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In-situ green manuring for enhancing productivity, profitability and sustainability of upland rice

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Abstract

Upland rice is commonly grown during rainy season in Himalayan hills. Low or no application of fertilizer nutrients and heavy weed infestation are the major constraints leading to low productivity of rice in this region. Thus, the present investigation was conducted to see the effect of in-situ green manure in supplementing nutrients and saving of labour due to reduction in manual weeding from 2 to 1. Different combinations of chemical fertilizer with green manure or FYM were evaluated. In-situ green manuring with sunhemp improved the overall productivity of upland rice. Highest yield attributes, yield and sustainability index was recorded with 100% NPK + green manure, which were at par with 75% NPK + green manure. However, these values were lowest under 100% NPK application. Higher productivity and saving of labour under green manuring resulted in higher net return and benefit: cost ratio. Soil available nutrients (NPK) and net balance of NPK were also higher under 100% NPK + green manure. The study clearly suggests that in-situ green manure is a viable low-cost technology for enhancing productivity and profitability of upland rice in the fragile ecosystem of Himalayan hills.

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References

  • AI F (2005) Fertilizer Statisics 2004–2005. The Fertilizer Association of India, New Delhi

    Google Scholar 

  • Ali M (1999) Evaluation of green manure technology in tropical lowland rice systems. Field Crops Res 61:61–78

    Article  Google Scholar 

  • Aulakh MS, Khera TS, Doran JW, Bronson KF (2001) Managing crop residue with green manure, urea, and tillage in rice-wheat rotation. Soil Sci Soc Am J 65:820–827

    Article  CAS  Google Scholar 

  • Bar AR, Baggie I, Sanginga N (2000) The use of sesbania (Sesbania rostrata) and urea in lowland rice production in Sierra Leone. Agroforestry syst 48:111–118

    Article  Google Scholar 

  • Becker M, Ladha JK, Ali M (1995) Green manure technology: potential, usage, and limitations. A case study for lowland rice. Plant Soil 74:181–194

    Article  Google Scholar 

  • Boparai BS, Singh Yadvinder, Sharma BD (1992) Effect of green manure (Sesbania aculeata) on physical properties of soil and growth of rice-wheat and maize-wheat cropping system. Int Agrophys 6:95–101

    Google Scholar 

  • Bray RH, Kurtz LT (1954) Determination of total, organic and available forms of phosphorous in soils. Soil Sci 59:39–45

    Article  Google Scholar 

  • Buresh RJ, De Datta SK (1991) Nitrogen dynamics and management in rice-legume cropping system. Adv Agron 45

  • Cassman KG, Gines GC, Dizon MA, Samson MI, Alcantara JM (1996) Nitrogen use efficiency in tropical lowland rice system: contributions from indigenous and applied nitrogen. Field Crops Res 47:1–12

    Article  Google Scholar 

  • Dey P, Jain JM (2000) Evaluation of urea enriched green manures for their efficiency to sustain productivity of rice-wheat system. J Indian Soc Soil Sci 48:102–107

    Google Scholar 

  • Gafur A, Jensen JR, Borggard OK, Petersen L (2003) Reuoff and losses of soil and nutrients from small watersheds under shifting cultivation (Jhum) in Chittagong Hills tracts of Bagladesh. J Hydrol 274:30–46

    Article  CAS  Google Scholar 

  • Jackson ML (1962) Soil chemical analysis. Prentice Hall of India pvt, Ltd., New Delhi

    Google Scholar 

  • Kothyari BP, Verma PK, Joshi BK, Kothyari UK (2004) Rainfall-runoff- soil and nutrient loss relationship for plot size areas of bhetagad watershed in central Himalaya, India. J Hydrol 293:137–150

    Article  CAS  Google Scholar 

  • Krishnan G, Holshouser DavidL, Nissen ScottJ (1998) Weed control in soybean (Glycine max) with green manure crops. Weed Tech 12:97–102

    Google Scholar 

  • Ladha JK, Miyan S, Garcia M (1989) Sesbania rostrata as a green manure for lowland rice: Growth, N2 fixation, Azorhizobium sp. Inoculation, and effects on succeeding crop yields and nitrogen balance. Biol Fertil Soils 7:191–197

    Article  Google Scholar 

  • Ladha JK, Pareek RP, Becker M (1992) Stem-nodulating legume-Rhizobium symbiosis and its agronomic use in lowland rice. Adv Soil Sci 20

  • Ladha JK, Dawe D, Ventura TS, Singh U, Ventura W, Watanabe I (2000) Long-term effects of urea and green manure on rice yields and nitrogen balance. Soil Sci Soc Am J 64:1867–1876

    Article  Google Scholar 

  • Lynam J, Herdt R (1989) Sense and sustainability: sustainability as an objective in international agricultural research. Agril Econ 3:382–398

    Google Scholar 

  • Mandal UK, Singh G, Victor US, Sharma KL (2003) Green manuring: its effect on soil properties and crop growth under rice-wheat cropping system. Europ J Agronomy 19:225–237

    Article  Google Scholar 

  • Manna MC, Swarup A, Wanjari RH, Ravankar HN, Mishra B, Saha MN, Singh YV, Sahi DK, Sarap PA (2005) Long-term effect of fertilizer and manure application on soil organic carbon storage, soil quality and yield sustainability under sub-humid and semi-arid tropical India. Field Crops Res 93:264–280

    Article  Google Scholar 

  • Morris RA, Furoc RE, Dizon MA (1986) Rice response to short-duration green manure II. N recovery and utilization. Agronomy J 78:413–416

    Article  Google Scholar 

  • Puget P, Drinkwater LE (2001) Short-term dynamics of root- and shoot-derived carbon from a leguminous green manure. Soil Sci Soc Am J 65:771–779

    Article  CAS  Google Scholar 

  • Rao AN, Jonson De, Sivaprasad B, Ladha JK, Mostimer AM (2007) Weed management in direct seeded rice. Adv Agronomy 93:153–255

    Article  CAS  Google Scholar 

  • Ray SS, Gupta RP (2001) Effect of green manuring and tillage practices on physical properties of puddled loam soil under rice_/wheat cropping system. J Indian Soc Soil Sci 49:670–678

    Google Scholar 

  • Sharma SN, Prasad R (1999) Effects of Sesbania green manuring and mungbean residue incorporation of productivity and nitrogen uptake of a rice-wheat cropping system. Bioresour Technol 67:171–175

    Article  CAS  Google Scholar 

  • Singh RP, Das SK, Bhaskara Rao UM, Narayana Reddy M (1990) Towards sustainable Dryland Agricultural Practices. CRIDA, Hyderabad, India

    Google Scholar 

  • TA II (1992) International Institute of Tropical Agriculture, Medium-Term Plan 1994–1998. IITA, Ibadan, Nigeria

    Google Scholar 

  • Walkley A, Black JA (1934) Estimation of soil organic carbon by chromic acid titration method. Soil Sci 17:29–38

    Article  Google Scholar 

  • Whitbread AM, Blair GJ, Lefroy RDB (2000) Managing legume leys, residues and fertilisers to enhance the sustainability of wheat cropping systems in Australia 1. The effects on wheat yields and nutrient balances. Soil Tillage Res 54:63–75

    Article  Google Scholar 

  • Yadav RL (1998) Factor productivity trends in a rice-wheat cropping system under long-term use of chemical fertilizers. Expl Agric 34:1–18

    Article  Google Scholar 

  • Yadav RL, Dwived BS, Pandey PS (2000) Rice-wheat cropping system: assessment of sustainability under green manuring and chemical fertilizer inputs. Field Crops Res 65:15–30

    Article  Google Scholar 

  • Yadvinder Singh, Khind CS, Bijay Singh (1991) Efficient management of leguminous green manures in wetland rice. Adv Agronomy 45

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Correspondence to Narendra Kumar.

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Kumar, N., Mina, B.L., Chandra, S. et al. In-situ green manuring for enhancing productivity, profitability and sustainability of upland rice. Nutr Cycl Agroecosyst 90, 369–377 (2011). https://doi.org/10.1007/s10705-011-9438-0

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