Sustaining farm productivity throughwatershed based participatory balance nutrient management:Acase study fromSemi-AridTropics of central India

Authors

  • D.R. Palsaniya ICAR - National Research Centre for Agroforestry, Jhansi, Uttar Pradesh - 248 003 Author
  • Ramesh Singh ICAR - National Research Centre for Agroforestry, Jhansi, Uttar Pradesh - 248 003 Author
  • R.K. Tewari ICAR - National Research Centre for Agroforestry, Jhansi, Uttar Pradesh - 248 003 Author
  • S.K. Dhyani ICAR - National Research Centre for Agroforestry, Jhansi, Uttar Pradesh - 248 003 Author
  • R.S. Yadav ICAR - National Research Centre for Agroforestry, Jhansi, Uttar Pradesh - 248 003 Author
  • S.P.Wani International Crop Research Institute for Semi Arid Tropics, Hyderabad, Andhra Pradesh - 502319 Author
  • R. Sachan International Crop Research Institute for Semi Arid Tropics, Hyderabad, Andhra Pradesh - 502319 Author
  • S.N. Pandey Development Alternatives (NGO), Jhansi, Uttar Pradesh - 248 003. Author

DOI:

https://doi.org/10.53550/

Keywords:

Adoption, Balance nutrient, Micronutrient, Participatory trials, Watershed

Abstract

Participatory trials on balance nutrients were conducted during 2009-12 in a severely micronutrient deficit semiarid central Indian watershed to promote balance use of nutrients. Application of micronutrient increased groundnut pods plant by 9%, seeds pod by6%and pod yield by13%(1132 kg ha ) compared to control in entry point trials. Similarly, chickpea variety “JG-130” grown with balance fertilizers also recorded 15 and 40% higher grain yield compared to “JG- 130” and local chickpea variety, respectively grown with traditional practice. Application of B, Zn and S increased mean groundnut pod yield by 16.8% over control in further up scaling trials. The study on residual effect of balance fertilization indicated that grain yield of succeeding wheat, barley, chickpea and mustard increased by 8.3, 10, 8.8 and 9.2%, respectively. Further, the sustainability index of direct balance fertilization to groundnut was 0.8 and it was 0.76, 0.74, 0.76 and 0.83 in residual effect in succeeding wheat, barley, gram and mustard, respectively. Although nearly 88% farmers were convinced by the impact of micronutrients, but only 9% farmers actually used them in kharif, 2012 and availability of micronutrients emerged as the major hurdle in up scaling.

References

Girish Chander, Wani, S.P., Sahrawat, K.L., Pardhasaradhi, G., Rajesh, Rao, C.N., Pal, C.K. and Kamadi, P. 2011. Macro benefits from Zinc, Boron and Sulphur fertilization of rainfed systems in the Semi Arid Zone of India. Resilient Dryland Systems, ICRISAT, Patancheru, A.P., India. http://www.zinccrops2011.org/presentations/2011_zinccrops2011_chander_abstract.pdf)

Kokate, K.D., Reddy, G.R. and Sudhakar, N. 2012. On-farm validation of nutrients response in different locations of Maharashtra and Andhra Pradesh. Indian J. Agril. Sci., 82(8): 697 701.

Kokate, K.D., Reddy, G.R., Sudhakar, N., Dattatri, K. and Reddy, K.M. 2010. Plant Nutrient Management for Enhancing Productivity of Crops (Explorations of KVKs), 48p. Zonal Project Directorate, Zone-V, Hyderabad.

Palsaniya, D.R., Singh, R., Tewari, R.K., Yadav, R.S. and Dhyani, S.K. 2012a. Integrated watershed management for natural resource conservation and livelihood security in Semi Arid Tropics of India. Indian J. Agril. Sci., 82(3): 241-247.

Palsaniya, D.R. and Ahlawat, I.P.S. 2009. Sulphur management in pigeonpea (Cajanus cajan)-wheat (Triticum aestivum) cropping system. 54(3): 272-277.

Palsaniya, D.R. and Ahlawat, I.P.S. 2007. Crop productivity, quality and nutrient uptake of pigeonpea-wheat cropping system as influenced by sulphur management. Indian J. Agril. Sci., 77(10): 660-663.

Palsaniya, D.R., Tewari, R.K., Singh, R., Yadav, R.S. and Dhyani, S.K. 2010. Farmer agroforestry land use adoption interface in degraded agroecosystem of Bundelkhand region, India. Range Manage. Agrofor., 31(1): 11 19.

Palsaniya, D.R., Singh, R., Tewari, R.K., Yadav, R.S., Kumar, R.V. and Dhyani, S.K. 2012b. Integrated watershed management for sustainable agricultural production in Semi-Arid Tropics of India. Indian J.Agron 57 (4): 310-318.

Palsaniya, D.R., Singh, R., Yadav, R.S., Tewari, R.K. and Dhyani, S.K. 2011.Now it is water all theway in Garhkundar Dabar watershed of drought prone semi arid Bundelkhand, India. Curr. Sci., 100(9): 1287-1288.

Palsaniya, D.R., Singh, R., Yadav, R.S., Tewari, R.K., Dwivedi, R.P., Kumar, R.V., Venkatesh, A., Kareemulla, K., Bajpai, C.K., Singh, R., Yadav, S.P.S., Chaturvedi, O.P. and Dhyani, S.K. 2009. Participatory Agro-ecosystem Analysis and Identification of Problems in Garhkundar-Dabar Watershed of Central India. Indian J.Agrofor., 11(1): 91-98.

Palsaniya, D.R., Singh, R., Tewari, R.K., Yadav, R.S., Dwivedi, R.P., Kumar, R.V., Venkatesh, A., Kareemulla, K., Bajpai, C.K., Singh, R., Yadav, S.P.S., Chaturvedi, O.P. and Dhyani, S.K. 2008. Socio economic and livelihood analysis of people in Garhkundar-Dabar watershed of central India. Indian J. Agrofor 10(1): 65-72.

Rattan, R.K., Patel, K.P., Manjaiah, K.M. and Datta, S.P. 2009. Micronutrients in soil, plant, animal and human health. J. Indian Soc. Soil Sci., 57(4): 546-558.

Rego, T.J., Wani, S.P., Saharawat, K.L. and Pardha saradhi, G. 2005. Macro benefits from B, Zn and S application in SAT: A step to grey to green revolution in agriculture. Global Theme on Agroecosystem Report No. 16. ICRISAT, Paten cheru, 502324, Andhra Pradesh, India, 24p.

Rego, T.J., Sahrawat, K.L., Wani, S.P. and Pardha saradhi, G. 2007.Widespread deficiencies of Sul fur, Boron, and Zinc in Indian Semi-Arid Tropical soils: On farm crop responses. 30(10): J. Plant Nutri., 1569 1583.

Samra, J.S. 1997. Status of research on watershed management. CSWCRTI, Dehradun.

Saxena, S.K. 1995. India: constraint and opportunities for fertilizer use. Agrochemicals News in Brief 18 (No. 2).

Shukla, A.K. and Behera, S.K. 2012. Micronutrient fertilizers for higher productivity. Indian J. Ferti., 8(4): 100-117.

Shukla, A.K., Behera, S.K., Subba Rao, A. and Singh, A.K. 2012. State wise micro and secondary nutrients recommendations for different crops and cropping

systems. Research Bulletin No.1/2012, IISS, Bhopal, pp. 1-40.

Swarup, A. 1998. Emerging soil fertility management issues for sustainable crop production in irrigated systems: In Long term fertility management through IPNS. ISSS, Bhopal, India, pp. 54-68.

Takkar, P.N. 1996. Micronutrient research and sustainable agriculture productivity. J. Indian Soc. Soil Sci., 44: 563 581.

The Financial Express. 2006. Grave sulphur deficiency in Indian soils. October 5, 2006.

Vasuki, N. 2010. Micronutrients management for enhancing crop production future strategy and requirement. J. Indian Soc. Soil Sci., 58(1): 32-36.

Wani, S.P., Sreedevi, T.K. and Marimuthu, S. 2007. A comprehensive assessment of watershed programs in India. Proceedings of the Review Meeting and Component Workshop, 332 p. 23-27 July, 2007, ICRISAT, Hyderabad, Andhra Pradesh.

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Published

2026-01-12

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How to Cite

Sustaining farm productivity throughwatershed based participatory balance nutrient management:Acase study fromSemi-AridTropics of central India. (2026). Indian Journal of Soil Conservation, 44(1), 13-18. https://doi.org/10.53550/

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