen and sulfur uptake and lipid accumulation in Scenedesmus acuminatus. Journal of Applied Phycology 33: 301-311.
  • Wilson, t.L., Guttieri, M.J., Nelson, N.O., Fritz, A., Tilley, M., 2020. Nitrogen and sulfur effects on hard winter wheat quality and asparagine concentration. Journal of Cereal Science 93: 102969.
  • Zecevic, V., Knezevic, D., Boskovic, J., Micanovic, D., Dozet, G., 2010. Effect of nitrogen fertilization on winter wheat quality. Cereal Research Communications 38: 243–249.
  • Zhang, Z., Yu, Z., Zhang, Y., Shi, Y., 2021. Optimized nitrogen fertilizer application strategies under supplementary irrigation improved winter wheat (Triticum aestivum L.) yield and grain protein yield. PeerJ 9: e11467.

Effect of nitrogen and sulfur combinations on spring wheat (Triticum aestivum) growth, yield, and soil nutrient availability in a greenhouse experiment

Year 2025, Volume: 14 Issue: 1, 58 - 66, 01.01.2025
https://doi.org/10.18393/ejss.1577652

Abstract

Effective management of nitrogen (N) and sulfur (S) is crucial for maximizing spring wheat productivity, as both nutrients play key roles in improving growth, yield attributes, grain protein content, and soil fertility. Despite their importance, determining the optimal application rates of N and S for enhanced wheat performance remains a challenge. This study was conducted as a pot experiment under controlled greenhouse conditions, with 12 treatments replicated three times and carried out over 85 days. The treatments included a control (0N + 0S), nitrogen-only treatments (40N + 0S, 80N + 0S, 120N + 0S), sulfur-only treatments (30S, 60S), and combined N and S treatments (40N + 30S, 80N + 30S, 120N + 30S, 40N + 60S, 80N + 60S, 120N + 60S). The results revealed that the application of 120N + 60S significantly improved key growth parameters such as plant height, grains per spike, spike density (spike/m²), and 1000-grain weight. This treatment also resulted in higher grain nitrogen content, N uptake, and protein levels, confirming its superiority over other treatments. Additionally, post-harvest soil analysis indicated increased mineral N and available S levels, while showing a slight decrease in pH and an increase in electrical conductivity (EC). In conclusion, the 120N + 60S combination was identified as the most effective treatment for maximizing wheat yield, improving grain quality, and enhancing soil nutrient availability. However, it is recommended that future studies validate these findings under field conditions, across different soil types and climates, to ensure broader applicability of 120N + 60S as a best practice for wheat cultivation.

References

  • Alimbekova, N., Issabekov, B., Orazbayev, S., Yertayeva, Z., Yessengeldiyeva, L., 2022. Morphophysiological response of young Frantoio olive tree under different fertilizer types in sierozem with surface drip irrigation. Eurasian Journal of Soil Science 11(1): 86-92.
  • Barak, P., Jobe, B.O., Krueger, A.R., Peterson, L.A., Laird, D.A., 1997. Effects of long-term soil acidification due to nitrogen fertilizer inputs in Wisconsin. Plant and Soil 197(1): 61-69.
  • Branlard, G., Dardevet, M., Saccomano, R., Lagoutte, F., Gourdon, J., 2001. Genetic diversity of wheat storage proteins and bread wheat quality. Euphytica 119: 59-67.
  • Carciochi, W.D., Salvagiotti, F., Pagani, A., Calvo, N.I.R., Eyherabide, M., Rozas, H.R.S., Ciampitti, I.A., 2020. Nitrogen and sulfur interaction on nutrient use efficiencies and diagnostic tools in maize. European Journal of Agronomy 116: 126045.
  • Choudhary, O.P., Ghuman, B.S., Bijay-Singh, Thuy, N., Buresh, R.J., 2011. Effects of long-term use of sodic water irrigation, amendments and crop residues on soil properties and crop yields in rice–wheat cropping system in a calcareous soil. Field Crops Research 121(3): 363-372.
  • Fuentes, J.P., Flury, M., Huggins, D.R., Bezdicek, D.F., 2003. Soil water and nitrogen dynamics in dryland cropping systems of Washington State, USA. Soil and Tillage Research 71(1): 33-47.
  • Garrido-Lestache, E., López-Bellido, R.J., López-Bellido, L., 2005. Durum wheat quality under Mediterranean conditions as affected by nitrogen rate, timing, and splitting, and by sulfur fertilization. European Journal of Agronomy 23(3): 265-278.
  • Ghafoor, I., Habib-ur-Rahman, M., Ali, M., Afzal, M., Ahmed, W., Gaiser, T., Ghaffar, A., 2021. Slow-release nitrogen fertilizers enhance growth, yield, NUE in wheat crop and reduce nitrogen losses under an arid environment. Environmental Science and Pollution Research 28: 43528-43543.
  • Gupta, R., Meghwal, M., Prabhakar, P.K., 2021. Bioactive compounds of pigmented wheat (Triticum aestivum): Potential benefits in human health. Trends in Food Science & Technology 110: 240-252.
  • Haneklaus, S., Paulsen, H.M., Gupta, A.K., Bloem, E., Schnug, E., 1999. Influence of sulfur fertilization on yield and quality of oilseed rape and mustard. Proceedings of the 10th International Rapeseed Congress, 1999; pp 26−29. Proc. 10th Int. Rapeseed Congress. 26-29 September 1999, Canberra, Australia.
  • Hell, R., 1997. Molecular physiology of plant sulfur metabolism. Planta 202(2): 138-148.
  • İslamzade, R., Hasanova, G., Asadova, S., 2023. Impact of varied NPK fertilizer application rates and seed quantities on barley yield and soil nutrient availability in chestnut soil of Azerbaijan. Eurasian Journal of Soil Science 12(4): 371 - 381.
  • İslamzade, R., Islamzade, T., Hasanova, G., Huseynova, S.,2024. Babayeva, T.Effect of NPK fertilization and seed rate on barley (Hordeum vulgare) yield, yield component and nitrogen dynamics in semi-arid conditions. Journal of Agriculture Faculty of Ege University 61(3): 307–319.
  • Jones, J.B., 2001. Laboratory guide for conducting soil tests and plant analyses. CRC Press, New York, USA. 363p.
  • Kaliyeva, S., Suleimenov , B., Rvaidarova, G., Konysbekov, K., Muminova, S., Raimbekova , B., 2024. Effect of fertilizer treatments on sugar beet cultivars: A comprehensive study on crop yield and nutrient contents of soil and plant in chestnut soil of Kazakhstan. Eurasian Journal of Soil Science 13(3): 247-253.
  • Khalofah, A., Khan, M.I., Arif, M., Hussain, A., Ullah, R., Irfan, M., Mahpara, S., Shah, R.U., Ansari, M.J., Kintl, A., Brtnicky, M., Danish, S., Datta, R., 2021. Deep placement of nitrogen fertilizer improves yield, nitrogen use efficiency and economic returns of transplanted fine rice. PLoS One 16: e0247529.
  • Khandkar, U.R., Shinde, D.A., 1991. Phosphorus nutrition of black gram as influenced by P and S Application. Journal of the Indian Society of Soil Science 39: 583−585.
  • Liimatainen, A., Sairanen, A., Jaakkola, S., Kokkonen, T., Kuoppala, K., Jokiniemi, T., Mäkelä, P.S.A., 2022. Yield, quality and nitrogen use of forage maize under different nitrogen application rates in two boreal locations. Agronomy 12: 887.
  • Panhwar, Q.A., Ali, A., Naher, U.A., Memon, M.Y., 2019. Fertilizer management strategies for enhancing nutrient use efficiency and sustainable wheat production. In: Organic Farming: Global Perspectives and Methods. Chandran, S., Unni, M.R., Thomas, S. (Eds.). Elsevier pp. 17-39.
  • Ragab, G., Saad-Allah, K., 2021. Seed priming with greenly synthesized sulfur nanoparticles enhances antioxidative defense machinery and restricts oxidative injury under manganese stress in Helianthus annuus (L.) seedlings. Journal of Plant Growth Regulation 40: 1894-1902.
  • Rowell, D.L., 1996. Soil Science: methods and applications. Longman, UK. 350p.
  • Shewry, P.R., 2009. Wheat. Journal of Experimental Botany 60(6): 1537-1553.
  • Shiferaw, B., Smale, M., Braun, H.J., Duveiller, E., Reynolds, M., Muricho, G., 2013. Crops that feed the world 10. Past successes and future challenges to the role played by wheat in global food security. Food Security 5: 291-317.
  • Šiaudinis, G., Lazauskas, S., 2005. The effect of nitrogen and sulphur fertilization on tiller formation and grain yield of spring wheat. Research for Rural Development: International Scientific Conference Proceedings, Jelgava, Latvia, 19−22 May 2005. pp 15−18.
  • Souza, E.J., Martin, J.M., Guttieri, M.J., O’Brien, K.M., Habernicht, D.K., Lanning, S.P., McLean, R., Carlson, G.R., Talbert, L.E., 2004. Influence of genotype, environment, and nitrogen management on spring wheat quality. Crop Science 44(2): 425-432.
  • Wang, Q., Zhang, Y., Wu, H., Xu, N., Li, A., 2021. Effects of sulfur limitation on nitrogen and sulfur uptake and lipid accumulation in Scenedesmus acuminatus. Journal of Applied Phycology 33: 301-311.
  • Wilson, t.L., Guttieri, M.J., Nelson, N.O., Fritz, A., Tilley, M., 2020. Nitrogen and sulfur effects on hard winter wheat quality and asparagine concentration. Journal of Cereal Science 93: 102969.
  • Zecevic, V., Knezevic, D., Boskovic, J., Micanovic, D., Dozet, G., 2010. Effect of nitrogen fertilization on winter wheat quality. Cereal Research Communications 38: 243–249.
  • Zhang, Z., Yu, Z., Zhang, Y., Shi, Y., 2021. Optimized nitrogen fertilizer application strategies under supplementary irrigation improved winter wheat (Triticum aestivum L.) yield and grain protein yield. PeerJ 9: e11467.
There are 29 citations in total.

Details

Primary Language English
Subjects Soil Sciences and Plant Nutrition (Other)
Journal Section Articles
Authors

Gulbaram Nurgaliyeva This is me 0000-0002-0085-4212

Aizhan Akmullayeva This is me 0000-0001-9382-230X

Gulnar A. Myrzabayeva This is me 0000-0002-3482-3641

Gulnara Tastanbekova This is me 0000-0003-3532-5852

Zhanar Izbassarova This is me 0009-0008-5174-4233

Zhanylkhan Bukabayeva This is me 0000-0002-1461-5407

Gulnissam Rvaidarova This is me 0000-0003-4260-4411

Mussapirov Dastan This is me 0009-0001-9113-7082

Publication Date January 1, 2025
Submission Date February 15, 2024
Acceptance Date October 25, 2024
Published in Issue Year 2025 Volume: 14 Issue: 1

Cite

APA Nurgaliyeva, G., Akmullayeva, A., Myrzabayeva, G. A., Tastanbekova, G., et al. (2025). Effect of nitrogen and sulfur combinations on spring wheat (Triticum aestivum) growth, yield, and soil nutrient availability in a greenhouse experiment. Eurasian Journal of Soil Science, 14(1), 58-66. https://doi.org/10.18393/ejss.1577652