S0049-3848(14)00284-9

Original Article

Productivity and Profitability of Pearl Millet as Affected by Zinc and Iron Application in Arid and Semi-arid Region

Year: 2021 | Month: September | Volume 14 | Issue 3

References (42)

1.Ali, S.A., Khan, A., Marija, G., Arif, M., Fida, M. and Bipis, S. 2008. Assessment of different crop nutrient management practices for yield improvement. Aus. J. Crop Sci., 2(3): 150-159.

View at Google Scholar

2.Anitha, S.E., Sreenivasan and Purushothaman, S.M. 2005. Response of cowpea to foliar nutritional of zinc and iron in the oxisols of Kerala. Legume Res., 28(4): 294-296.

View at Google Scholar

3.Bhamare, R.S., Sawale, D.D., Jagtap, P.B., Tamboli, B.D. and Kadam, M. (2018). Effect of iron and zinc on growth and yield of French bean in iron and zinc-deficient inceptisol soil. Int. J. Chem. Stud., 6(3): 3397-3399.

View at Google Scholar

4.Bybordi, A. and Malakouti, M.J. 2003. Effect of iron, manganese and copper on qualitative and quantitative traits of wheat under salinity conditions. J. Soil and Water Sci., 17: 140-149.

View at Google Scholar

5.Choudhary, H., Yadav, L.R., Yadav, M.R., Kantwa, R. and Kumawat, R. 2018. Growth and productivity of mungbean varieties under foliar application of iron in the semi-arid eastern plain zone of Rajasthan. Int. J. Chem. Stud., 6(5): 2269-2274.

View at Google Scholar

6.Elayaraja, D. 2018. Effect of micronutrients and organic manures on sesame. J. Ecobiotechnology, 10: 12-15.

View at Google Scholar

7.Elayaraja, D. 2018. Effect of micronutrients and organic manures on sesame. J. Ecobiotechnology, 10: 12-15.

View at Google Scholar

8.Fouda, K.F. and Abd-Elhamied, A.S. 2017. Integrated effect of foliar fertilization of Fe, Zn and rates of P fertilization on growth and yield of cowpea. J. Soil Sci. and Agric. Engg., 8(12): 733-740.

View at Google Scholar

9.Gaffar, A., Ehsanullah, Nadeem, E. and Sultan, H.K. 2011. Influence of zinc and iron on yield and quality of sugarcane planted under various trench spacing. Pak. J. Agric. Sci., 192: 181-189.

View at Google Scholar

10.Gupta, K. 2012. Role of phosphorus and zinc in enhancing growth, yield and quality of fennel crop in the irrigated condition of North-West Rajasthan. PhD. Thesis, SKRAU, Bikaner.

View at Google Scholar

11.Guruprasad, B.P., Kurigod, V., Hundekar, S.T. 2009. Influence of methods of iron sulphate application on yield and nutrient uptake by groundnut genotypes on calcareous soils. Karnataka J. Agric. Sci., 22(5): 1104-1106.

View at Google Scholar

12.Habib, M. 2012. Effect of supplementary nutrition with Fe, Zn chelates and urea on wheat quality and quantity. Afr. J. Biotechno., 11(11): 2661-65.

View at Google Scholar

13.Jamal, A., Khan, M.I., Tariq, M. and Fawad, M. 2018. Response of mungbean crop to different levels of applied iron and zinc. J. Horti. and Plant Res., 3: 13-22.

View at Google Scholar

14.Karwasra, R.S. and Kumar, A. 2007. Effect of zinc application on growth, biomass and nutrient uptake by chickpea in calcareous soils. Haryana J. Agron., 23(1-2): 111-112.

View at Google Scholar

15.Khan, Muhammad Meer, Abdul Manaf, Fayyaz-ul-Hassan and Muhammad Sheeraz Ahmed 2017. Micronutrients (Zn, B and Mn) Effects on Sesame (Sesamum indicum L.). Int. J. Agron. Agri. Res., 10(5): 92-101.

View at Google Scholar

16.Kharol, S., Sharma, M., Purohit, H.S., Jain, H.K., Lal, M. and Sumeriya, H.K. 2014. Effect of sulphur and zinc nutrition on yield, quality and nutrient content and uptake by chickpea. Environ. and Eco., 32(4): 1470-1474.

View at Google Scholar

17.Khorgami, A. and Farnia, A. 2006. Effect of phosphorus and zinc fertilization on yield and yield components of chickpea cultivars. Afr. Crop Sci. Conference Proce., 9: 205-208.

View at Google Scholar

18.Kim, J. and Rees, D.C. 1992. Structural models for the metal centres in the nitrogenous molybdenum-iron protein. Sci., 257: 1677-82.

View at Google Scholar

19.Kumawat, R.N., Rathore, P.S. and Pareek, N. 2006. Response of mungbean to S and Fe nutrition grown on calcareous soil of Western Rajasthan. Ind. J. Pulses Res., 19(2): 228-230.

View at Google Scholar

20.Malakouti, M.J. and Tehrani, M. 2005. The role of micronutrients in increasing yield and improving the quality of crops. IIIrd ed. Tarbiat Modarres University Publications.

View at Google Scholar

21.Meena B.L., Kumar P., Kumar A., Meena R. L., Kaledhonkar M.J. and Sharma P.C. 2018. Zinc and Iron Nutrition to Increase the Productivity of Pearl Millet- Mustard Cropping System in Salt Affected Soils. Int. J. Curr.Microb. App. Sci., 7(8): 3201-3211.

View at Google Scholar

22.Mondal, M.M.A., Rahman, M.A., Akhter, M.B. and Fakivz M.S.A. 2011. Effect of foliar application of nitrogen and micronutrient on growth and yield in mungbean. Legume Res., 34(3): 166-171.

View at Google Scholar

23.Patel, M.M., Patel, I.C., Patel, R.I. and Acharya, S. 2011. Effect of zinc and iron on yield and yield attributes of rainfed cowpea. Annals of Arid Zone, 50(1): 17-19.

View at Google Scholar

24.Prasad, S.K., Singh, M.K. and Singh R. 2014. Effect of nitrogen and zinc fertilizer on pearl millet (Pennisetum glauccum) under Agri-Horti system of eastern Uttar Pradesh. The Bio-scan, 9(1): 163-166.

View at Google Scholar

25.Rakshit, A., Sarkar, B. and Abhilash, P.C. 2018. Soil Amendments for Sustainability: Challenges and Perspectives, Taylor & Francis Group, NW, Suite 300Boca Raton, ISBN FL 978-0-8153-7077-2, Catalogue Number: K338140.

View at Google Scholar

26.Rahman, M.M., Adan, M.J., Chowdhury, M.S.N., Ali, M.S. and Mahabub, T.S. 2015. Effect of phosphorus and zinc on growth and yield of mungbean. Int. J. Sci. and Res. Pub., 5(2): 2250-3153.

View at Google Scholar

27.Roy, P.D., Narwal, R.P. Malik, R.S., Saha, B.N. and Kumar S. 2013. Impact of zinc application method on green gram productivity and grain zinc fortification. J. Environ. Bio., 35: 851-854.

View at Google Scholar

28.Sahu, M.P., Kumawat, S.M., Singh, G., Ramaswamy, N.K. and Souza, S.F. 2007. Consolidated progress report of the research project “Establishment of radiotracer laboratory and multilocation testing of the crop”. RAU, Bikaner.

View at Google Scholar

29.Saini, A.K. and Singh, R. 2017. Effect of sulphur and iron fertilizer on growth and yield of green gram. Int. J. Cur. Microb. and Appl. Sci., 6(6): 1922-1929.

View at Google Scholar

30.Salam, P.K., Rajput, R.S., Mishra, P.K., Anita. and Shrivastava, G.K. 2004. Effect of micronutrients fertilization on productivity potential of urdbean. Annals of Agric. Res., 25(2): 329-332.

View at Google Scholar

31.Sammauria, R. and Yadav, R.S. 2010. Performance of fenugreek - pearl millet system as influenced by phosphorus and zinc application to fenugreek. Ind. J. Agrono., 55: 197-202.

View at Google Scholar

32.Satyavathi, C.T. 2021. Annual report 2020–2021. All India Coordinated Pearl Millet Improvement Project, Indian Council of Agricultural Research, Mandor, Jodhpur 342 304, Rajasthan, India, pp. 1–18.

View at Google Scholar

33.Sharma, K., Jain, K.K. and Sharma, S.K. 2004. Yield component of cluster bean as influenced by zinc and thiourea. J. Annals of Agric. Res., 25(1): 169-171.

View at Google Scholar

34.Sharma, P. 2006. Effect of vermicompost, potassium and iron on the performance of fenugreek. Ph.D. Thesis, Rajasthan Agricultural University, Bikaner.

View at Google Scholar

35.Sharma, V. and Abrol, V. 2007. Effect of phosphorous and zinc application on yield and uptake of phosphorus and zinc by chickpea under rainfed conditions. J. Food Legumes, 20: 49-51.

View at Google Scholar

36.Singh, M.V. 2008. Micronutrient deficiencies in Indian soils and crops. In: Micronutrient deficiencies in global crop production. (Ed.B.J. Alloway). Springer Science + Business Media B.V. varieties developed at BARC. RAU, Bikaner. pp. 89-108.

View at Google Scholar

37.Singh, V., Yadav, R.K., Yadav R., Malik, R.S., Yadav, N.R., Singh, J. and Meena, M.D. 2013. Effect of different iron and zinc applications on growth, yield and quality parameters of mungbean. Annals of Agri-Bio Res., 18(2): 164-175.

View at Google Scholar

38.Solanki, D.R., Swata and Solanki, M.S. 2017. Growth, yield and attributes of summer green gram as influenced by the application of sulphur and zinc levels. Int. J. Agric. Sci. and Res., 7(4): 663-668.

View at Google Scholar

39.Thalooth, A.T., Tawfik, M.M. and Mohamed, H.M. 2006. A comparative study on the effect of foliar application of zinc, potassium and magnesium on growth, yield and some chemical constituents of mungbean plants grown under water stress conditions. World J. Agric. Sci., 2(1): 37-46.

View at Google Scholar

40.Trivedi, A.K., Hemantaranjan, A. and Pandey, S.K. 2011. Iron application may improve the growth and yield of soybean. Ind. J. Plant Physio., 16(3/4): 309-313.

View at Google Scholar

41.Vaja, R.P., Bhuva, H.M., Mokariya, L.K. and Jani1, C.P. 2020. Effect of Zinc and Iron Fortification on Growth and Yield of Summer Pearl Millet (Pennisetum glaucum (L.) R. Br. Emend. Stuntz). Int. J. Curr. Microb. App. Sci., 9(10): 2699-2704.

View at Google Scholar

42.Verma, H.R. and Yadav, M. 2004. Effect of sulphur and zinc on growth, metabolism, yield and quality of mungbean. National Seminar of Plant Physiology, pp. 31-32.

View at Google Scholar

International Journal of Agriculture Environment & Biotechnology(IJAEB)| In Association with AAEB

27081781 - Visitors since February 20, 2019