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Research Articles

Effects of plant density and nitrogen splitting on grain yield and nitrogen uptake in rice re-cropping

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Pages 2070-2084 | Received 25 Jul 2023, Accepted 04 Mar 2024, Published online: 26 Mar 2024

References

  • Agricultural Statistics. 2021. Crops statistics. Tehran, Iran: Ministry of Agriculture Jihad.
  • Amanullah, I., and X. Inamullah. (2016). Dry matter partitioning and harvest index differ in rice genotypes with variable rates of phosphorus and zinc nutrition. Rice Science, 23(2), 78–87. doi:10.1016/j.rsci.2015.09.006.
  • Anil, K., M. Yakadri, and G. Jayasree. 2018. Influence of nitrogen levels and times of application on growth parameters of aerobic rice. International Journal of Current Microbiology and Applied Sciences 7 (05):1525–9. doi:10.20546/ijcmas.2018.705.179.
  • Asmamaw, B. A. 2017. Effect of planting density on growth, yield and yield attributes of rice (Oryza sativa L.). African Journal of Agricultural Research12 (35):2713–21. doi:10.5897/AJAR2014.9455.
  • Asseng, S., P. Martre, A. Maiorano, R. P. Rötter, G. J. O'Leary, G. J. Fitzgerald, C. Girousse, R. Motzo, F. Giunta, M. A. Babar, et al. 2019. Climate change impact and adaptation for wheat protein. Global Change Biology 25 (1):155–73. doi:10.1111/gcb.14481.
  • Brasier, K. G., B. G. Tamang, N. R. Carpenter, T. Fukao, M. S. Reiter, R. M. Pitman, C. H. Sneller, W. E. Thomason, and C. A. Griffey. 2018. Photoperiod response gene Ppd-D1 affects nitrogen use efficiency in soft red winter wheat. Crop Science 58 (6):2593–606. doi:10.2135/cropsci2018.03.0207.
  • Chen, J., R. Zhang, F. Cao, X. Yin, Y. Zou, M. Huang, and S. F. Abou-Elwafa. 2020. Evaluation of late-season short- and long-duration rice cultivars for potential yield under mechanical transplanting conditions. Agronomy 10 (9):1307. doi:10.3390/agronomy10091307.
  • Chen, S., M. Yin, X. Zheng, S. Liu, G. Chu, C. Xu, D. Wang, and X. Zhang. 2019. Effect of dense planting of hybrid rice on grain yield and solar radiation use in southeastern China. Agronomy Journal 111 (3):1229–38. doi:10.2134/agronj2018.07.0430.
  • Chen, Y., Y. Liu, S. Dong, J. Liu, Y. Wang, S. Hussain, H. Wei, Z. Huo, K. Xu, and Q. Dai. 2022. Response of rice yield and grain quality to combined nitrogen application rate and planting density in saline area. Agriculture 12 (11):1788. doi:10.3390/agriculture12111788.
  • De Datta, S. K. 1981. Principles and practices of rice production, 638. New York: John Wiley & Sons.
  • Deng, S., U. Ashraf, M. Nawaz, G. Abbas, X. Tang, and Z. Mo. 2022. Water and nitrogen management at the booting stage affects yield, grain quality, nutrient uptake, and use efficiency of fragrant rice under the agro-climatic conditions of South China. Frontiers in Plant Science 13:907231. doi:10.3389/fpls.2022.907231.
  • Djaman, K., V. C. Mel, F. Y. Ametonou, R. El-Namaky, M. D. Diallo, and K. Koudahe. 2018. Effect of Nitrogen Fertilizer Dose and Application Timing on Yield and Nitrogen Use Efficiency of Irrigated Hybrid Rice under Semi-Arid Conditions. Journal of Agricultural Science and Food Research 9 (2):223. https://hdl.handle.net/10568/102040.
  • FAOSTAT. 2018. FAO statistical database. Italy: Food and Agriculture Organizations of the United Nations.
  • Fisher, R. A. 1992. Statistical methods for research workers. In: Kotz, S., Johnson, N. L. (Eds.) Breakthroughs in Statistics: Springer Series in Statistics. New York, NY: Springer. doi:10.1007/978-1-4612-4380-9_6.
  • Gardner, F. P., R. B. Pearce, and R. L. Mitchell. 1984. Physiology of crop plants. 1st ed., 328. Ames: Iowa State Press.
  • Gorgy, R. N., B. A. Zayed, and A. A. B. Abou Khalifa. 2009. Effect of split application of nitrogen and potassium to SK2047 hybrid rice. Journal of Plant Production 34 (11):10631–43. doi:10.21608/jpp.2009.119170.
  • Gozubenli, H. 2010. Influence of planting pattern and plant density on the performance of maize hybrids in the eastern Mediterranean condition. International Journal of Agriculture and Biology 12 (4):556–60.
  • Haefele, S. M., K. Naklang, D. Harnpichitvitaya, S. Jearakongman, E. Skulkhu, P. Romyen, S. Phasopa, S. Tabtim, D. Suriya-Arunroj, S. Khunthasuvon, et al. 2006. Factors affecting rice yield and fertilizer response in rainfed lowlands of northeast Thailand. Field Crops Research 98 (1):39–51. doi:10.1016/j.fcr.2005.12.003.
  • Halder, J., G. M. Rokon, M. A. Islam, N. Salahin, and M. K. Alam. 2018. Effect of planting density on yield and yield attributes of local aromatic rice varieties. Bangladesh Journal of Agricultural Research 43 (3):489–97. doi:10.3329/bjar.v43i3.38395.
  • Hameed, F., J. Xu, S. F. Rahim, Q. Wei, A. U. Rehman Khalil, and Q. Liao. 2019. Optimizing Nitrogen Options for Improving Nitrogen Use Efficiency of Rice under Different Water Regimes. Agronomy 9 (1):39. doi:10.3390/agronomy9010039.
  • Hirzel, J., A. Pedreros, and K. Cordero. 2011. Effect of nitrogen rates and split nitrogen fertilization on grain yield and its components in flooded rice. Chilean Journal of Agricultural Research 71 (3):437–44. doi:10.4067/S0718-58392011000300015.
  • Hossain, M. A., M. A. A. Mamun, M. M. U. Miah, M. M. Haque, M. M. Rahman, M. A. R. Khan, J. C. Biswas, and M. A. Karim. 2022. Rice growth and yield characteristics under elevated carbon dioxide and nitrogen management. Agronomy Research 20 (S1):965–76. 10.15159/AR.22.060.
  • Huang, M., C. Yang, Q. Ji, L. Jiang, J. Tan, and Y. Li. 2013. Tillering responses of rice to plant density and nitrogen rate in a subtropical environment of southern China. Field Crops Research 149:187–92. doi:10.1016/j.fcr.2013.04.029.
  • International Rice Research Institute (IRRI). 2002. Standard evaluation system for rice, 1–56. Philippines: International Rice Research Institute, Los Baños.
  • Ishfaq, M., N. Akbar, U. Zulfiqar, N. Ali, K. Jabran, M. Nawaz, and M. Farooq. 2020b. Influence of nitrogen fertilization pattern on productivity, nitrogen use efficiencies, and profitability in different rice production systems. Journal of Soil Science and Plant Nutrition 21 (1):145–61. doi:10.1007/s42729-020-00349-0.
  • Ishfaq, M., N. Akbar, U. Zulfiqar, S. Hussain, K. Murtza, Z. Batool, U. Ashraf, M. N. Alyemeni, and P. Ahmad. 2020a. Influence of nitrogen management regimes on milling recovery and grain quality of aromatic rice in different rice production systems. Agronomy 10 (11):1841. doi:10.3390/agronomy10111841.
  • Jauregui, I., R. Aroca, M. Garnica, Á. M. Zamarreño, J. M. García-Mina, M. D. Serret, M. Parry, J. J. Irigoyen, and I. Aranjuelo. 2015. Nitrogen assimilation and transpiration: Key processes conditioning responsiveness of wheat to elevated [CO2] and temperature. Physiologia Plantarum 155 (3):338–54. doi:10.1111/ppl.12345.
  • Jiang, S., B. Du, Q. Wu, H. Zhang, and J. Zhu. 2023. Increasing pit-planting density of rice varieties with different panicle types to improves sink characteristics and rice yield under alternate wetting and drying irrigation. Food and Energy Security 12 (1):e335. doi:10.1002/fes3.335.
  • Kavoosi, M., and M. Allahgholipour. 2017. Effect of rate and split application of nitrogen fertilizer on growth and grain yield of rice (Oryza sativa L.) cvs. Gilaneh and Abjiboji. Iranian Journal of Crop Sciences 19 (2):165–80. http://agrobreedjournal.ir/article-1-759-en.html.
  • Khatun, A., M. D. Khairul Quais, H. Sultana, M. D. Khairul Alam Bhuiyan, and M. D. Abu Saleque. 2015. Nitrogen fertilizer optimization and its response to the growth and yield of lowland rice. Research on Crop Ecophysiology 10 (2):1–16. 1
  • Kheyri, N., H. A. Norouzi, H. R. Mobasser, and B. Torabi. 2019. Effects of silicon and zinc nanoparticles on growth, yield, and biochemical characteristics of rice. Agronomy Journal 111 (6):3084–90. doi:10.2134/agronj2019.04.0304.
  • Koireng, R. J., N. Monica Devi, K. Priya Devi, M. Gogoi, and P. S. Rolling Anal. 2019. Effect of variety and spacing on the productivity of direct seeded rice (Oryza sativa L.) under Manipur condition. International Journal of Pure & Applied Bioscience 7 (5):335–41. doi:10.18782/2320-7051.7551.
  • Kumar, A., A. Kumar, and K. P. Singh. 2017. Effect of split application of nitrogen on physiological maturity of rice (Oryza sativa). International Journal of Pure & Applied Bioscience 5 (2):960–70. doi:10.18782/2320-7051.2857.
  • Li, G., J. Zhang, C. Yang, Z. Liu, S. Wang, and Y. Ding. 2016. Population characteristics of high-yielding rice under different densities. Agronomy Journal 108 (4):1415–23. doi:10.2134/agronj2015.0214.
  • López, C. V. G., M. C. C. García, F. G. A. Fernández, C. S. Bustos, Y. Chisti, and J. M. F. Sevilla. 2010. Protein measurements of microalgal and cyanobacterial biomass. Bioresource Technology 101 (19):7587–91. doi:10.1016/j.biortech.2010.04.077.
  • Lu, J., D. Wang, K. Liu, G. Chu, L. Huang, X. Tian, and Y. Yunbo Zhang. 2020. Inbred varieties outperformed hybrid rice varieties under dense planting with reducing nitrogen. Scientific Reports 10 (1):8769. doi:10.1038/s41598-020-65574-0.
  • Mangaraj, S., R. K. Paikaray, S. Maitra, S. R. Pradhan, L. M. Garnayak, M. Satapathy, B. Swain, S. Jena, B. Nayak, T. Shankar, et al. 2022. Integrated nutrient management improves the growth and yield of rice and greengram in a rice—greengram cropping system under the coastal plain agro-climatic condition. Plants 11 (1):142. doi:10.3390/plants11010142.
  • Mueller, N. D., J. S. Gerber, M. Johnston, D. K. Ray, N. Ramankutty, and J. A. Foley. 2012. Closing yield gaps through nutrient and water management. Nature 490 (7419):254–7. doi:10.1038/nature11420.
  • Nagabovanalli Basavarajappa, M., M. G. G. K. Lingappa, and S. Goudra Mahadevappa. 2021. Nutrient requirement and use efficiency of rice (Oryza sativa L.) as influenced by graded levels of customized fertilizer. Journal of Plant Nutrition 44 (19):2897–911. doi:10.1080/01904167.2021.1927081.
  • Nandan, N., D. K. Roy, S. Kumar, and A. Kumar. 2020. Effect of nitrogen on growth, yield and nutrient uptake of rice under aerobic condition. International Journal of Current Microbiology and Applied Sciences 9 (2):2025–35. doi:10.20546/ijcmas.2020.902.231.
  • Prasad, L. R. V., and D. R. Mailapalli. 2018. Evaluation of nitrogen fertilization patterns using DSSAT for enhancing grain yield and nitrogen use efficiency in rice. Communications in Soil Science and Plant Analysis 49 (12):1401–17. doi:10.1080/00103624.2018.1464180.
  • Proud, C., S. Fukai, B. Dunn, T. Dunn, and J. Mitchell. 2023. Effect of nitrogen management on grain yield of rice grown in a high-yielding environment under flooded and non-flooded conditions. Crop and Environment 2 (1):37–45. doi:10.1016/j.crope.2023.02.004.
  • Qi-Hua, L., W. Xiu, C. Bo-Cong, M. Jia-Qing, and G. Jie. 2014. Effects of low light on agronomic and physiological characteristics of rice including grain yield and quality. Rice Science 21 (5):243–51. doi:10.1016/S1672-6308(13)60192-4.
  • Razavipour, T., M. Khaledian, and M. Rezaei. 2018. Effects of nitrogen levels and its splitting on rice yield and nutrient uptake in rice, Hashemi variety. Human Environment 16 (2):153–64.
  • Redda, A., W. Redae, K. Hailegebriel, G. Weldegerima, G. Tsegay, T. Yirgalem, A. Eyasu, and S. Hussien. 2022. Nitrogen fertilizer management factors affecting nitrogen use efficiency and yield of rice (Oryza sativa L.): A review. Asian Journal of Plant and Soil Sciences 7 (1):1–22.
  • Rehman, H. U., S. M. A. Basra, and A. Wahid. 2013. Optimizing nitrogen-split application time to improve dry matter accumulation and yield in dry direct seeded rice. International Journal of Agriculture and Biology 15 (1):41–7.
  • Rezai, A. M. 2007. Concepts of probability and statistics, 444. Mashhad, Iran: Mashhad Publishing Co.
  • Saju, S. M., N. Thavaprakaash, N. Sakthivel, and P. Malathi. 2019. Influence of high density planting on growth and yield of rice (Oryza sativa L.) under modified system of rice intensification. Journal of Pharmacognosy and Phytochemistry 8 (3):3376–80.
  • Sarwar, N., M. Maqsood, S. Aftab Wajid, and M. Anwar-Ul-Haq. 2011. Impact of nursery seeding density, nitrogen and seeding age on yield and yield attributes of fine rice. Chilean Journal of Agricultural Research 71 (3):343–9. doi:10.4067/S0718-58392011000300001.
  • Sathiya, K., and T. Ramesh. 2009. Effect of split application of nitrogen on growth and yield of aerobic rice. Asian Journal of Experimental Sciences 23 (1):303–6.
  • Shadchina, T. M., and V. V. Dmitrieva. 1995. Leaf chlorophyll content as a possible diagnostic mean for the evaluation of plant nitrogen uptake from the soil. Journal of Plant Nutrition 18 (7):1427–37. doi:10.1080/01904169509364992.
  • Sharma, J. C., M. S. Kuhad, and A. Sharma. 1994. Influence of alkalinity on rice germination and growth, 89–100. Los Baños: International Rice Research Institute.
  • Sharma, S., G. Kaur, P. Singh, S. Alamri, R. Kumar, and M. H. Siddiqui. 2022. Nitrogen and potassium application effects on productivity, profitability and nutrient use efficiency of irrigated wheat (Triticum aestivum L.). PLOS One 17 (5):e0264210. doi:10.1371/journal.pone.0264210.
  • Sheng-Gang, P., H. Sheng-Qi, Z. Jing, W. Jing-Ping, C. Cou-Gui, C. Ming-Li, Z. Ming, and T. Xiang-Ru. 2012. Effects of N management on yield and N uptake of rice in central China. Journal of Integrative Agriculture 11 (12):1993–2000. doi:10.1016/S2095-3119(12)60456-0.
  • Singh, N., P. Paul, A. S. Virdi, P. Kaur, and G. Mahajan. 2014. Influence of early and delayed transplantation of paddy on physicochemical, pasting, cooking, textural, and protein characteristics of milled rice. Cereal Chemistry 91 (4):389–97. doi:10.1094/CCHEM-09-13-0193-R.
  • Thakur, P., S. Kumar, J. A. Malik, J. D. Berger, and H. Nayyar. 2010. Cold stress effects on reproductive development in grain crops: An overview. Environmental and Experimental Botany 67 (3):429–43. doi:10.1016/j.envexpbot.2009.09.004.
  • Tian, G., L. Gao, Y. Kong, X. Hu, K. Xie, R. Zhang, N. Ling, Q. Shen, and S. Guo. 2017. Improving rice population productivity by reducing nitrogen rate and increasing plant density. PLOS One 12 (8):e0182310. doi:10.1371/journal.pone.0182310.
  • Wang, D., S. Chen, Z. Wang, C. Ji, C. Xu, X. Zhang, and B. S. Chauhan. 2014. Optimizing hill seeding density for high-yielding hybrid rice in a single rice cropping system in south China. PLOS One 9 (10):e109417. doi:10.1371/journal.pone.0109417.
  • Wang, W., C. Shen, Q. Xu, S. Zafar, B. Du, and D. Xing. 2022. Grain yield, nitrogen use efficiency and antioxidant enzymes of rice under different fertilizer N inputs and planting density. Agronomy 12 (2):430. doi:10.3390/agronomy12020430.
  • Xie, X., S. Shan, Y. Wang, F. Cao, J. Chen, M. Huang, and Y. Zou. 2019. Dense planting with reducing nitrogen rate increased grain yield and nitrogen use efficiency in two hybrid rice varieties across two light conditions. Field Crops Research 236:24–32. doi:10.1016/j.fcr.2019.03.010.
  • Yahyazadeh, S., H. R. Mobasser, E. Rahimi Petroudi, and A. R. Daneshmand. 2023. Impacts of silicon foliar spraying and nitrogen application techniques on quantitative and qualitative parameters of rice at different planting spaces. Romanian Agricultural Research 40:373–84. doi:10.59665/rar4035.
  • Yoshida, S. 1983. Rice. In: Smith, W. H., & Banta, S. J., Eds., Potential productivity of field crops under different environments, 103–27. Los Baños, Philippines: International Rice Research Institute.
  • Yoshida, S., D. A. Forno, J. H. Cock, and K. A. Gomez. 1976. Laboratory manual for physiological studies of rice. 3rd ed. Los Baños, Philippines: International Rice Research Institute.
  • Yulong, Y., M. Qingfeng, Y. Hao, Z. Qingsong, L. Ye, and Z. Cui. 2021. Climate change increases nitrogen concentration in rice with low nitrogen use efficiency. Earth’s Future. 9 (9):e2020EF001878. doi:10.1029/2020EF001878.
  • Zhang, J., T. Tong, P. M. Potcho, S. Huang, L. Ma, and X. Tang. 2020. Nitrogen effects on yield, quality and physiological characteristics of giant rice. Agronomy 10 (11):1816. doi:10.3390/agronomy10111816.
  • Zheng, H., Y. Chen, Q. Chen, B. Li, Y. Zhang, W. Jia, W. Mo, and Q. Tang. 2020. High-density planting with lower nitrogen application increased early rice production in a double-season rice system. Agronomy Journal 112 (1):205–14. doi:10.1002/agj2.20033.
  • Zhou, W., L. Yan, Z. Fu, H. Guo, W. Zhang, W. Liu, Y. Ye, and P. Long. 2023. Increasing planting density and reducing N application improves yield and grain filling at two sowing dates in double-cropping rice systems. Plants 12 (12):2298. doi:10.3390/plants12122298.
  • Zhu, X. C., J. Zhang, Z. P. Zhang, A. X. Deng, and W. J. Zhang. 2016. Dense planting with less basal nitrogen fertilization might benefit rice cropping for high yield with less environmental impacts. European Journal of Agronomy 75:50–9. doi:10.1016/j.eja.2016.01.003.

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