418
Views
13
CrossRef citations to date
0
Altmetric
Research Articles

Phenology, growth, productivity, and profitability of mungbean as affected by potassium and organic matter under water stress vs. no water stress conditions

, , , , , , , , , , , , & show all
Pages 629-650 | Received 15 Jul 2020, Accepted 17 May 2021, Published online: 05 Jul 2021

References

  • Akhtar, M. E., M. T. Saleem, and M. D. Stauffer. 2003. Potassium in Pakistan Agriculture. Islamabad: Pakistan Agriculture Research Council.
  • Ali, A., M. A. Malik, R. Ahmad, and T. S. Atif. 1996. Response of mungbean (Vigna radiata L.) to potassium fertilization. Pakistan Journal of Agricultural Sciences 33:123–8.
  • Amanullah, and A. Khan. 2015. Phosphorus and compost management influence maize (zea mays) productivity under semiarid condition with and without phosphate solubilizing bacteria. Frontiers in Plant Science (6):1083.
  • Amanullah, and Hidayatullah. 2016. Influence of Organic and Inorganic Nitrogen on Grain Yield and Yield Components of Hybrid Rice in Northwestern Pakistan. Rice cience 23 (6):326–33. doi:https://doi.org/10.1016/j.rsci.2016.02.007.
  • Amanullah, and S. Khalid. 2016. Integrated use of phosphorus, organic matter and biofertilizers improve maize productivity under semiarid condition. In: Organic fertilizers—from basic concepts to applied outcomes, ed. Marcelo L. Larramendy and S. Soloneski, 137–55. Rijeka, Croatia: InTech.
  • Amanullah, A. M.Asif, and L. K. Almas. 2012. Agronomic efficiency and profitability of P-fertilizers applied at different planting densities of maize in Northwest Pakistan. Journal of Plant Nutrition 35:331–341. doi: https://doi.org/10.1080/01904167.2012.639916.
  • Amanullah, Majidullah, and A. Muhammad. 2016. Effect of tillage and phosphorus interac on on yield of mungbean (Vigna radiata L., Wilczek) with and without moisture stress condition. PONTE 72 (2):114–139.
  • Amanullah, Saifullah, K. Nawab, A. Iqbal, S. Fahad, M. J. Khan, H. Akbar, I. H. Ikramullah, and A. Ali. 2017. Response of summe pulses (mungbean vs. mash bean) to integrated use of organic carbon sources and phosphorus in dry lands. African Journal of Agricultural Research 12 (50):3470–3490.
  • Amanullah. 2016. International Year of Pulses 2016. EC Agriculture ECO.01: 05-07.
  • Amin, M. R., M. A. Karim, M. R. Islam, S. Aktar, and M. A. Hossain. 2016. Effect of flooding on growth and yield of mungbean genotypes. Bangladesh Journal of Agricultural Research 41 (1):151–162. doi: https://doi.org/10.3329/bjar.v41i1.27680.
  • Amin, M. R., M. A. Karim, Q. A. Khaliq, M. R. Islam, and S. Aktar. 2016. Effect of nitrogen and potassium on the root growth, nutrient content and yield of mungbean (Vigna radiata L. Wilczek) under waterlogged condition. The Agriculturists 13 (1):67–78. doi: https://doi.org/10.3329/agric.v13i1.26549.
  • Asghar, A., M. A. Nadeem, M. Maqbool, and M. Riaz. 2006. Effect of different levels of potassium on growth, yield and protein contents of mungbean varieties. Pakistan Journal of Agricultural Research 44 (2):409–417.
  • Benlloch-González, M., J. M. Quintero, M. J. García-Mateo, J. M. Fournier, and M. Benlloch. 2015. Effect of water stress and subsequent re- watering on K + and water flows in sunflower roots. A possible mechanism to tolerate water stress. Environmental and Experimental Botany 118:78–84. doi: https://doi.org/10.1016/j.envexpbot.2015.06.008.
  • Campos-Vega, R., G. Loarca-Pina, and B. D. Oomah. 2010. Minor components of pulses and their potential impact on human health. Food Research International 43 (2):461–482. doi: https://doi.org/10.1016/j.foodres.2009.09.004.
  • Ezzat, M., A. E. Lateef, M. M. Tawfik, M. Hozyin, B. A. Bakry, T. A. Elewa, A. A. Farrag, and A. A. Bahr. 2012. Soil and foliar fertilization of mungbean (Vigna radiata (L) wilczek) under Egyptian conditions. Elixir Agriculture 47:8622–8628.
  • FAO 2015. Status of the World's Soil Resources (SWSR). Rome, Italy: Food and Agriculture Organization of the United Nations.
  • FAO 2016. FAOSTAT. Rome, Italy: Food and Agriculture Organization of the United Nations.
  • Fooladivanda, Z., M. Hassanzadehdelouei, and N. Zarifinia. 2014. Effects of water stress and potassium on quantity traits of two varieties of mung bean (Vigna radiata L.). Cercetari Agronomice in Moldova 47 (1):107–114. doi: https://doi.org/10.2478/cerce-2014-0011.
  • Ghulam, A., M. Qasim, and J. Khan. 2011. Nutrient uptake, growth and yield of wheat (Triticum aestivum L.) as affected by manganese application. Pakistan Journal of Botany 43 (1):607–616.
  • Goud, V. V., N. M. Konde, P. V. Mohod, and V. K. Kharche. 2014. Response of chickpea to potassium fertilization on yield, quality, soil fertility and economic in vertisols. Legume Research - An International Journal 37 (3):311–315. doi: https://doi.org/10.5958/j.0976-0571.37.3.047.
  • Ibrahim, M. M., and M. S. S. A. Bassyuni. 2012. Effect of irrigation intervals, phosphorus and potassium fertilization rates on productivity and chemical constituents of mungbean plants. Journal of Agricultural and Biological Science 8 (2):298–304.
  • Kataria, N., P. Rani, M. H. Dar, and N. Singh. 2014. Potassium to alleviate the adverse effect of water deficit in mungbean [Vigna radiata (L.) Wilczek]. International Journal of Current Research in Biosciences and Plant Biology 1 (3):33–40.
  • Khairul, M., J. F. Moonmoona, and M. N. Haque. 2015. Growth and yield of Mungbean as influenced by potassium and sulphur. Annals of Biological Research 61:6–10.
  • Kumar, P., P. Kumar, T. Singh, A. K. Singh, and R. I. Yadav. 2014. Effect of different potassium levels on mungbean under custard apple based Agri-Horti system. African Journal of Agricultural Research 9 (8):728–734.
  • Kurhade, P. P., H. N. Sethi, and R. S. Zadode. 2015. Effect of different levels of potassium on yield, quality, available nutrient and uptake of blackgram. International Journal of Agricultural Sciences 11 (1):175–178. doi: https://doi.org/10.15740/HAS/IJAS/11.1/175-178.
  • Mondal, M. M. A., M. S. A. Fakir, A. K. M. A. U. D. Prodhan, M. R. Ismail, and M. Ashrafuzzaman. 2011. Deflowering effect on vasculature and yield attributes in raceme of mungbean [Vigna radiata (L.) Wilczek]. Journal of Crop Science 5 (11):1339–1344.
  • Mondal, R., and B. C. Sikder. 1999. Effect of nitrogen and phosphorus on growth and yield of mungbean grown in saline soil of Khulna. Bangladesh. Physiology Research 12:85–88.
  • Muhammad, D., and R. A. Khattak. 2009. Growth and nutrient concentration of maize in press-mud treated saline-sodic soils. Soil Environment 28:145–155.
  • Mustafa, R., A. Shaheen, A. S. Omar, and H. Ismaaie. 2016. Effect of Irrigation timing and Potassium fertilizing on the some growth characteristics and production for Mungbean (Vigna radiata L.). International Journal of Scientific Research 6 (3):2250–3153.
  • Quddus, M., M. Hossain, H. M. Naser, B. Anwar, M. Siddiky, and M. Ali. 2019. Influence of potassium addition on productivity, quality and nutrient uptake of mungbean (Vigna radiata L.). Journal of Agricultural Studies 7 (1):21–40. doi: https://doi.org/10.5296/jas.v7i1.14269.
  • Ranawake, A. L., N. Dahanayaka, U. G. S. Amarasingha, W. D. R. J. Rodrigo, and U. T. D. Rodrigo. 2011. Effect of water stress on growth and yield of mung bean (Vigna radiata L). Tropical Agricultural Research and Extension 14 (4):2011.
  • Raza, M. H., G. U. Sadozai, M. S. Baloch, E. A. Khan, I. Din, and K. Wasim. 2012. Effect of irrigation levels on growth and yield of mungbean. Pakistan Journal of Nutrition 11 (10):974–977. doi: https://doi.org/10.3923/pjn.2012.974.977.
  • Robertson, M., S. Fukai, and M. Peoples. 2004. The effect of timing and severity of water deficit on growth, development, yield accumulation and nitrogen fixation of mungbean. Field Crops Research 86 (1):67–80. doi: https://doi.org/10.1016/S0378-4290(03)00120-5.
  • Sadeghpour, O. 2009. The influence of water stress on biomass and harvest index in three mungbean (Vigna radiata L.) cultivars. Asian Journal of Plant Science 8 (3):245–249.
  • Sangakkara, U. R. 1990. Effect of potassium fertilizer on growth and yield of mungbean (Vigna radiata L. Wilczek). Journal of Applied Seed Production 8:33–38.
  • Sangakkara, U. R., G. Pietsch, M. Gollner, and B. Freyer. 1990. Impact of organic matter and method of addition on selected soil parameters, growth and yields of mungbean grown in a minor season in the humid tropics. Indian Journal of Agricultural Sciences 57 (1):319–327.
  • Saxena, K. K., H. R. Verma, and H. K. Saxena. 1996. Effect of phosphorus and potassium on green gram (Phaseolus radiatus). Indian Journal of Agronomy 41 (1):84–87.
  • Seran, T. H., and R. N. M. Shahardeen. 2013. Marketable pod yield of vegetable cowpea (Vigna unguiculata) as influenced by organic manures fermented with them solution. Journal of. Horticulture and Forestry 6:19–23.
  • Shahzad, N., S. Kanwal, T. Aziz, and M. Maqsood. 2014. Foliar application of potassium mitigates negative impact of water deficit stress and improves physiological growth of mungbean (Vigna radiata L.). Korean Society of Soil and Fertilizer Academic Journal :402–402.
  • Steel, J. W., R. R. Nelson, and W. Sidney. 1982. An evolutionary theory of economic change. Cambridge: Harvard University Press. 4: 455–84.
  • Tahir, M., R. Maqbool, A. Majeed, A. U. Rehman, and M. A. Zafar. 2014. Potential of foliar applied di-ammonium phosphate (dap) and potassium (K) in achieving maximum productivity and quality of mash bean (Vigna Mungo L.). Scientia Agriculture 7 (3):147–149.
  • Tariq, M., A. Khaliq, and M. Umar. 2001. Effect of phosphorus and potassium application on growth and yield of mungbean (Vigna radiata L.). 2001. Journal of Biological Sciences 1 (6):427–428. doi: https://doi.org/10.3923/jbs.2001.427.428.
  • Tawfik, K. M. 2008. Effect of water stress in addition to potassium application on mungbean. Australian Journal of Basic and Applied Sciences 2 (1):42–52.
  • Thomas, M. J., S. Fukai, and M. B. Peoples. 2004. The effect of timing and severity of water deficit on growth, development, yield accumulation and nitrogen fixation of mungbean. Field Crops Research 86 (1):67–80.
  • Uddin, S., S. Parvin, and M. A. Awal. 2013. Morpho-physiological aspects of mungbean (Vigna radiata L.) In response to water stress. International Journal of Agricultural Science Research 3 (2):137–148.
  • Werner, D. 2005. Production and biological nitrogen fixation of tropical legumes. In D. Werner & W.E. Newton, eds. Nitrogen fixation in agriculture, forestry, ecology, and the environment, Dordrecht, the Netherlands: Springer 1–13.
  • Zahan, S. A., M. A. Alim, M. M. Hasan, U. K. Kabiraj, and M. B. Hossain. 2009. Effect of potassium levels on the growth, yield and yield attributes of lentil. International Journal of Sustainable Crop Production 4 (6):1–6.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.