Original Article
Growth and Productivity of Maize (Zea mays L.) as Influenced by Nitrogen Management Options
Year: 2021 | Month: June | Volume 14 | Issue 2
Asibi, A.E., Qiang Chai, Q. and Coulter, J.A. 2020. Mechanisms of nitrogen use in maize. 2020. Agron., 9: 775.
View at Google ScholarBalasubramanian, V., Alves, B., Aulakh, M., Bekunda, M., Cai, Z., Drinkwater, L., Mugendi, D., Van-Kessel, C. and Oenema, O. 2004. Crop, environmental, and management factors affecting nitrogen use efficiency. Agriculture and the Nitrogen Cycle, edited by: Mosier, AR, Syers, JK, and Freney, J., Scope, 65: 19-33.
View at Google ScholarBiradar, D.P., Aladakatti, Y. R., Shivamurthy, D., Satyanarayana, T., Majumdar, K., Visiting, I.P.N.I. and Aladakatti, Y.R. 2012. Managing fertilizer nitrogen to optimize yield and economics of maize-wheat cropping system in Northern Karnataka. Better Crops, South Asia, pp. 19-21.
View at Google ScholarDonald, C.M. 1962. In search of yield. J. Aus. Ins. Agric. Sci., 28: 171- 178.
View at Google ScholarFAOSTAT. 2020. Food and Agriculture Organization of the UN, Data, Crops. Available at: http accessed on 05 June 2021.
View at Google ScholarFAOSTAT. 2020. Food and Agriculture Organization of the UN, Data, Crops. Available at: http accessed on 05 June 2021.
View at Google ScholarGhosh, D., Brahmachari, K., Brestic, M., Ondrisik, P., Hossain, A., Skalicky, M., Sarkar, S., Moulick, D., Dinda, N.K., Das, A., Pramanick, B., Maitra, S. and Bell, R.W. 2020. Integrated Weed and Nutrient Management Improve Yield, Nutrient Uptake and Economics of Maize in the Rice-Maize Cropping System of Eastern India. Agron., 10: 1906.
View at Google ScholarGomez, K.A. and Gomez, A.A. 1984. Statistical Procedures for Agricultural Research, 2nd Ed. John Wiley and Sons. New York, pp. 639.
View at Google ScholarHammad, H.M., Ahmad, A., Wajid, A. and Akhter, J.A.V.A.I.D. 2011. Maize response to time and rate of nitrogen application. Pak. J. Bot., 43(4): 1935-1942.
View at Google ScholarHirpa, K. and Bulto, T. 2016. Effects of different termite management practices on maize production in Assosa district, Benishangul Gumuz Region, Western Ethiopia. J. Biol. Agric. Healthcare., 6(23): 1-5.
View at Google ScholarICAR-IIMR Annual report, 2020. ICAR-Indian Institute of Maize Research, PAU Campus,Ludhiana-141004. https:// iimr.icar.gov.in/publications-category/annual-reports/
View at Google ScholarICAR-IIMR Director ’s report, 2019-20. ICAR-Indian Institute of Maize Research, PAU Campus, Ludhiana - 141004. https://aicrpmaize.icar.gov.in/aicrp-news/
View at Google ScholarJat, M.L. Satyanarayana, T., Majumdar, K. Parihar, C.M. Jat, S.L., Tetarwal, J.P. and Jat, R.K. 2013. Fertilizer best management practices for maize systems. Indian J. Fert., 9(4): 80-94.
View at Google ScholarKumar R. Kumawat N. Kumar, S. Singh A.K. and Bohra J.S. 2017. Effect of NPKS and Zn fertilization on growth, yield and quality of baby corn-a review. Int. J. Curr. Microbiol. Appl. Sci., 6(3): 1392-1428.
View at Google ScholarKumar, R., Singode, A., Chikkappa, G.K., Mukri, G., Dubey, R.B., Komboj, M.C. and Yadav, O.P. 2014. Assessment of genotype x environment interactions for grain yields in maize hybrids in rainfed environments. Sabrao J. Breeding Gen., 46(2): 284-292.
View at Google ScholarMaitra, S., Shankar, T. and Banerjee, P. 2020. Potential and advantages of maize-legume intercropping system, In: Maize - Production and use (Ed. Dr. Akbar Hossain), Intechopen, London, UK, 978-1-83880-262-2,103-116.
View at Google ScholarMaitra, S., Shankar, T., Manasa, P. and Sairam, M. 2019. Present Status and Future Prospects of Maize Cultivation in South Odisha. Int. J. Biores. Sci., 6(1): 27-33.
View at Google ScholarMaitra, S., Zaman, A., Mandal, T.K. and Palai, J.B. 2018. Green manures in agriculture: A review, J Pharm. Phytochem., 7(5): 1319-1327.
View at Google ScholarManasa, P., Maitra, S. and Barman, S. 2020. Yield attributes, yield, competitive ability and economics of summer maize-legume intercropping system. Int. J. Agric. Environ. Biotechnol., 13(1): 33-38.
View at Google ScholarMatusso, J.M.M., Mugwe, J.N. and Mucheru-Muna, M. 2014. Potential role of cereal-legume intercropping systems in integrated soil fertility management in smallholder farming systems of Sub-Saharan Africa. Res. J. Agric. Environ. Manage., 3(3): 162-174.
View at Google ScholarMeng, O., Liu, B., Yang, H. and Chen, X. 2020. Solar dimming decreased maize yield potential on the North China Plain. Food Energy Secure., 9: e235.
View at Google ScholarMohanty, M., Sinha, N.K., Patidar, R.K., Somasundaram, J., Chaudhary, R.S., Hati, K.M. and Rao, S. 2017. Assessment of maize (Zea mays L.) productivity and yield gap analysis using simulation modeling in subtropical climate of central India. J. Agrometeorol., 19(4): 343-346.
View at Google ScholarNaik, M.R., Hemalatha, S., Reddy, Naga, K.V. and Umamahesh, M.V. 2019. Calibrating leaf colour chart for nitrogen management in Rabi maize (Zea mays L.) under varied plant density. J. Pharm. Phytochem., 8(3): 4360-4364.
View at Google ScholarNduwimana, D., Mochoge, B., Danga, B., Masso, C., Maitra, S. and Gitari, H. 2020. Optimizing nitrogen use efficiency and maize yield under varying fertilizer rates in Kenya. Int. J. Biores. Sci., 7(2): 63-73.
View at Google ScholarOktem, A., Oktem A.G. and Emeklier, H.Y. 2010. Effect of nitrogen on yield and some quality parameters of sweet corn. Comm. Soil Sci. Plant Analysis, 41(7): 832-847.
View at Google ScholarSelassie, Y.G. 2015. The effect of N fertilizer rates on agronomic parameters, yield components and yields of maize grown on Alfisols of North-western Ethiopia. Environ. Sys. Res., 4(1): 1-7.
View at Google ScholarShankar, T., Banerjee, M., Malik, G.C., Dutta, S., Maiti, D., Maitra, S., Alharby, H., Bamagoos, A., Hossain, A. and Ismail, I.A. 2021. The productivity and nutrient use efficiency of rice–rice–black gram cropping sequence are influenced by location specific nutrient management. Sustain., 13: 3222.
View at Google ScholarSharma, L.K. and Bali, S.K. 2018. A review of methods to improve nitrogen use efficiency in agriculture. Sustain., 10: 51.
View at Google ScholarSuri, V.K. and Choudhary, A.K. 2012. Fertilizer Economy through Vesicular Arbuscular mycorrhizae Fungi under Soil-Test Crop Response Targeted Yield Model in Maize–Wheat–Maize Crop Sequence in Himalayan Acid Alfisol. Comm. Soil Sci. Plant Analysis, 43(21): 2735-2743.
View at Google ScholarYue, K., Li, L., Xie, J., Fudjoe, S.K., Zhang, R., Luo, Z. and Anwar, S. 2021. Nitrogen Supply Affects Grain Yield by Regulating Antioxidant Enzyme Activity and Photosynthetic Capacity of Maize Plant in the Loess Plateau. Agron., 11: 1094.
View at Google ScholarZhou, B., Sun, X., Wang, D., Ding, Z., Li, C., Ma, W. and Zhao, M. 2019. Integrated agronomic practice increases maize grain yield and nitrogen use efficiency under various soil fertility conditions, Crop J., 7(4): 527-538.
View at Google Scholar



